Blockchain Papers

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3,895 papersLast indexed Aug 31, 2026
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Nov 5, 2024·Computers & Electrical Engineering
9 cites
Internet of Things-based Home Automation with Network Mapper and MQTT Protocol

Tahsin Alam, Md. Rokonuzzaman, Sohag Sarker, AFM Zainul Abadin · 6 authors

The increasing ability of internet-connected daily life electronic gadgets has propelled smart homes into a global trend. The Internet of Things (IoT) enables ambient devices to communicate and interact seamlessly through various sensors. Emerging technical concepts like Web3 and Industry 5.0 require decentralised and intelligent systems near the network's edge. Petabytes of IoT sensor-generated data cause a shortage of storage on the Cloud servers, adding a delay factor to the IoT system. Standard cloud-based IoT systems can't fully function in areas with unstable internet. This paper addresses these challenges and proposes a solution to integrate edge computing concepts. The proposed system is developed using a Raspberry Pi 3 Home Server (RHS) driven by the Support Vector Machine (SVM) algorithm. The designed prototype includes a fire and smoke detection system with MQ2 gas, dust, temperature, and flame sensors. The SVM and these sensors form a data fusion module integrating with Network Mapper (NMAP), Message Queuing Telemetry Transport (MQTT) broker, MariaDB SQL server, and InfluxDB time series database. The experiments demonstrate a fundamental edge operation with a latency of 2.45 ms (milliseconds), while NMAP integration ensures data security and device verification for sensor data storage. The synthetic simulations show positive outcomes for the data fusion-based monitoring system, where alerts are promptly triggered as sensor values change, with an overall system latency of approximately 24 ms. The developed system manages home automation, real-time monitoring for fire, smoke, gas leaks, network scans, anomaly detection, appliance usage tracking, and cloud data backup. A multi-level alert system ensures early threat mitigation, with alarms, SMS, notifications, and email alerts to maximize awareness.

Open access
IoT and Edge/Fog Computing
IoT-based Smart Home Systems
Internet of Things and AI
Original source
Nov 4, 2024·Logistics
19 cites
AI-Enhanced Blockchain for Scalable IoT-Based Supply Chain

Mohamed Moetez Abdelhamid, Layth Sliman, Raoudha Ben Djemaa

Purpose: The integration of AI with blockchain technology is investigated in this study to address challenges in IoT-based supply chains, specifically focusing on latency, scalability, and data consistency. Background: Despite the potential of blockchain technology, its application in supply chains is hindered by significant limitations such as latency and scalability, which negatively impact data consistency and system reliability. Traditional solutions such as sharding, pruning, and off-chain storage introduce technical complexities and reduce transparency. Methods: This research proposes an AI-enabled blockchain solution, ABISChain, designed to enhance the performance of supply chains. The system utilizes beliefs, desires, and intentions (BDI) agents to manage and prune blockchain data, thus optimizing the blockchain’s performance. A particle swarm optimization method is employed to determine the most efficient dataset for pruning across the network. Results: The AI-driven ABISChain platform demonstrates improved scalability, data consistency, and security, making it a viable solution for supply chain management. Conclusions: The findings provide valuable insights for supply chain managers and technology developers, offering a robust solution that combines AI and blockchain to overcome existing challenges in IoT-based supply chains.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Digital Transformation in Industry
Original source
Nov 4, 2024·Nanotechnology Perceptions
2 cites
Blockchain Technology as a Decentralized Solution for Data Security and Privacy: Applications Beyond Cryptocurrencies in Supply Chain Management and Healthcare

M. Shakila, S. Pandiaraj, S P Sharmila, Tanesh Kumar · 6 authors

Decentralized and promising, blockchain technology brings enhanced security for data along with privacy issues particularly in health and supply chains. Here, we aim to show the usage of blockchain towards the secure data of devices that come under Internet of Medical Things or IoMT by providing data integrity and further sensitive medical information protection. A secure, transparent, and tamper-proof system in health care management can be supported by an IoT framework that uses blockchain. Four data security and privacy algorithms based on blockchain have been considered and tested with excellent results to show a clear indication of how much prevention in un-authorized access can be done in ensuring authenticity, tracking products in the medical supply chain. Some experiments were demonstrated where the blockchain-enabled system had reduced the data breach by 95% from traditional systems. Supply chain traceability had improved by 92%. The combination of machine learning and blockchain increased real-time threat detection by 88%. The outcome shows that blockchain can deal with problems like tampering, privacy violation, and counterfeiting in medical products. However, scalability of applications and adoption by regulators are two major challenges towards full integration. This paper aids in the development of a complete holistic framework that may make use of the usage of blockchain to secure health care and other supply chain systems to allow further avenues for digitizing data safety.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Original source
Nov 4, 2024·Scientific Reports
35 cites
Performance enhancement in blockchain based IoT data sharing using lightweight consensus algorithm

