Blockchain Papers

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Aug 11, 2026¡Zenodo (CERN European Organization for Nuclear Research)
0 cites
The Guarino Manufacturing Effectiveness Metric: Overall Equipment Effectiveness and the Lean Six Sigma Quantitative Core as Complete Dimensionless Bases

Brian Guarino

Overall equipment effectiveness is taught as an industrial convention: three factors, availability times performance times quality, adopted because decades of practice found them useful. This paper proves that it is not a convention. Over the minimal variable set of discrete manufacturing, and with piece count admitted as a base dimension alongside time, the Buckingham π theorem forces exactly three independent dimensionless groups, and those three groups are exactly the availability, performance, and quality factors. The two formulas every OEE practitioner learns, the factored form A × P × Q and the collapsed form τG/T_p, are revealed as the factored and telescoped presentations of one and the same π monomial. Nakajima wrote down the correct answer in 1988. The theorem that makes it inevitable is proved here. The move that makes this work is dimensional rather than statistical. Counts of a specified entity are treated as quantities of a kind rather than as bare numbers, exactly as the International System treats amount of substance for the mole. With the unit dimension U in the basis, ideal cycle time carries T U⁻¹, throughput carries U T⁻¹, and count ratios become true π groups instead of informal percentages. Without U the count variables are dimensionally invisible, the matrix loses a row, and the machinery of the theorem cannot see the structure it is about to reveal. Nothing metaphysical is claimed for U; the instrumental reading, that U is the bookkeeping dimension of a specified countable product, carries every result in the paper. Two completeness theorems. Theorem 1 establishes that over the base dimensions T and U the minimal set {T_p, T_r, τ, N, G} admits exactly three independent groups and that the OEE triple is a complete basis, so every dimensionless quantity constructible from those five variables is a product of powers of availability, performance, and quality. Theorem 2 establishes a completeness result of exactly parallel shape for the statistical layer: over the single dimension of a quality characteristic, the set {Δ, σ, δ} admits exactly two groups, and the capability pair C_p = Δ/(6σ) and the centering index k = 2δ/Δ is a complete basis. The demonstrated capability index C_pk = C_p × (1 − k), the sigma level Z = 3C_pk, rolled throughput yield, and a closed form for normalized Taguchi loss all follow as members of that basis. The extension ladder. Each variable appended to the minimal set introduces no new base dimension until energy enters, so each purchases exactly one further independent group, and at every rung the new group already has a name on the factory floor. Total calendar time gives TEEP. Takt time gives takt coverage. Mean time between failures and mean time to repair give the reliability burden and with it the classical inherent availability as an exact identity, together with a ledger that resolves the opaque quantity 1 − Π_A, the availability loss that OEE reports but cannot explain, into named and separately actionable channels. Changeover time gives the SMED setup burden. Energy gives an efficiency group that only the rank form of the theorem can find, since a naive count of base dimensions predicts three groups and would wrongly conclude that no independent energy group exists. The flow variables give the Factory Physics WIP efficiency together with a closed identity for process cycle efficiency, PCE = Π_F × u, which tells a diagnosing engineer whether poor flow is an inventory problem or a starvation problem. The bridge law. The two layers join at exactly one point. For a process in statistical control with normally distributed output, the capability pair determines a ceiling on the quality group, Π_Q* = Φ(3C_p(1 − k)) + Φ(3C_p(1 + k)) − 1. Determination runs one way: capability sets a ceiling that operations can fail to reach but cannot exceed, and the gap between the ceiling and the observed quality group is itself diagnostic, because an in-control capable process that nonetheless scraps parts is losing them to special causes and startup transients rather than to inherent spread. Consequences for the canon. The Six Big Losses of total productive maintenance and the eight wastes of Lean close one to one against the group registry, each located in the group whose degradation it names. Lean and Six Sigma are re-read as dimensional analysis performed on two different variable sets, the flow variables and the spread variables, by communities that did not know they were doing it, which is offered as an explanation of why their merger into a single methodology worked in practice. The normalized Taguchi loss acquires the closed form ΛQ = (9C_p²)⁻¹ + k², which separates the spread term from the centering term additively and repairs a known defect of Taguchi practice, whose signal-to-noise ratios take logarithms of dimensional quantities. The composite and what it changes. A plant-level composite, Ψ_Plant = Ψ_OEE × Γ_Demand × Γ_Energy × Γ_Flow, becomes an additive loss ledger under logarithms. Because the composite is a product, its log-elasticity with respect to every factor is exactly unity, so no factor carries more marginal leverage than another and improvement priority is set entirely by headroom, which is precisely what the ledger measures. A worked injection-molding line scored over one operating week returns Ψ_OEE = 0.680, a respectable value squarely inside the typical industrial band, while the composite returns Ψ_Plant = 0.0638. The ledger says why: flow contributes seventy-six percent of the log deficit. A single-lever intervention table follows. Buying uptime, the move a manager reading only the OEE number would make, returns 1.12 fold. Cutting work in process to its critical level multiplies the composite eightfold, from 0.064 to 0.510, without touching availability, performance, or quality at all. The intervention that feels natural is not the intervention that pays, and the framework tells them apart before a dollar is spent. Scope and limitations, stated plainly. The bridge law assumes statistical control and normality; for non-normal characteristics the ceiling must be computed from the fitted distribution. Reliability enters through a renewal approximation. The minimal set is single-product, and clamping conventions are declared wherever imposed, with the raw unclamped groups always reported alongside. The worked example is synthetic. Its inputs are constructed to be consistent with published benchmark values rather than drawn from a single instrumented plant, so it demonstrates the machinery and its diagnostic reading but is not an empirical validation; full single-plant instantiation with direct measurement is the subject of the next paper in this program. The paper positions itself explicitly against five bordering literatures, the OEE literature, process-physics dimensional analysis, the dimensional analysis tradition inside operations management, data envelopment analysis and index numbers, and Factory Physics, and states its priority claim as scoped to that survey, with correction from the community invited.

