Blockchain Papers

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203 papersLast indexed Aug 31, 2026
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Jun 6, 2019·IEEE Consumer Electronics Magazine
15 cites
A Blockchain Platform in Connected Medical-Device Environments: Trustworthy technology to guard against cyberthreats

Ioannis Paliokas, Nikolaos Tsoniotis, Konstantinos Votis, Dimitrios Tzovaras

For consumer-oriented medical devices, the issues of rising cybersecurity threats and the need of end users to maintain control lead to a search for effective solutions. This article presents a blockchain framework for consumer-oriented medical devices aiming at added value, including immutability, auditability, and accountability in processes such as user-device binding, registration, maintenance, and alerting. The proposed solution implements a set of smart contracts (SC) to deliver more secure services in smart-home environments.

Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Green IT and Sustainability
Original source
May 1, 2019·2019 IEEE/ACM 2nd International Workshop on Emerging Trends in Software Engineering for Blockchain (WETSEB)
41 cites
Blockchain and Sustainability: A Systematic Mapping Study

Eirik Harald Lund, Letizia Jaccheri, Jingyue Li, Orges Cico · 5 authors

Sustainability is a topic of increasing interest. The United Nations has released a list of 17 goals for sustainable development for the global community. Blockchain is a recent technological innovation that shows great promise in changing industries. In this paper, we look specifically at smart grids and supply chain management systems as areas where sustainable technological innovation can happen. To identify software engineering aspects of blockchain in smart grids and supply chain management, we start upon online libraries focusing on engineering and information technology, and we opted for the methodology of systematic mapping studies in software engineering. The search strategy identified 535 papers, of which 60 were identified as main studies for our mapping. To the best of the authors' knowledge, no previous similar studies exist. Results of the study show that the research connecting blockchain technology to smart grids and supply chain management systems is still young. None of the techniques or systems have yet been implemented in a real life setting. As such, more work has to be done before we can look at the actual implications of putting such technologies into use. Software engineering practices could prove to be very useful in the process of development. We propose that future studies can focus on bringing the technologies closer to real life implementations, as well as how to involve the end users in the development of the blockchain-based systems.

Open access
Blockchain Technology Applications and Security
FinTech, Crowdfunding, Digital Finance
Green IT and Sustainability
Original source
Apr 29, 2019·Proceedings of the 2019 CHI Conference on Human Factors in Computing Systems
50 cites
Autonomous Distributed Energy Systems

Larissa Pschetz, Kruakae Pothong, Chris Speed

Technologies such as blockchains, smart contracts and programmable batteries facilitate emerging models of energy distribution, trade and consumption, and generate a considerable number of opportunities for energy markets. However, these developments complicate relationships between stakeholders, disrupting traditional notions of value, control and ownership. Discussing these issues with the public is particularly challenging as energy consumption habits often obscure the competing values and interests that shape stakeholders' relationships. To make such difficult discussions more approachable and examine the missing relational aspect of autonomous energy systems, we combined the design of speculative hairdryers with performance and deliberation. This integrated method of inquiry makes visible the competing values and interests, eliciting people's wishes to negotiate these terms. We argue that the complexity of mediated energy distribution and its convoluted stakeholder relationships requires more sophisticated methods of inquiry to engage people in debates concerning distributed energy systems.

Electric Vehicles and Infrastructure
Smart Grid Energy Management
Green IT and Sustainability
Original source
Apr 25, 2019·Applied Sciences
225 cites
At the Nexus of Blockchain Technology, the Circular Economy, and Product Deletion

Mahtab Kouhizadeh, Joseph Sarkis, Qingyun Zhu

The circular economy (CE) is an emergent concept to rethink and redesign how our economy works. The concept recognizes effective and efficient economic functioning at multiple scales—governments and individuals, globally and locally; for businesses, large and small. CE represents a systemic shift that builds long-term resilience at multiple levels (macro, meso and micro); generating new business and economic opportunities while providing environmental and societal benefits. Blockchain, an emergent and critical technology, is introduced to the circular economy environment as a potential enabler for many circular economic principles. Blockchain technology supported information systems can improve circular economy performance at multiple levels. Product deletion, a neglected but critical effort in product management and product portfolio management, is utilized as an illustrative business scenario as to blockchain’s application in a circular economy research context. Product deletion, unlike product proliferation, has received minimal attention from both academics and practitioners. Product deletion decisions need to be evaluated and analyzed in the circular economy context. CE helps address risk aversion issues in product deletions such as inventory, waste and information management. This paper is the first to conceptualize the relationships amongst blockchain technology, product deletion and the circular economy. Many nuances of relationships are introduced in this study. Future evaluation and critical reflections are also presented with a need for a rigorous and robust research agenda to evaluate the multiple and complex relationships and interplay amongst technology, policy, commerce and the natural environment.