Ehtisham Ul Haque, Waseem Abbasi, Ahmad Almogren, Jaeyoung Choi · 7 authors

The proliferation of Internet of Things (IoT) devices generates vast amounts of data, traditionally stored, processed, and analyzed using centralized systems, making them susceptible to attacks. Blockchain offers a solution by storing and securing IoT data in a distributed manner. However, the low performance and poor scalability of blockchain technology pose significant challenges for its application in IoT networks. The primary obstacle is the distributed consensus protocol, while ensuring data transparency, integrity, and immutability in a decentralized and untrusted circumstances which often compromises scalability. To address this issue, this paper introduces the use of the Delegated Proof of Stake (DPoS) consensus algorithm and sharding techniques to enhance scalability in blockchain-based IoT networks. Experimental results indicate that system throughput increases synchronously with the test load. Our findings reveal a tradeoff between throughput, latency, and up-downstream time on the Inter Planetary File System (IPFS). Given the critical importance of latency and throughput in IoT networks, the results demonstrate that DPoS offers high throughput, parallel processing, and robust security while efficiently scaling the network. Furthermore, at a test load of 500 Transactions Per Second (TPS), the system achieves a maximum throughput of approximately 11.094 ms. However, when the test load exceeds 2000 TPS, the total processing time for transactions extends to 11.205 ms. This method is particularly suitable for constrained IoT networks. Compared to previous edge computing-based approaches, our scheme demonstrates superior throughput performance.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Retinal Imaging and Analysis
Original source
Nov 1, 2024·arXiv (Cornell University)
15 cites
MAP the Blockchain World: A Trustless and Scalable Blockchain Interoperability Protocol for Cross-chain Applications

Yinfeng Cao, Jiannong Cao, Dongbin Bai, Long Wen · 6 authors

Blockchain interoperability protocols enable cross-chain asset transfers or data retrievals between isolated chains, which are considered as the core infrastructure for Web 3.0 applications such as decentralized finance protocols. However, existing protocols either face severe scalability issues due to high on-chain and off-chain costs, or suffer from trust concerns because of centralized designs. In this paper, we propose \texttt{MAP}, a trustless blockchain interoperability protocol that relays cross-chain transactions across heterogeneous chains with high scalability. First, within \texttt{MAP}, we develop a novel \textit{cross-chain relay} technique, which integrates a unified relay chain architecture and on-chain light clients of different source chains, allowing the retrieval and verification of diverse cross-chain transactions. Furthermore, we reduce cross-chain verification costs by incorporating an optimized zk-based light client scheme that adaptively decouples signature verification overheads from inefficient smart contract execution and offloads them to off-chain provers. For experiments, we conducted the first large-scale evaluation on existing interoperability protocols. With \texttt{MAP}, the required number of on-chain light clients is reduced from $O(N^2)$ to $O(N)$, with around 35\% reduction in on-chain costs and 25\% reduction for off-chain costs when verifying cross-chain transactions. To demonstrate the effectiveness, we deployed \texttt{MAP} in the real world. By 2024, we have supported over six popular public chains, 50 cross-chain applications and relayed over 200K cross-chain transactions worth over 640 million USD. Based on rich practical experiences, we constructed the first real-world cross-chain dataset to further advance blockchain interoperability research.