Open access
2 source records
Quality and Supply Management
Operations Management Techniques
Manufacturing Process and Optimization
Original source
Mar 10, 2026¡International Journal for Quality Research
0 cites
BLOCKCHAIN SMART CONTRACTS IN LOGISTICS INDUSTRY: A QUALITATIVE STUDY FOR ENHANCING LOGISTICS SERVICE QUALITY

GĂśzde YANGINLAR

This study seeks to fill a gap in the understanding of how blockchain smart contracts may improve logistics service quality and investigate the drivers of blockchain smart contracts.Semistructured interviews were carried out with ten logistics professionals to collect data.According to the findings, the drivers of using blockchain smart contracts in the logistics industry comprised the strongest predictor amongst security, traceability, decentralization, transparency, efficient information sharing, and automation factors.The identified drivers of blockchain smart contracts could be used by logistics practitioners as a "road map" for the development of appropriate solutions to successfully strengthen logistics service quality within the logistics industry.The results indicate that blockchain smart contracts enhance payment transaction security, increase end-to-end visibility, and improve delivery timeliness.Moreover, this technology optimizes routing, advances fleet management, and reduces logistics costs.The existing literature focuses on the approaches to applying theoretical, technical, or operational benefits of blockchain smart contracts, but fails to propose a deep dive into logistics service quality.This research appraises blockchain smart contracts by assessing and suggesting how they can enhance logistics service quality.

Open access
Quality and Supply Management
Collaboration in agile enterprises
Operations Management Techniques
Original source
Oct 12, 2025¡Sustainability
4 cites
Building Resilient and Sustainable Supply Chains: A Distributed Ledger-Based Learning Feedback Loop

Tan GĂźrpinar, Mehmet Akif Gulum

Global supply chains face increasing disruptions from cyber threats, geopolitical instability, extreme weather events, and a range of economic, social, and environmental sustainability challenges. As these disruptions intensify, enhancing Supply Chain Resilience (SCR) has become a strategic priority. This study investigates how Distributed Ledger Technology (DLT) can contribute to SCR by mitigating vulnerabilities and strengthening key capabilities within global supply chains. A qualitative research approach is employed, utilizing expert evaluations to examine DLT’s impact on supply chain vulnerabilities and capabilities. Five workshops were conducted with 25 industry professionals from logistics, IT, procurement, and risk management. Experts examined how DLT could address disruptions stemming from supplier instability, poor traceability, and regulatory and environmental pressures, while highlighting its potential to drive ethical sourcing and environmentally responsible practices. The structured discussions were guided by theoretical frameworks and expert evaluations were synthesized into two analytical matrices illustrating DLT’s influence on SCR. The findings reveal that the contribution of DLT to SCR and sustainability is highly context-dependent, with its effectiveness hinging on how it is embedded within governance structures and aligned with the interplay of complementary technologies. Building on these insights, the study presents the DLT-LFL (Distributed Ledger Technology–Learning Feedback Loop) framework, which integrates sensing, decision-making, adaptation, and predictive learning from distributed operational data, allowing supply chains to better anticipate disruptions, adjust processes dynamically, and continuously strengthen resilience and sustainable practices. The study also develops a practical checklist to assess how effective DLT applications and their integration with predictive and AI-driven analytics reduce vulnerabilities, strengthen capabilities, mitigate risks, and support adaptive decision-making.

Open access
Supply Chain Resilience and Risk Management
Quality and Supply Management
Complex Systems and Decision Making
Original source
Sep 24, 2025¡World Customs Journal
0 cites
Automating Origin Calculations: Key Considerations for Manufacturers With Complex Supply Chains

Sylwia Nowak

Rules of origin are a core element of any free trade agreement, but their complexity can present significant challenges for efficient and compliant use. This paper discusses the challenges and opportunities in automating origin calculations for businesses involved in cross-border trade. It focuses on the role of Enterprise Resource Planning (ERP) systems, customs software and Long-Term Supplier Declarations (LTSDs) in simplifying compliance with preferential origin rules. Focusing on the United Kingdom’s trade, the paper outlines key factors businesses must consider to effectively automate origin management, such as rules interpretation, data quality, legal documentation and supplier cooperation. The potential roles of distributed ledger technology (DLT) and automation within customs declarations software are also explored.