Open access
Sustainable Supply Chain Management
Green IT and Sustainability
Recycling and Waste Management Techniques
Original source
Apr 12, 2019·Zurich Open Repository and Archive (University of Zurich)
19 cites
Toward a Policy-based Blockchain Agnostic Framework

Eder J. Scheid, Bruno Rodrigues, Burkhard Stiller

Blockchain technology is developing at a rapid pace. For consumers that are only interested in simplifying processes and reducing costs by using a blockchain solution a new problem has occurred. It is not only necessary to select the appropriate solution, but also to configure and operate considering blockchain interoperability with different chains. For the industry, there is a need for solutions based on open standards. This paper proposes a Policy-based Blockchain Agnostic Framework that not only connects different blockchains but also facilitates their configuration and operation. Moreover, a case study is presented considering the cold-chain supply-chain, where each actor defines its policies based on blockchain requirements.

Open access
Blockchain Technology Applications and Security
Caching and Content Delivery
Green IT and Sustainability
Original source
Mar 13, 2019·Frontiers in Energy Research
44 cites
Is Bitcoin the Only Problem? A Scenario Model for the Power Demand of Blockchains

Michel Zadé, Jonas Myklebost, Peter Tzscheutschler, Ulrich Wagner

\begin{abstract} When an author under the pseudonym Satoshi Nakamoto published the paper `Bitcoin: A Peer-to-Peer Electronic Cash System' in 2008, the first cryptocurrency using the new blockchain technology was introduced. Over the last decade, more than 1000 different cryptocurrencies, such as Ethereum, Ripple, and Litecoin were developed and Bitcoin's currency had almost reached an equivalent value of \SI{20000}{\$\per BTC}. After recognizing the disrupting momentum that the blockchain technology generated, scientists started to develop blockchain use cases for the energy sector. However, the scientific literature so far offers only rough and incomplete estimations when questions about the current and future energy consumption of the Bitcoin network are raised. This paper introduces a new scenario model to estimate the mining power demand of the Bitcoin and Ethereum network. Six scenarios are developed on the basis of mining hardware efficiency and network parameter data. The results show that an increase of the mining hardware efficiency will only have a limited impact on the overall power demand of blockchain networks. Furthermore, the current power demand of the Ethereum network is in the range from \SIrange{0.6}{3}{\giga\watt} and therefore, is similar to the one of Bitcoin. In case of linear growth of the block difficulty and sigmoidal increase of the hardware efficiency until the year of 2025, the mining power demand for the Bitcoin blockchain will be approximately \SI{3}{\giga\watt}. Furthermore, the model and the scenarios are adaptable to other cryptocurrencies that use the proof-of-work consensus algorithm to create scenarios for their future power demand.

Open access
Blockchain Technology Applications and Security
Smart Grid Energy Management
Green IT and Sustainability
Original source
Jan 1, 2019·Journal of the Association for Information Systems
22 cites
Discovering Blockchain for Sustainable Product-Service Systems to enhance the Circular Economy.

Jannis Vogel, Simon Hagen, Oliver Thomas

An increasing amount of use cases is discovered for blockchain technology, since it promises tamper-proof recording of product-related data. It has the potential to improve the reliability of information management for whole supply chains and thus enables new ecologically and economically service offerings. Integrating products and services into one marketable bundle is no new concept and is referred to as product-service systems (PSS). Therefore, the methodical integration of knowledge on sustainable businesses, PSS and blockchain is a promising approach to overcome current barriers to achieve an applicable circular economy. Our study contributes a structured literature review on ongoing research in the field of sustainability-focused blockchain applications. From this, we elaborate a holistic perspective by the integration of key concepts from two additional literature reviews for blockchain and PSS. Asa result, we point out potential benefits and present the effect of blockchain on sustainable PSS with a product-life cycle model.