Open access
3 source records
cs.CR
Blockchain Technology Applications and Security
Cloud Data Security Solutions
Original source
Oct 30, 2024·International Journal of Scientific Research in Computer Science Engineering and Information Technology
5 cites
Blockchain Based Compliance Auditing For GRC Integration in Hybrid Cloud IT Governance Frameworks

Ugoaghalam Uche James

The integration of blockchain technology into compliance auditing presents a transformative opportunity for enhancing Governance, Risk, and Compliance (GRC) mechanisms within hybrid cloud IT governance frameworks. This review explores the potential of blockchain to address long-standing challenges in auditability, transparency, and trust across distributed and heterogeneous computing environments. By leveraging blockchain’s immutable ledger, smart contract automation, and decentralized consensus protocols, organizations can ensure real-time verification of compliance activities, secure audit trails, and enforceable policy adherence across cloud infrastructures. The paper critically evaluates existing literature on blockchain-enabled compliance auditing, identifies gaps in current GRC integration practices within hybrid cloud ecosystems, and discusses emerging frameworks that align regulatory compliance with dynamic IT operations. Key challenges such as interoperability, scalability, and regulatory acceptance are analyzed alongside opportunities for enhanced accountability, cross-border compliance, and audit automation. The review concludes by outlining future research directions, emphasizing the need for standardized blockchain-GRC interfaces, regulatory sandboxing, and industry-specific implementation models to fully realize the benefits of blockchain in hybrid cloud IT governance.

Open access
Blockchain Technology Applications and Security
Cloud Data Security Solutions
IoT and Edge/Fog Computing
Original source
Oct 30, 2024·Mathematics
1 cites
Addressing the Cost Optimization Issue for IOTA Based on Lyapunov Optimization Theory

Yinfeng Chen, B.K.H. Sun, Yaofei Wang, Zhixin Qiu · 5 authors

IOTA is an emerging decentralized computing paradigm for developing blockchain-based Internet of Things (IoT) applications. It has the advantages of zero transaction fees, incremental scalability, and high-performance transaction rates. Despite its well-understood benefits, IOTA nodes need to withstand considerable resource costs to generate the distributed ledger. The main reason for this is that IOTA abandons the original blockchain reward mechanism and does not charge transaction fees. Therefore, in this paper we address the cost optimization issue for IOTA based on Lyapunov optimization theory. We take the first step in investigating the cost optimization problem of IOTA and exploring a new optimization scheme using Lyapunov optimization theory. Our proposed scheme enables IOTA to minimize the total cost of IOTA nodes through a computational optimization algorithm. Then, an optimized transaction rate control algorithm can be designed based on the large deviation theory to reduce orphan tangles that waste computational costs. In addition, we define and deduce the effective width of the tangle to monitor the total throughput and reduce the time spent on cost optimization to avoid unnecessary waste of resources. Lastly, a comprehensive theoretical analysis and simulation experiments demonstrate that the proposed strategy is both efficient and practical.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Smart Grid Security and Resilience
Original source
Oct 30, 2024·Informatics
1 cites
Blockchain Technology in K-12 Computer Science Education?!

Rupert Gehrlein, Andreas Dengel

The blockchain technology and its applications, such as cryptocurrencies or non-fungible tokens, represent significant advancements in computer science. Alongside its transformative potential, human interaction with blockchain has led to notable negative implications, including cybersecurity vulnerabilities, high energy consumption in mining activities, environmental impacts, and the prevalence of economic fraud and high-risk financial products. Considering the expanding range of blockchain applications, there is interest in exploring its integration into K-12 education. For this purpose, this paper examines existing and documented attempts through a systematic literature review. Although the findings are quantitatively limited, they reveal initial concepts and ideas.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Blockchain Technology in Education and Learning
Original source
Oct 28, 2024·Proceedings of the 18th International Conference on Underwater Networks & Systems
3 cites
AquaID: Authentication for Underwater Nodes with Decentralised Identity

Nicola Altamura, Emanuele Giona, Michele Nati, Chiara Petrioli

The increasing pervasiveness of digital infrastructures, also extending into marine domains, makes Underwater Wireless Sensor Networks (UWSNs) an essential tool for the development of novel marine sustainability and monitoring paradigms. Applications in sensitive scenarios may require data encryption, non-repudiation, and provenance tracking. Moreover, the broadcast nature of the underwater acoustic channel makes the task of identifying and authenticating nodes of critical importance. To meet such requirements, we introduce AquaID, a protocol for resource-constrained hardware that leverages Distributed Ledger Technologies (DLTs) and Decentralised Identities. It guarantees confidentiality, authentication, and integrity using low bandwidth and CPU usage, while supporting high scalability and interoperability. We validate our solution in a threefold manner: via embedded board implementation, network simulation, and sea trials using commercially-available acoustic modems and underwater nodes. We also include a cost comparison among possible DLT choices. Results show AquaID to be robust to scaling, achieving low authentication delays and overhead, thus proving suitable even for large deployments.