Open access
Quality and Supply Management
Supply Chain and Inventory Management
Management and Optimization Techniques
Original source
Jan 1, 2025¡Indian Journal of Management and Language
10 cites
LSS 4.0: A Conceptual Framework for Integrating Lean Six Sigma and Industry 4.0 for Smart Manufacturing Excellence

Attia Hussien Gomaa

Lean Six Sigma 4.0 (LSS 4.0) represents a transformative evolution of Lean Six Sigma, integrating Industry 4.0 technologies to drive smart manufacturing excellence. By leveraging Artificial Intelligence (AI), the Internet of Things (IoT), Digital Twins, and Big Data Analytics, LSS 4.0 enables realtime decision-making, predictive intelligence, and autonomous process optimization, enhancing efficiency, agility, and resilience in modern industrial environments. This paper introduces a conceptual framework for LSS 4.0, redefining the DMAIC (Define-Measure-Analyze-Improve-Control) methodology through IoT-driven process monitoring, AI-powered predictive analytics, and digital twin simulations. This transformation shifts manufacturing from reactive control to predictive and autonomous optimization, reducing variability, defects, and waste while maximizing productivity, resource efficiency, and sustainability. By leveraging data-driven decision-making, intelligent automation, and predictive maintenance, the framework enhances process reliability, prevents defects, and improves operational performance. Despite its advantages, LSS 4.0 presents challenges, including technological complexity, workforce upskilling, and organizational resistance. This study underscores the critical role of leadership-driven digital transformation, AI-augmented decision-making, and targeted skill development in fostering an innovation-driven manufacturing culture. Additionally, blockchain for secure supply chain traceability, augmented reality (AR) for enhanced humanmachine collaboration, and edge computing for decentralized intelligence are explored as key enablers of LSS 4.0’s full potential. Leadership commitment, cross-functional collaboration, and AI-driven Lean workflows are identified as essential success factors. Aligning digital transformation strategies with Lean principles and fostering a culture of continuous innovation is crucial for realizing LSS 4.0’s full benefits. Finally, this study highlights future research directions, emphasizing Industry 5.0 advancements such as human-centric automation, collaborative robotics, and sustainable smart manufacturing—key drivers in building adaptive, intelligent, and resilient industrial ecosystems.

Open access
2 source records
Digital Transformation in Industry
Quality and Supply Management
Flexible and Reconfigurable Manufacturing Systems
Original source
Dec 31, 2024¡Journal of the Operational Research Society
9 cites
Channel mode selection and blockchain strategy for a capital-constrained manufacturer

Kebing Chen, Liwei Xu, Shengbin Wang, Dong Lei

We study the optimal channel selection and blockchain strategy of a capital-constrained manufacturer who sells the green product through an online platform. Blockchain technology (BCT) can be used by the manufacturer to increase consumer confidence in the value of green product. We first show that the manufacturer’s financing strategy is characterized by two thresholds that depend on the manufacturer’s channel selection and blockchain strategy. BCT increases wholesale and retail prices, but it does not always increase product greenness and demand. We find that the manufacturer’s ability to bear the blockchain cost correlates with his financial standing as well as the platform’s operation mode. Furthermore, we show that the agency mode should be selected by the manufacturer only when the commission rate falls below a specified threshold. We also examine the impact of commission rate on the platform’s operational strategy and channel consistency. Furthermore, under the agency model, we show that there is always a “win-win” situation in green cost-sharing cooperation regardless of the manufacturer’s financial state. However, such a “win-win” situation only exists in financing circumstances under the reselling mode. Finally, the extended model explores the relationship between channel strategies and risk preferences of the manufacturer under demand uncertainty.

Open access
Supply Chain and Inventory Management
Scheduling and Optimization Algorithms
Quality and Supply Management
Original source
Oct 28, 2024¡International Journal of Production Research
11 cites
Strategical and tactical supply chain optimisation for smart production planning and control 4.0

HĂŠctor CaĂąas, Josefa Mula, Francisco Campuzano BolarĂ­n

Industry 4.0 (I4.0) technologies generate new opportunities for developing smart models, algorithms and tools to support supply chain (SC) production planning and control (PPC), or smart PPC (SPPC 4.0). Paired with opportunities, challenges arise in integrating sustainability and resilience in SC network design (SCND) according under I4.0. The main novelty of this paper is to propose two multi-objective models that integrate strategical and tactical PPC decisions into a sustainable-resilient SC under I4.0 towards SPPC 4.0. Sustainability is incorporated in terms of reducing costs and CO2 emissions, and a job creation factor. Resilience is incorporated in terms of contracting support suppliers. To solve the multi-objective models, the augmented epsilon constraint method (AUGMECON) was used. This algorithm minimises a target objective function while it treats the others as constraints. Our experiments indicate that AUGMECON is sensitive to the choice of epsilon values. Furthermore, a synthetic data generation tool called SR1-SR2_SynthDataGenerator was developed. This tool generates input datasets to validate and evaluate our models against benchmarks. A stochastic model (SR2) is also proposed that, with small datasets, takes 8.39 seconds to solve. The proposed models can be useful for industries that seek sustainable and resilient SCs to adapt to changing environments.