Open access
Green IT and Sustainability
Sustainable Industrial Ecology
Sustainable Supply Chain Management
Original source
Jan 1, 2019·IEEE Access
73 cites
Blockchain-Powered Value Creation in the 5G and Smart Grid Use Cases

Kristiina Valtanen, Jere Backman, Seppo Yrjölä

Before the implementation of a solution, it is cost-efficient and practical to be able to evaluate and analyze the expected value of use cases. Especially, this is emphasized in blockchain (BC) use cases, which typically have a wide business ecosystem and possibly disruptive business models. This paper presents two BC use case value evaluations and results. The IoT use cases were selected from two different industry segments: telecommunications-oriented 5G network slice brokering and the energy industry-related internal electricity allocation in a housing society. The use case value was assessed by applying a resource configuration framework and 4C - commerce, context, content, and connection - business model typology against BC and smart contracts characteristics and capabilities. The results derived from the data collected from the expert workshops proved the expected value of the use cases, and in general, the feasibility of BC technology for facilitating various value-creating resource configuration processes was shown. Furthermore, the resource configuration framework proved to be a valuable theoretical approach for analyzing and developing also the BC-enabled novel use cases and business models. According to the findings, further development of the framework is proposed with an introduced novel decentralized resource configuration prototype that can replace predominant platform-based business models.

Open access
Blockchain Technology Applications and Security
Digital Platforms and Economics
Green IT and Sustainability
Original source
Jan 1, 2019·QUT ePrints (Queensland University of Technology)
1 cites
Digital twins and distributed ledger technology: What can they learn from each other?

Valéri Natanelov, Gerd Wagner, Marcus Foth

In recent times, two technology innovations have received significant attention not only from academia but also from industry and government: Digital Twins (DT) and Distributed Ledger Technology (DLT). However, it appears that the literature is predominantly focusing on either one of these new pieces of technology in depth, and there is hardly any critique or review that creates lateral connections and links between the two. This paper starts to close this gap by asking, what can DT and DLT learn from each other?

IoT and Edge/Fog Computing
Blockchain Technology Applications and Security
Green IT and Sustainability
Original source
Jan 1, 2019·Proceedings of the ... Annual Hawaii International Conference on System Sciences/Proceedings of the Annual Hawaii International Conference on System Sciences
14 cites
Skimping on Gas – Reducing Ethereum Transaction Costs in a Blockchain Electricity Market Application

Taneli Hukkinen, Juri Mattila, Kari Smolander, Timo Seppälä · 5 authors

In recent years, information systems have not been largely evaluated by their operating costs, but mainly by their strategic benefit and competitive advantage. As blockchain-based decentralized applications become more commonplace, representing a shift towards fully consumption-based distributed computing, a new mode of thinking is required of developers, with meticulous attention to computational resource efficiency. This study improves on a blockchain application designed for conducting microtransactions of electricity in a nanogrid environment. By applying the design science research methodology, we improve the efficiency of the application’s smart contract by 11 %, with further improvement opportunities identified. Despite the results, we find the efficiency remains inadequate for public Ethereum deployment. From the optimization process, we extrapolate a set of general guidelines for optimizing the efficiency of Ethereum smart contracts in any application.

Open access
Blockchain Technology Applications and Security
Green IT and Sustainability
Cloud Computing and Resource Management
Original source
Jan 1, 2019·SSRN Electronic Journal
507 cites
The Carbon Footprint of Bitcoin

Christian Stoll, Lena Klaaßen, Ulrich Gallersdörfer

No abstract is available for this record.

Open access
3 source records
Blockchain Technology Applications and Security
Green IT and Sustainability
Energy, Environment, and Transportation Policies
Original source
Oct 29, 2018·Computer Science and Software Engineering
7 cites
Powering software sustainability with blockchain

Omar Badreddin

Software sustainability is a systematic challenge that impacts broad segments of software systems. Software codebases must evolve overtime to address changing contexts and adapt to the flux in middlewares and platforms. In the process, it accumulates arbitrary complexities and its maintenance becomes progressively difficult. Current sustainability approaches focus on the symptoms and tend to be reactive in nature, and ignore the fundamental incentive structures that drive decision-making processes. Moreover, contemporary approaches are insensitive to the uniqueness of each software project context and operate on the assumption that sustainability measurements are universally applicable to the majority of software systems. This paper introduces a fundamentally novel peer-driven approach to managing software sustainability. The methodology ensures that software teams can define their own sustainability measures that adequately address the unique context of their project and its priorities. These measures are dynamically defined by the project peers to ensure their applicability as the project context evolves. Finally, the paper introduces Susereum, a blockchain platform that materializes the methodology and establishes novel incentive structures to systematically promote software sustainability throughout the project lifecycle.