Open access
Underwater Vehicles and Communication Systems
Advanced Malware Detection Techniques
IoT and Edge/Fog Computing
Original source
Oct 28, 2024·Proceedings/Proceedings of the ... International Conference on Software Engineering and Knowledge Engineering
1 cites
An Efficient Smart Contract-Enabled Blockchain Framework for Data Sharing in Cloud based IoT Systems (S)

Attiq Ur Rehman, Songfeng Lu

As the Internet of Things (IoT) continues to evolve, the ability to share data has become an integral aspect of cloud computing services.Nevertheless, the persistent issue of data security presents a formidable challenge within the domain.This study introduces a novel blockchain oriented data sharing architecture designed to reinforce data security while optimizing efficiency.The architecture is structured around advanced smart contracts and security mechanisms that register cloud-based data activities on a blockchain ledger.In instances of anomalous activities, the blockchain is scrutinized by a centralized cloud service to identify and hold accountable any malicious gateways.The framework employs robust authentication and secure data transmission protocols to fortify data security.Furthermore, it utilizes sophisticated yet efficient partial decryption algorithms within smart contracts to alleviate the computational load on end users.Blockchain's capability to provide traceable historical records underpins the system's ability to meet stringent data safety standards through transparent and open oversight.Empirical evidence underscores the effectiveness of the proposed system in safeguarding data exchanges across various clients while maintaining high operational efficiency.

Open access
Blockchain Technology Applications and Security
Privacy-Preserving Technologies in Data
IoT and Edge/Fog Computing
Original source
Oct 28, 2024·arXiv (Cornell University)
5 cites
A Blockchain-Enabled Approach to Cross-Border Compliance and Trust

Vikram Kulothungan

As artificial intelligence (AI) systems become increasingly integral to critical infrastructure and global operations, the need for a unified, trustworthy governance framework is more urgent that ever. This paper proposes a novel approach to AI governance, utilizing blockchain and distributed ledger technologies (DLT) to establish a decentralized, globally recognized framework that ensures security, privacy, and trustworthiness of AI systems across borders. The paper presents specific implementation scenarios within the financial sector, outlines a phased deployment timeline over the next decade, and addresses potential challenges with solutions grounded in current research. By synthesizing advancements in blockchain, AI ethics, and cybersecurity, this paper offers a comprehensive roadmap for a decentralized AI governance framework capable of adapting to the complex and evolving landscape of global AI regulation.

Open access
3 source records
cs.AI
cs.CR
cs.CY
Original source
Oct 27, 2024·Applied Sciences
10 cites
Design, Implementation and Practical Energy-Efficiency Evaluation of a Blockchain Based Academic Credential Verification System for Low-Power Nodes

Gabriel Fernández-Blanco, Iván Froiz-Míguez, Paula Fraga‐Lamas, Tiago M. Fernández‐Caramés

The educational system manages extensive documentation and paperwork, which can lead to human errors and sometimes abuse or fraud, such as the falsification of diplomas, certificates or other credentials. In fact, in recent years, multiple cases of fraud have been detected, representing a significant cost to society, since fraud harms the trustworthiness of certificates and academic institutions. To tackle such an issue, this article proposes a solution aimed at recording and verifying academic records through a decentralized application that is supported by a smart contract deployed in the Ethereum blockchain and by a decentralized storage system based on Inter-Planetary File System (IPFS). The proposed solution is evaluated in terms of performance and energy efficiency, comparing the results obtained with a traditional Proof-of-Work (PoW) consensus protocol and the new Proof-of-Authority (PoA) protocol. The results shown in this paper indicate that the latter is clearly greener and demands less CPU load. Moreover, this article compares the performance of a traditional computer and two Single-Board Computers (SBCs) (a Raspberry Pi 4 and an Orange Pi One), showing that is possible to make use of the latter low-power devices to implement blockchain nodes but at the cost of higher response latency. Furthermore, the impact of Ethereum gas limit is evaluated, demonstrating its significant influence on the blockchain network performance. Thus, this article provides guidelines, useful practical evaluations and key findings that will help the next generation of green blockchain developers and researchers.