Open access
Supply Chain Resilience and Risk Management
Digital Transformation in Industry
Quality and Supply Management
Original source
Jan 5, 2024¡PLoS ONE
31 cites
Does blockchain technology matter for supply chain resilience in dynamic environments? The role of supply chain integration

Abdullah Kaid Al‐Swidi, Mohammed A. Al‐Hakimi, Hussam Al Halbusi, Jaithen Abdullah Al Harbi · 5 authors

This study aims to empirically investigate the effect of blockchain technology (BCT) adoption on supply chain resilience (SCR), with the mediating role of supply chain integration (SCI) and the crucial effect of environmental dynamism (ED) as a moderator. Based on data collected from firms operating in the automotive industry in India, the proposed model was tested using Partial Least Squares Structural Equations Modelling (PLS-SEM) via SmartPLS software. The empirical results showed a positive effect of BCT on SCI, which in turn affects SCR. Importantly, SCI acts as a full mediator in the BCT-SCR relationship, which is moderated by ED, that is, the effect of BCT on SCR via SCI is strong when ED is high. This study offers the groundwork for operationalizing BCT in a supply chain context. It also contributes to SCR research by investigating how SCI mediates the effect of BCT on SCR. In addition, this study found a moderating effect of ED on the relationship between BCT and SCI. These results provide insights to auto manufacturers on ways to enhance SCR and ensure safe supply chain operations.

Open access
Supply Chain Resilience and Risk Management
Sustainable Supply Chain Management
Quality and Supply Management
Original source
Jan 1, 2024¡IFAC-PapersOnLine
0 cites
Inventory management for aging products with supply chain finance: the warehouse financing option

Beatrice Marchi, Lucio Zavanella, Simone Zanoni

For businesses specializing in ameliorating goods, such as seasoned cheese, traditional financing models pose unique challenges. Inventory financing relies heavily on past performance, often overlooking the inherent value increase associated with proper aging. This can lead to limited access to capital, hindering growth and operational stability. Warehouse financing emerges as a specialized solution specifically designed for businesses with maturing inventory. Lenders recognize the future value potential of these goods, offering secured loans based on anticipated market appreciation. This approach unlocks immediate cash flow, empowering businesses to cover operational costs, invest in expansion, or manage cash flow fluctuations. This study develops and discusses inventory problems for the specific class of "ameliorating" products, integrated with the warehouse financing technique, to combine the two topics and highlight their main features but above all their scientific and practical importance. The models proposed are focused on a decentralized scenario (single actor perspective) and a centralized scenario (supply chain perspective) to compare the optimal solution in terms of the aging period while maximizing the annual profit. Furthermore, from the supply chain perspective, a multi-supplier single-manufacturer supply chain is proposed with a deteriorating raw material (i.e., fresh milk). While cheese is a prime example, warehouse financing can benefit a diverse range of businesses dealing with ameliorating goods (such as wines, coffee, and aged spirits).

Open access
Advanced Manufacturing and Logistics Optimization
Quality and Supply Management
Operations Management Techniques
Original source
Dec 1, 2023¡Management Systems in Production Engineering
3 cites
Application of Methods of Decentralized Systems in Management in Lean Manufacturing

Tibor Krenický, Kostiantyn Dyadyura, Dmitriy Dmitrishin, Sergii Grybniak ¡ 5 authors

Abstract The emergence and subsequent popularization of lean manufacturing have become one of the most significant for improving the efficiency and productivity of operations. The use of lean manufacturing tools and methods leads to the elimination of waste in the organization. Traditional information systems that allow organizations to share information about resources while managing process performance and traceability have a number of disadvantages such as security, interoperability, and transparency. Currently, distributed ledger technology (block-chain) is widely used for this purpose. This article presents a study of decentralized management of the implementation of a distributed ledger infrastructure, which is selected based on the characteristics of the production system. This study proposes a framework that analyzes lean production methods using simulation and data envelopment analysis (DEA) to accommodate the underlying multi-objective decision-making problem. The current study examines the impact of the simultaneous application of RCA technology, lean manufacturing methods, and distributed ledger technology on the total time, costs, and time of production processes.