Green IT and Sustainability
Blockchain Technology Applications and Security
Open Source Software Innovations
Original source
Aug 1, 2018·2018 16th Annual Conference on Privacy, Security and Trust (PST)
7 cites
A Power Analysis of Cryptocurrency Mining: A Mobile Device Perspective

James Clay, Alexander Hargrave, Ramalingam Sridhar

We investigate the impact of how a cryptocurrency mining system can affect the power consumption of mobile devices. Specifically we look at CoinHive, a cryptocurrency miner and associated mining pool targeting the Monero (XMR) cryptocurrency. CoinHive distributes a JavaScript-based miner to webpages where visitors run the script and provide computing power to the web host's CoinHive account. Ideally, hosting JavaScript-based cryptocurrency miners provides alternatives to using ad-networks as a source of website revenue. While some users may not oppose an energy for advertisement trade-off, it may be less palatable to mobile users concerned with battery life. Our initial studies have revealed that, at a minimum, running the normally distributed JavaScript-based miner increases the power draw of a Samsung Galaxy S4 by about 5 fold. Under certain circumstances, the power draw can increase to eleven-fold. We illustrate these findings by comparing them with various normal use benchmarks and with a variety of different ad-enabled webpages.

Green IT and Sustainability
Caching and Content Delivery
Image and Video Quality Assessment
Original source
Jun 1, 2018·2018 15th International Conference on the European Energy Market (EEM)
19 cites
Maturity of Blockchain Technology in Local Electricity Markets

Bent Richter, Esther Mengelkamp, Christof Weinhardt

Currently, blockchain technology is a widely discussed hype in the energy community. It may have the potential to revolutionize the energy system and support the energy transition towards distributed renewable generation. In particular, local electricity markets (LEMs) seem to provide applications for the usage of blockchain technology. Through its innovative design as a distributed and decentralized information system, blockchain supporters see its potential in organizing residential households and prosumers in LEMs. We assess the current maturity of blockchain-based applications for LEMs. To this end, we develop a blockchain maturity model that constitutes a framework for analyzing the current and future maturity of blockchain-based LEMs in a comprehensive structured approach. In a second step, we apply the new blockchain maturity model to an use case of a blockchain-based LEM. Our assessment shows that, in the current status, the project is in an early stage of maturity due to missing regulatory rules and standardization.

Smart Grid Energy Management
Blockchain Technology Applications and Security
Green IT and Sustainability
Original source
May 25, 2018·Proceedings of the Ninth International Conference on Future Energy Systems
17 cites
ETHome

Jonas Schlund, Lorenz Ammon, Reinhard German

This paper describes the proof of concept of a blockchain based organization of a local low voltage energy community. The focus of the concept is efficient use of shared resources to minimize external dependence, and not energy trading. A previously proposed control algorithm, which exploits the power dependency of the efficiency of electrical energy storages, is implemented as a smart contract on a private instance of an Ethereum blockchain to coordinate the operation. It is implemented using four connected Raspberry Pis representing the participating households with pre-given electrical load and photovoltaic conversion as well as a battery. Each household runs an Ethereum full node and an interfacing software. Only the energy technology components are simulated, while the blockchain is actually running on the Raspberry Pis in order to mind the full complexity of the technology. The practicability is proved in a test run and positive effects on the efficiency and the self-sufficiency within the community are observed. A first cost-benefit estimate is given and a further research agenda is presented.

Open access
Smart Grid Energy Management
Green IT and Sustainability
Smart Grid Security and Resilience
Original source
May 16, 2018·Northumbria Research Link (Northumbria University)
0 cites
Speculative Approaches to Understanding DAOs

Chris Elsden, John Vines

In this position paper we discuss the methodological challenges associated with engaging citizens, publics and research participants in speculations around future socio-technical systems. We focus on distributed autonomous organizations and associated smart contracting and distributed ledger technologies as an example of such systems. Drawing on our prior work on Speculative Enactments, we highlight the potential value of speculative approaches to engaging people in the design of DAOs that (i) have clear consequentiality for participants, (ii) illustrate scenarios of the future mundane involving these technologies, and (iii) give opportunities for participants to co-construct speculations. We suggest these as provocative starting points to conducting future participatory and speculative design research on DAOs, and to promote discussion with workshop attendees.

Open access
Innovative Human-Technology Interaction
Mobile Crowdsensing and Crowdsourcing
Green IT and Sustainability
Original source
May 16, 2018·Advances in intelligent systems and computing
16 cites
An Approach to Develop Software that Uses Blockchain

Samantha L. S. Almeida, Adriano Bessa Albuquerque, Andreia Silva

No abstract is available for this record.