Open access
2 source records
cs.DC
cs.CR
cs.CY
Original source
Oct 27, 2024·IT Professional
1 cites
Towards a Blockchain and Opportunistic Edge Driven Metaverse of Everything

Paula Fraga‐Lamas, Sérgio Ivan Lopes, Tiago M. Fernández‐Caramés

Decentralized Metaverses, built on Web 3.0 and Web 4.0 technologies, have attracted significant attention across various fields. This innovation leverages blockchain, Decentralized Autonomous Organizations (DAOs), Extended Reality (XR) and advanced technologies to create immersive and interconnected digital environments that mirror the real world. This article delves into the Metaverse of Everything (MoE), a platform that fuses the Metaverse concept with the Internet of Everything (IoE), an advanced version of the Internet of Things (IoT) that connects not only physical devices but also people, data and processes within a networked environment. Thus, the MoE integrates generated data and virtual entities, creating an extensive network of interconnected components. This article seeks to advance current MoE, examining decentralization and the application of Opportunistic Edge Computing (OEC) for interactions with surrounding IoT devices and IoE entities. Moreover, it outlines the main challenges to guide researchers and businesses towards building a future cyber-resilient opportunistic MoE.

Open access
3 source records
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Virtual Reality Applications and Impacts
Original source
Oct 25, 2024·The Journal of Supercomputing
1 cites
DAP-CBR: enhancing Bitcoin block propagation efficiency using dynamic compact block relay’s prefilling of transactions

Zi Hau Chin, Vishnu Monn Baskaran, Chee Keong Tan, Ian K. T. Tan · 5 authors

Abstract This study examines the potential of BIP-152’s Compact Block Relay (CBR) to enhance the Bitcoin network. This work explores the block propagation efficiency through dynamic prefilling of transactions. In addition, an enhanced CBR model is proposed to reduce superfluous transaction requests, thus improving the block distribution process. The analysis considers the impact of the dynamically prefilled transactions on Bitcoin network scalability, comparing the advantages and disadvantages of this approach. We also conduct a comparative study of fixed-size and dynamically sized prefilled transactions to highlight the importance of adapting to network demands. Prefilling a fixed number of transactions without considering demand can cause inefficiencies and strain the network with unnecessary bandwidth use. Indiscriminate prefilling exacerbates these issues by inflating data packets unnecessarily, increasing latency and reducing network responsiveness. Our research indicates that the proposed solution can significantly reduce the number of round-trips between network nodes by an average of 29.77% and block reconstruction latency by 39.10% when compared with the CBR.

Open access
Blockchain Technology Applications and Security
Advanced Steganography and Watermarking Techniques
IoT and Edge/Fog Computing
Original source
Oct 24, 2024·Sensors
27 cites
Blockchain Factors in the Design of Smart-Media for E-Healthcare Management

Dhaneshwar Shah, Sunanda Rani, Khadija Shoukat, Habiba Kalsoom · 7 authors

According to the current situation of deep aging globally, how to provide low-cost and high-quality medical services has become a problem that the whole society needs to consider. To address these challenges, we propose an e-healthcare management system leveraging the integration of the Internet of Things (IoT) and blockchain technologies. Our system aims to provide comprehensive, reliable, and secure one-stop services for patients. Specifically, we introduce a blockchain-based searchable encryption scheme for decentralized storage and real-time updates of electronic health records (EHRs). This approach ensures secure and efficient data traceability across medical equipment, drug supply chains, patient health monitoring, and medical big data management. By improving information processing capabilities, our system aspires to advance the digital transformation of e-healthcare services.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Original source
Oct 24, 2024·ACM Computing Surveys
31 cites
A Review on Blockchain Technology, Current Challenges, and AI-Driven Solutions

Mohamed Moetez Abdelhamid, Layth Sliman, Raoudha Ben Djemaa, Guido Perboli

Blockchain provides several advantages, including decentralization, data integrity, traceability, and immutability. However, despite its advantages, blockchain suffers from significant limitations, including scalability, resource greediness, governance complexity, and some security related issues. These limitations prevent its adoption in mainstream applications. Artificial Intelligence (AI) can help addressing some of these limitations. This survey provides a detailed overview of the different blockchain AI-based optimization and improvement approaches, tools and methodologies proposed to meet the needs of existing systems and applications with their benefits and drawbacks. Afterward, the focus is on suggesting AI-based directions where to address some of the fundamental limitations of blockchain.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Original source
Oct 24, 2024·Engineering Science & Technology Journal
1 cites
The role of distributed ledger technologies in data interoperability and fusion for enhancing sustainable supply chains