Open access
Digital Transformation in Industry
Sustainable Supply Chain Management
Quality and Supply Management
Original source
Sep 30, 2023¡Architectural Engineering and Design Management
15 cites
Blockchain and lean construction: an exploration of bidirectional synergies and interactions

Dimosthenis Kifokeris, Algan Tezel

Blockchain is a form of digital distributed ledger, referring to databases decentralized across numerous users, facilitating peer-to-peer transactions by eliminating or reducing the need for intermediaries to conduct, validate, or authenticate them.It is characterized by transparency, data immutability and traceability, and consensus processes validating cryptographic signatures.The architecture, engineering, construction, and operations (AECO) industry is increasingly interested in blockchain.Lean construction (LC), a value-focused production management concept, has long been challenging conventional project management practices in AECO.Lack of conversation, however, surrounds whether and how blockchain can (or should) impact LC developments -and vice versa.And if that impact exists -is it significant enough to create value for the related stakeholders?This article offers a conceptual synergistic framework of interactions between blockchain and LC, which can facilitate an understanding on whether there is value in their combined use.A systematic literature review and analysis serve as the foundation of this research.The findings show that LC can be facilitated by blockchain through trust building for relational procurement, data recording for some key activities (e.g.offsite construction, Last Planner System), and streamlining some non-value activities (e.g.payments).In return, blockchain can gain relevance for project management practices when it is defined and implemented in a LC framework.Also, LC can help improve blockchain-related workflows and decision making.

Open access
BIM and Construction Integration
Digital Transformation in Industry
Quality and Supply Management
Original source
May 17, 2023¡International Research Journal of Modernization in Engineering Technology and Science
0 cites
AN END-TO-END ETHEREUM EMPOWERED SUPPLY CHAIN MANAGEMENT IN INDUSTRY

Authors unavailable

Manufacturing raw materials to get products to consumers in traditional supply chain systems is a manual process with inadequate data and transaction security.In addition, the entire procedure becomes cumbersome as it is time consuming.Overall, undivided processes are inefficient and unreliable for consumers.When blockchain and smart contract technology are integrated with traditional supply chain management system, data security, reliability, time management and transaction process will be greatly improved.Blockchain is a revolutionary decentralized technology that protects data from unauthorized access.Once smart contracts are implemented, the entire supply chain management (SCM) becomes consumer happy.Involvement of intermediaries thus increases the credibility of the plan.The tags used in his traditional SCM process are expensive and offer limited functionality.Therefore, it is difficult for SCM systems to maintain product confidentiality and accountability.It is also a common target for wireless attacks (reply attacks, eavesdropping, etc.).In SCM, the term product confidentiality is very important.This means that only verified persons can access the information.The purpose of this document is to provide an overview of the use of blockchain technology in the supply chain sector.While this technology is often associated with cryptocurrencies, it also shows promise in non-financial applications such as the supply chain, energy and food industries.Blockchain can provide a permanent, shareable and verifiable record of products across the supply chain, improving product traceability, authenticity and legality in a more cost-effective manner.An example of a micro factory proposal using blockchain technology was introduced.

Open access
Quality and Supply Management
Outsourcing and Supply Chain Management
Original source
Dec 29, 2022¡Applied Sciences
0 cites
Special Issue: Smart Resilient Manufacturing

Jinzhi Lu, Xiaochen Zheng, Dimitris Kiritsis

During the past decades, the global manufacturing industries have been reshaped by the rapid development of advanced technologies, such as cyber-physical systems, Internet of Things, artificial intelligence (AI), machine learning, cloud/edge computing, smart sensing, advanced robotics, blockchain/distributed ledger technology, etc [...]

Open access
Digital Transformation in Industry
Flexible and Reconfigurable Manufacturing Systems
Quality and Supply Management
Original source
Jul 27, 2022¡Annual Conference of the International Group for Lean Construction
5 cites
A Conceptual Framework for Lean Construction and Blockchain Synergy

Algan Tezel, Dimosthenis Kifokeris, Carlos Torres Formoso, Lauri Koskela ¡ 5 authors

Blockchain is a distributed ledger technology referring to decentralized databases existing across multiple locations and participants, in which the need for intermediaries to process, validate or authenticate transactions is reduced or eliminated. Such transactions are synchronously held by computer nodes in distributed copies, with cryptographic signatures validated through consensus protocols and transparency achieved through peer-to-peer transactional access among the nodes. Blockchain-based applications can be preferred over centralized databases on the basis of high levels of trust, data security, immutability, transparency, and multi-user consensus protocols. There is growing interest in blockchain in the built environment, with a focus on procurement, the management of supply chain project-life cycle, smart cities, intelligent systems, sustainability, and decentralized organizations. However, there is little discussion on whether and how blockchain will affect the advances in lean construction (LC) and vice versa. This paper therefore proposes a framework that establishes interactions between blockchain and lean construction, which can potentially facilitate the implementation of both. It is based on a synthetic literature review. The results indicate that blockchain can facilitate the implementation of LC (e.g., recording and retrieving of Last Planner data), and vice versa (e.g., value stream mapping guiding the integration of blockchain with processes).