Blockchain Technology Applications and Security
Green IT and Sustainability
IoT and Edge/Fog Computing
Original source
Apr 22, 2018·arXiv (Cornell University)
18 cites
Exchange of Renewable Energy among Prosumers using Blockchain with Dynamic Pricing

Arnob Ghosh, Vaneet Aggarwal, Hong Wan

We consider users which may have renewable energy harvesting devices, or distributed generators. Such users can behave as consumer or producer (hence, we denote them as prosumers) at different time instances. A prosumer may sell the energy to other prosumers in exchange of money. We consider a demand response model, where the price of conventional energy depends on the total demand of all the prosumers at a certain time. A prosumer depending on its own utility has to select the amount of energy it wants to buy either from the grid or from other prosumers, or the amount of excess energy it wants to sell to other prosumers. However, the strategy, and the payoff of a prosumer inherently depends on the strategy of other prosumers as a prosumer can only buy if the other prosumers are willing to sell. We formulate the problem as a coupled constrained game, and seek to obtain the generalized Nash equilibrium. We show that the game is a concave potential game and show that there exists a unique generalized Nash equilibrium. We consider that a platform will set the price for distributed interchange of energy among the prosumers in order to minimize the consumption of the conventional energy. We propose a distributed algorithm where the platform sets a price to each prosumer, and then each prosumer at a certain time only optimizes its own payoff. The prosumer then updates the price depending on the supply and demand for each prosumer. We show that the algorithm converges to an optimal generalized Nash equilibrium. The distributed algorithm also provides an optimal price for the exchange market.

Open access
2 source records
cs.GT
math.OC
Smart Grid Energy Management
Original source
Apr 19, 2018·Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems
37 cites
GeoCoin

Bettina Nissen, Larissa Pschetz, Dave Murray-Rust, Hadi Mehrpouya · 6 authors

Design and HCI researchers are increasingly working with complex digital infrastructures, such as cryptocurrencies, distributed ledgers and smart contracts. These technologies will have a profound impact on digital systems and their audiences. However, given their emergent nature and technical complexity, involving non-specialists in the design of applications that employ these technologies is challenging. In this paper, we discuss these challenges and present GeoCoin, a location-based platform for embodied learning and speculative ideating with smart contracts. In collaborative workshops with GeoCoin, participants engaged with location-based smart contracts, using the platform to explore digital 'debit' and 'credit' zones in the city. These exercises led to the design of diverse distributed-ledger applications, for time-limited financial unions, participatory budgeting, and humanitarian aid. These results contribute to the HCI community by demonstrating how an experiential prototype can support understanding of the complexities behind new digital infrastructures and facilitate participant engagement in ideation and design processes.

Open access
Innovative Human-Technology Interaction
Green IT and Sustainability
ICT in Developing Communities
Original source
Mar 1, 2018·Sustainability
149 cites
A Sustainable Home Energy Prosumer-Chain Methodology with Energy Tags over the Blockchain

Lee Won Park, Sanghoon Lee, Hangbae Chang

In this paper, we aim to provide a power trade system that will promote a sustainable electrical energy transaction ecosystem between prosumers and consumers of smart homes. We suggest a blockchain-based peer-to-peer (P2P) energy transaction platform be implemented to enable efficient electrical energy transaction between prosumers. We suggest the platform be built on the blockchain, as this technology allows a decentralized and distributed trading system, and allows a more transparent, trustworthy and secure P2P trading environment. We believe that such characteristics of the blockchain are necessary in electrical energy transactions within the smart home environment because the smart home aims to enhance user comfort and security, along with energy conservation and cost-savings. First, we classify the two different types of P2P trade to identify which will best benefit from the use of the suggested blockchain-based P2P energy-transaction platform. Within the two types of P2P trade, that we classify (pure P2P trade and hybrid P2P trade), the hybrid P2P trade will benefit more from a blockchain-based P2P energy-transaction platform. In the blockchain-based P2P energy-transaction platform, a smart contract is embedded in the blockchain and called an energy tag. The energy tag will set conditions for making every future energy transaction more cost-efficient while maintaining the most ideal and high-quality energy selection. With the blockchain-based energy tag in the energy-transaction process, multiple energy resources and home appliances will be democratically connected in order to provide users with high-quality, low-cost energy at all times and locations. In this paper, we provide simulation results that compare the unit price of electrical energy on the suggested platform to the unit price of electrical energy set by currently existing conventional power-generation companies. Additionally, we present simulation results that calculate how long initial investments to create a smart home environment that enables P2P energy transactions will take to be paid back. Based on simulation results, we believe that, in the long run, the suggested blockchain-based P2P energy-transaction platform will create a sustainable energy-transaction environment between consumers and prosumers, and the expanding ecosystem will enable the development of a trusted, sustainable, secure and energy-efficient energy transaction environment.

Open access
Smart Grid Energy Management
Caching and Content Delivery
Green IT and Sustainability
Original source