Abbey Ngochindo Igwe, Chikezie Paul-Mikki Ewim, Onyeka Chrisanctus Ofodile, Ngodoo Joy Sam-Bulya

In the pursuit of sustainable supply chains, the importance of data interoperability and fusion has become increasingly evident. Distributed Ledger Technologies (DLT) have emerged as a transformative solution, enabling enhanced data sharing, transparency, and accountability among diverse stakeholders. This review explores the role of DLT in improving data interoperability within sustainable supply chains, addressing key challenges and opportunities that arise from its implementation. The first section provides an overview of sustainable supply chains, highlighting the necessity for effective data interoperability to achieve operational efficiency and meet sustainability goals. The challenges related to data fragmentation, disparate formats, and security concerns are discussed, emphasizing the need for a cohesive approach to data management. Next, the review delves into the core principles of DLT, including decentralization, immutability, and consensus mechanisms. It outlines how these principles facilitate the development of standardized data formats and promote secure, transparent data sharing among supply chain participants. The integration of DLT with legacy systems and its capacity to enhance cross-border data exchange are also examined, showcasing how DLT can bridge existing gaps in data interoperability. Moreover, the benefits of DLT in sustainable supply chains are explored, including enhanced traceability, increased efficiency, better compliance with sustainability standards, and the establishment of trust among stakeholders. Real-world case studies from sectors such as food, textiles, and energy illustrate successful implementations of DLT and the resultant improvements in sustainability outcomes. The review also discusses future directions and innovations in the application of DLT. The potential integration of artificial intelligence (AI) for predictive analytics and decision-making, as well as the incorporation of Internet of Things (IoT) devices for real-time data capture, are highlighted as pivotal developments that can further enhance data interoperability. This review underscores the critical role of DLT in fostering data interoperability and fusion within sustainable supply chains. It calls for collaborative efforts among stakeholders to harness the full potential of DLT, paving the way for more resilient, efficient, and sustainable supply chain systems in the future. Through this exploration, the review aims to contribute to the ongoing discourse on the intersection of technology and sustainability in supply chain management. Keywords: Ledger Technologies, Data Interoperability, Supply Chains, Review.

Open access
Big Data and Business Intelligence
IoT and Edge/Fog Computing
Service-Oriented Architecture and Web Services
Original source
Oct 23, 2024·Discover Internet of Things
42 cites
Analysis of integration of IoMT with blockchain: issues, challenges and solutions

Tehseen Mazhar, Syed Faisal Abbas Shah, Syed Azeem Inam, Joseph Bamidele Awotunde · 6 authors

The incorporation of Artificial Intelligence (AI) into the fields of Neurosurgery and Neurology has transformed the landscape of the healthcare industry. The present study describes seven dimensions of AI that have transformed the way of providing care, diagnosing, and treating patients. It has exhibited unparalleled accuracy in analyzing complex medical imaging data and expediting precise diagnoses of neurological conditions. It has also enabled personalized treatment plans by harnessing patient-specific data and genetic information, promising more effective therapies. For instance, AI-powered surgical robots have brought precision and remote capabilities to neurosurgical procedures, reducing human error. In AI, machine learning models predict disease progression, optimizing resource allocation and patient care, whereas wearable devices with AI provide continuous neurological monitoring, and enable early intervention for chronic conditions. It has also accelerated drug discovery by analyzing vast datasets, potentially leading to breakthrough therapies. Chatbots and virtual assistants powered by AI, enhance patient engagement and adherence to treatment plans. It holds promise in further personalization of care, augmented decision-making, earlier intervention, and the development of groundbreaking treatments. The present study mainly focuses on the incorporation of blockchain technology and provides a reasonable understanding of the associated issues and challenges along with its solutions. It will allow AI and healthcare professionals to advance the field and contribute towards the improvement of an individual's well-being when facing neurological challenges.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
IoT Networks and Protocols
Original source
Oct 23, 2024·International Journal of Scientific Research in Computer Science Engineering and Information Technology
0 cites
Enhancing Data Processing Efficiency : The Synergy of Edge Computing and Hybrid Cloud Storage