Open access
Digital Transformation in Industry
Sustainable Supply Chain Management
Quality and Supply Management
Original source
Dec 3, 2021¡Buildings
31 cites
Blockchain and Information Integration: Applications in New Zealand’s Prefabrication Supply Chain

Ehsan Bakhtiarizadeh, Wajiha Shahzad, Mani Poshdar, Malik Khalfan ¡ 5 authors

New Zealand’s rising demand for new and affordable homes is driving innovative and effective methods for project delivery. Prefabrication or off-site construction is considered an innovative approach to project delivery that eliminates the limitations of traditional construction methods. However, the prefabrication industry struggles with several challenges, including poor coordination and low supply chain integration amongst its partner organisations. There has been previous literature on improving the prefabrication supply chain integration, but few studies about the role of technology in this sector. Therefore, this article provides intuitions into the applicability and benefits of advanced technologies, namely blockchain, for improving supply chain integration in the context of prefabrication in New Zealand. A questionnaire survey was used to identify the channels used for information exchange between clients and contractors. Moreover, the questionnaire ascertained the positive effects of blockchain on enhancing supply chain integration between the two partners. Blockchain has proven to be a secure information integration instrument that can improve the integration of the prefabrication supply chain by fostering collaboration between organisations.

Open access
Sustainable Supply Chain Management
Quality and Supply Management
Supply Chain Resilience and Risk Management
Original source
Feb 6, 2021¡Journal of Management Science and Engineering
41 cites
Smart logistics transformation collaboration between manufacturers and logistics service providers: A supply chain contracting perspective

Weihua Liu, Jiahe Hou, Xiaoyu Yan, Ou Tang

Intelligent transformation of manufacturers requires smart logistics transformation collaboration, which improves competitiveness. In this study, we construct a Stackelberg game model based on the mutual influence and restriction in the relationship between a manufacturer and a logistics service provider (LSP) undergoing smart logistics transformation. We investigate whether cost-sharing (CS) or revenue-sharing (RS) contracts can coordinate the supply chain and suggest a hybrid CS–RS contract to improve performance. We find that, compared with decentralized options, CS and RS contracts achieve a higher level of smart logistics transformation. While the coordination and effectiveness of CS contracts are superior to those of RS contracts, neither can fully coordinate the supply chain. The proposed hybrid CS–RS contract allows the manufacturer to share the LSP’s costs before the transformation and its partial revenue after transformation, so that the LSP can reduce its service charge, thereby achieving full supply chain coordination.

Open access
Supply Chain and Inventory Management
Sustainable Supply Chain Management
Quality and Supply Management
Original source
Dec 30, 2020¡World Journal of Advanced Research and Reviews
1 cites
Pharmaceutical procurement practice aspects

Abdrhman Mahmoud Gamil

Procurement is the most important part of the pharmaceutical logistic cycle. It is the process of acquiring supplies after a properly selected list of products. The procurement system or model depends on the type of organization weather it is governmental or private, centralized or decentralized, autonomous or semiautonomous. The objectives of procurement system is to make available the right drug in an appropriate quantities of adequate quality from a reliable supplier at the right time with the lowest possible prices through an ethical and legal procedures. Prequalification of suppliers is the successful quality assurance activity. Needs and funds can be reconciled and a rational cut can be done by using ABC- VAN matrix technique. Purchasing should be by transparent competition through open tender, restrictive tender, restricted competition or in certain cases by direct negotiation by transparent committee leading to transparent contract. One of the most important procurement practice for the system to succeed is the reliable payment and efficient financial management and monitoring the supplier performance. The system should have an efficient quality assurance program with annual auditing and regular reports.

Open access
2 source records
Management and Optimization Techniques
Quality and Supply Management
Pharmaceutical Economics and Policy
Original source
Sep 8, 2020¡International Journal of Quality & Reliability Management
115 cites
Competencies of quality professionals in the era of industry 4.0: a case study of electronics manufacturer from Malaysia