Vamsi Krishna Rao

This comprehensive article explores the transformative integration of edge computing and hybrid cloud storage, a technological convergence that is reshaping data processing architectures in the era of exponential data growth. The research delves into the fundamental principles of edge computing and hybrid cloud storage, examining their synergistic relationship in addressing the limitations of traditional centralized cloud computing. By bringing computational resources closer to data sources, this integrated approach significantly reduces latency, enhances processing efficiency by up to 50%, and improves overall system reliability. The article presents detailed case studies in autonomous driving and smart city infrastructure, showcasing real-world applications and benefits. It critically analyzes the challenges inherent in this integration, including security concerns in decentralized architectures, data consistency issues, and cost implications. Furthermore, the article explores future directions, discussing emerging technologies such as AI-powered edge devices, evolving hybrid cloud solutions, and the potential for further optimization. This research provides valuable insights for organizations and researchers navigating the complex landscape of distributed computing, offering a roadmap for leveraging edge computing and hybrid cloud storage to achieve unprecedented levels of performance, scalability, and flexibility in data management and processing.

Open access
IoT and Edge/Fog Computing
Cloud Computing and Resource Management
Blockchain Technology Applications and Security
Original source
Oct 22, 2024·Journal of Metaverse
8 cites
MetaBlock: A Revolutionary System for Healthcare Industry Fusing Metaverse and Blockchain

Shamama Anwar, Adla Sanober

The Metaverse is like another world functioning parallel to the actual physical world. It merges physical reality with digital virtuality by the convergence of different technologies that enable interactions with virtual objects and environment. The complete immersive experience with metaverse generates huge data which comes with its own set of challenges, a major one being the security and storage of user centric data. Considerably, blockchain offers a significant solution due to its exceptional features of decentralization, immutability, and transparency. For a detailed insight into the role of blockchain in the metaverse, the paper explores its usage in the healthcare industry. The paper then proposes a healthcare system named MetaBlock that is a fusion of both the metaverse and blockchain techniques. The paper discusses the components of the system from a detailed technical interpretation, such as data acquisition, data storage, virtual object and space simulation, data sharing and data privacy protection. Finally, an important research direction in terms of distributed consensus mechanism is discussed.

Open access
Blockchain Technology Applications and Security
Virtual Reality Applications and Impacts
IoT and Edge/Fog Computing
Original source
Oct 22, 2024·Scientific Reports
18 cites
Blockchain-enabled verification of medical records using soul-bound tokens and cloud computing

Puneeta Singh, Shrddha Sagar, Sofia Singh, Haya Mesfer Alshahrani · 6 authors

The Crucial and costly process of verifying medical documents frequently depends on centralized databases. Nevertheless, manual validation of document verification wastes a great deal of time and energy. The application of Blockchain technology could potentially alleviate the problem by reducing fraud and increasing efficiency. Non-transferable Soul-bound tokens (SBTs) can be a safe and unbreakable way to authenticate medical records by generating encrypted code, which allows the user to authenticate a portion of data. Within the paper, we provide a blockchain-based SBT-based automatic mechanism for authentication and verification of records. Soul-bound tokens generate a decentralized, immutable identity or credential system that is tied to a record. Through cloud computing, the system can reduce the verification time by accessing a decentralized database. Blockchain systems can lower platform costs and determine the optimal allocation of resources across a dispersed network by utilizing deep learning algorithms. Two advantages of utilizing blockchain technology are less fraud and increased efficiency. SBTs and cloud computing enable the procedure to be expedited and decentralized databases to be readily available. The suggested system's scalability and potential uses in other industries may be the subject of future research.

Open access
Blockchain Technology Applications and Security
Cloud Data Security Solutions
IoT and Edge/Fog Computing
Original source
Oct 21, 2024·International Journal of Latest Technology in Engineering Management & Applied Science
9 cites
Revolutionizing Computer Science Education: Integrating Blockchain for Enhanced Learning and Future Readiness