K. Sumitha P.N. Kannan, Alaa Garad

Purpose This study investigates the competencies required for quality management professionals to meet the needs of industry 4.0. The authors use a case study strategy at an electronics manufacturer in southern Malaysia, to adapt their role to be relevant in the industry 4.0 environment. In doing so, this study answers the following four questions: (1) How are the changing technological trends expected to impact the future role of quality in industry 4.0? (2) What are the competencies gap between current and future roles of quality professionals? (3) What are the views and practices related to quality roles? (4) How can the gaps identified be closed to meet the quality challenges of industry 4.0? Design/methodology/approach The research methods consist of a comprehensive review of literature on the technological trends towards industry 4.0 and the impact on the role of quality and competence that may be required in the future, as well as internal document review on the current roles of quality professionals in an electronics manufacturer in southern Malaysia, to identify the competence gap. Empirical data was collected based on surveys conducted on 64 quality professionals with a response rate of 96.88%. Interviews were conducted on three decision-makers from critical areas in the electronics manufacturer for viewpoints from three different perspectives: finance, operations and talent development. Findings Quality professionals will require technical competencies to interpret large amounts of data from processes to make strategic decisions, the use of new AR tools and be aware of data security risks. Methodological competencies will be required to use data to identify the source of problems, to access reliable sources of learning and the ability to use new tools for solving complex problems efficiently. Social competencies will be required in communications across multi-sites, suppliers and customers in new collaborative virtual platforms, with the ability to retain tacit and explicit knowledge, in a decentralized environment that will require leadership ability to make decisions. Personal competencies required will be the ability to work in a flexible workplace and time and more frequent work-related changes. Research limitations/implications The limitation of the study is based on what the authors currently know of the future, which may not be much for the quality professionals in the electronics manufacturer, who have not been exposed much to the technology yet. The potential for the future landscape to change dramatically with rapid technology changes may also result in a different set of skills for future quality professionals. The quality professionals who were involved in this study were the quality executives, engineers and managers, irrespective of their gender, age, length of service and experience in the field of quality. Therefore, these variables were not taken into consideration for this research. Practical implications This research helped to identify the role of quality in industry 4.0 and key competencies that the quality professionals in the electronics manufacturer will require to adapt to their role in industry 4.0. However, based on the questionnaire and the interview comments of key personnel, it can be concluded that quality professionals lack awareness of their new roles in industry 4.0. This could be due to the fact that the new technology is not implemented by quality professionals but by the innovation team based in Singapore headquarters, as was also advised by the operations head. Social implications The benefit of industry 4.0 technology is clearly shown by Philips's new Dutch factory with robotized technology that was able to produce the same output with one-tenth of the workers of its China factory (Rifkin, 2014, chapter 8). Rojko (2017, p. 80) also shared a similar view that industry 4.0 is expected to reduce production costs by 10–30%, logistics costs by 10–30% and quality management costs by 10–20%. The importance of this research can be seen from the findings of “The Future of Jobs” (2018, p. 22), which suggests that the window of opportunity for organizations to leverage the new technology to re-skill is within the period of 2018–2022, in order to enable employees to reach full potential in the high value-added tasks. The electronics manufacturer may need to keep to this timeline to maintain its competitive advantage. Originality/value The purpose of this paper was to determine the competence gap of current quality professionals in the electronics manufacturer with the competencies required in industry 4.0. This led to the third objective, to identify the views of stakeholders based on the propositions derived from the gaps identified, to triangulate the findings, to conclude the competency gaps of the current quality professionals in the electronics manufacturer. Finally, the objective of this paper was to make a recommendation on how to prepare the quality professionals in the electronics manufacturer for their role in industry 4.0. The research identified the technical, methodological, social and personal competencies gap of the quality professionals in the electronics manufacturer by looking at the changes expected in industry 4.0 from four aspects, factory (people and process), business, product and customers.

Open access
Digital Transformation in Industry
Quality and Supply Management
Collaboration in agile enterprises
Original source
Jan 1, 2020¡KTH Publication Database DiVA (KTH Royal Institute of Technology)
0 cites
Centralization vs. Decentralization: Selection of Downstream Supply Chain Strategy : A single case study on the positioning of purchasing within the Supply Chain of a multinational company

Oliver Mazoyer

As Supply Chain Management has continuously evolved, it has during recent times been exposed to the opportunities and threats that follow globalization. Firms have the possibility of getting their products/services to customers worldwide by outsourcing processes. This possibility has even turned mandatory for numerous firms in order to be competitive. However, such decisions can expose the Supply Chain to various risks. Because of lack of data and Supply Chain Structures, decision-makers need to distinguish advantages vs. disadvantages between centralized, decentralized or even outsourced structures. The purpose of this study has been, based on gathered data from a case company, to determine what Supply Chain structure to opt for when it comes to purchasing. This master thesis has performed a literature review on the science of Data Mining to enrich the quality of a quantitative part based on databases of the case company. The study also reviews Supply Chain Management strategies and how to select an appropriate distribution channel design - allowing for a framework about selecting an appropriate network design and another framework summarizing current literature’s contribution on the question of centralization versus decentralization based on Finance, Performance or Information. These three pillars are the aspects used as reference of analysis in various literature and could therefore be compared with empirics. The selection framework was filled in by key individuals at the case company and was associated with qualitative contributions from interviews about strengths and weaknesses of three scenarios involving centralization, decentralization or outsourcing. With obtained data, it was possible to identify all strengths and weaknesses of each scenario and discuss differences to select the best possible option. The findings were summarized into a framework where one can clearly see pros and cons of each scenario, thus providing a concise summary of implications following centralization, decentralization and outsourcing respectively. The results of the distribution network pointed towards a decentralization of the purchasing function as a more cost-efficient strategy, but these results must be questioned because of the current setting-bias with the spreading of the COVID-19 virus and its economic consequences. However, when all arguments were grouped into the final summarizing figure, it was concluded that the outsourcing strategy is the most advantageous. This thesis has thus permitted the extension of a framework that identifies the best distribution network design and summarized the implications of centralizing, decentralizing or outsourcing purchasing.

Open access
Quality and Supply Management
Original source
Jan 1, 2020¡SSRN Electronic Journal
6 cites
Financing a Sustainable Supply Chain

Xiaole Chen, Vernon Ning Hsu, Guoming Lai, Yang Li

No abstract is available for this record.

Open access
Sustainable Supply Chain Management
Supply Chain and Inventory Management
Quality and Supply Management
Original source
Jun 1, 2018¡2018 IEEE 22nd International Conference on Intelligent Engineering Systems (INES)
22 cites
Reference Architecture for a Collaborative Predictive Platform for Smart Maintenance in Manufacturing

Zoltån Balogh, Emil Gatial, JosÊ Barbosa, Paulo Leitão ¡ 5 authors

Maintenance is a key factor to ensure the production efficiency, since the occurrence of unexpected failures leads to a degradation of the system performance, causing the loss of productivity and business opportunities, which are crucial roles to achieve competitiveness. The article aims to propose a reference architecture which will improve the way maintenance is considered in the current manufacturing world, by enabling an overall increase of production rates, while increasing the operational equipment effectiveness and decreasing the impact of maintenance needs. This objective would be accomplished by establishing an IoT infrastructure for the collection of the huge amount of available shop floor data, which can be analyzed, considering data analytics algorithms, predictive maintenance models and forecasting techniques, to perform the machine/system health assessment and prediction of maintenance needs, e.g. by detecting earlier the occurrence of possible failures and consequently the need to implement maintenance interventions. The scheduling of predictive maintenance needs will be integrated with the existing maintenance planning tools, and especially synchronized with the production planning tools to achieve a nondisruptive maintenance impact in the production system. A cloud-based collaborative maintenance services platform allows the secure collection, aggregation and analysis of a large amount of shared data from numerous manufacturers that use the same or similar machinery, and acts as an open market where companies can contract specialized maintenance services. This reference architecture aims to provide replicable architecture to be broadly applicable in a variety of industries, capable to improve the production efficiency through a real-time health monitoring and early detection of failures and outages, to speed up the maintenance delivery, and consequently mitigate their impact.

Open access
Quality and Safety in Healthcare
Reliability and Maintenance Optimization
Quality and Supply Management
Original source
Jan 1, 2018¡International Journal of Aviation Aeronautics and Aerospace
25 cites
Modernizing the Supply Chain of Airbus by Integrating RFID and Blockchain Processes

Michael D. Santonino, Constantine M. Koursaris, Michael Williams

Radio Frequency Identification, or RFID, has been gaining momentum within the aviation industry for improving efficiencies in the supply chain. RFID technology is not new, with many manufacturers outside of aviation being more responsive as early adopters to the technology. Currently, many of the full-scale implementation organizations from late adopters, have strategically integrated RFID technology into the manufacturing supply chain to tag parts and for airports/airlines to track baggage and passengers throughout their airport journey. Literature remains rather sparse in the implementation and success factors within the aviation supply chain as a number of businesses have kept much of the details discreet to differentiate themselves from the competitors. In this case study, we have examined the state of the early adopters in aviation to implement RFID technology into their supply chain for tracking parts, identifying information, logistics media, and other process improvements in component maintenance management. Airbus, who was the first in the aviation industry to adopt RFID will be examined. The paper examines the increasing numbers of airports/airlines use of RFID to track baggage and passengers with technology. Using information from published secondary data, we review the early adopters of RFID in aircraft manufacturing who are employing RFID to the improve supply chain and how airports/airlines usage of RFID has transcend to passenger tracking to improve airport operational efficiency and to increase passenger satisfaction. By identifying key trends in the aviation supply chain and the value-added in manufacturing and passenger experiences, this paper presents areas in need of further empirical research in order to understand the key success factors with RFID implementation in aviation.

Open access
RFID technology advancements
Quality and Supply Management
Outsourcing and Supply Chain Management
Original source
Jan 1, 2017¡Annals of DAAAM for ... & proceedings of the ... International DAAAM Symposium
104 cites
Blockchain And Supply Chain Management: Aircrafts’ Parts’ Business Case

Yash Madhwal, Peter Panfilov

To serve target customers better than their competitors, supply chain management (SCM) teams today look into new technologies such as Big Data, Internet of Things (IoT) and Blockchain. These new technologies allow managers to develop and provide complex supply chain services and products faster with improved reliabilities. With these technologies, SCM teams can build complex models of a supply chain or systems of supply chains using a data-driven approach. With the growth of aviation domain across the world, there has been increasing demand in aircraft for airlines and other customers. In this domain, SCM teams deal with complex networked supply chains for aircraft's spare part purchase and delivery for aircraft's maintenance and repair. Aircraft's spare parts are shipped to single assembly hubs, located globally. All parts come with certain life expectancy, specific requirements and maintenance attributes. With thousands of spare parts, hundreds of parameters, and number of manufactures distributed globally, SCM team need to deal with very large amount of data. In this paper, we use an industrial scenario of aviation industry SCM to demonstrate the necessity of having decentralized system based on distributed data-driven application technologies such as Blockchain, not only to assist in maintaining inventory of the aircraft's parts but also to monitor the performance, usage, etc. This will help to achieve a transparent network of supply chain for aircraft's parts and reduce the risk of availability of aircraft's parts in black market. These new data-driven technologies when embedded into SCM scenarios will help the SCM managers to analyse the supply, demands, source of availability of spare parts and provide methods to procure them from the right sources.

Open access
2 source records
Supply Chain Resilience and Risk Management
Quality and Supply Management
Original source