Chris Gilbert, Mercy Abiola Gilbert

Abstract: This research investigates the transformative potential of incorporating blockchain technology into computer science education. In light of the rapid evolution of the digital landscape, traditional educational frameworks often fail to meet the demands of the industry, resulting in a significant skills gap among graduates. This paper analyzes how the integration of blockchain can revolutionize computer science curricula by enhancing learning experiences and equipping students to navigate future technological challenges. The study highlights the advantages of blockchain in educational contexts, including increased security and transparency of academic records, streamlined credentialing processes, and the establishment of decentralized learning platforms that promote collaboration and innovation. It presents case studies of institutions that have successfully implemented blockchain, along with strategies for educators to effectively integrate this technology into their pedagogical approaches. Additionally, the research addresses the challenges and limitations associated with blockchain integration, such as the requisite learning curve and infrastructure demands. The findings indicate that the incorporation of blockchain in computer science education can significantly boost student engagement, provide verifiable skill sets, and align academic outcomes more closely with industry requirements. This study contributes to the ongoing discourse on educational innovation and offers a strategic framework for institutions aiming to utilize blockchain technology in preparing students for the future job market.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Internet of Things and AI
Original source
Oct 20, 2024·Sensors
15 cites
Sensing and Perception in Robotic Weeding: Innovations and Limitations for Digital Agriculture

Redmond R. Shamshiri, Abdullah Kaviani Rad, Maryam Behjati, Siva K. Balasundram

The challenges and drawbacks of manual weeding and herbicide usage, such as inefficiency, high costs, time-consuming tasks, and environmental pollution, have led to a shift in the agricultural industry toward digital agriculture. The utilization of advanced robotic technologies in the process of weeding serves as prominent and symbolic proof of innovations under the umbrella of digital agriculture. Typically, robotic weeding consists of three primary phases: sensing, thinking, and acting. Among these stages, sensing has considerable significance, which has resulted in the development of sophisticated sensing technology. The present study specifically examines a variety of image-based sensing systems, such as RGB, NIR, spectral, and thermal cameras. Furthermore, it discusses non-imaging systems, including lasers, seed mapping, LIDAR, ToF, and ultrasonic systems. Regarding the benefits, we can highlight the reduced expenses and zero water and soil pollution. As for the obstacles, we can point out the significant initial investment, limited precision, unfavorable environmental circumstances, as well as the scarcity of professionals and subject knowledge. This study intends to address the advantages and challenges associated with each of these sensing technologies. Moreover, the technical remarks and solutions explored in this investigation provide a straightforward framework for future studies by both scholars and administrators in the context of robotic weeding.

Open access
Smart Agriculture and AI
IoT and Edge/Fog Computing
Remote Sensing in Agriculture
Original source
Oct 19, 2024·International Journal of Frontline Research and Reviews
0 cites
Comprehensive framework for data fusion in distributed ledger technologies to enhance supply chain sustainability

Abbey Ngochindo Igwe, Chikezie Paul-Mikki Ewim, Onyeka Chrisanctus Ofodile, Ngodoo Joy Sam-Bulya

This review proposes a comprehensive framework that integrates data fusion with Distributed Ledger Technologies (DLT) to enhance sustainability in supply chain management. In today’s global supply chains, ensuring transparency, efficiency, and environmental responsibility is critical, yet the lack of real-time visibility and data fragmentation presents significant challenges. The framework addresses these issues by merging data from multiple sources, including IoT devices, operational databases, and external environmental factors, using advanced data fusion algorithms. DLT, with its decentralized, immutable, and transparent nature, ensures the integrity and security of the data, allowing all stakeholders to access accurate and tamper-proof information. The fusion of data within a DLT infrastructure not only improves traceability and accountability but also enables the automation of sustainability checks via smart contracts. These contracts can trigger actions based on predefined sustainability metrics such as carbon emissions, energy consumption, and resource efficiency. Furthermore, predictive analytics and machine learning algorithms integrated into the system provide real-time monitoring and optimization of sustainability performance throughout the supply chain. The proposed review offers numerous benefits, including enhanced transparency, reduced operational costs, improved sustainability outcomes, and risk mitigation. It also addresses challenges such as scalability, data privacy, and regulatory compliance, offering solutions to overcome these hurdles. By exploring case studies of successful implementations, this review demonstrates the practical applications and future potential of combining DLT and data fusion for sustainable supply chain management, positioning it as a critical tool for organizations aiming to meet environmental and regulatory demands in an increasingly digital and eco-conscious world.

Open access
IoT and Edge/Fog Computing
Blockchain Technology Applications and Security
Digital Transformation in Industry
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