Blockchain Papers

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1,173 papersLast indexed Aug 31, 2026
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Sep 1, 2017·Jurnal Ilmiah Teknik Elektro Komputer dan Informatika
352 cites
Blockchain Technology

Purwono Purwono, Alfian Ma’arif, Wahyu Rahmaniar, Qazi Mazhar ul Haq · 6 authors

Blockchain technology has a promising future in a number of industries and enterprises. Formerly connected to virtual currency like Bitcoin, blockchain has evolved into a versatile technology with many applications. In the upcoming years, it is predicted that blockchain will revolutionize a variety of industries, including banking, supply chain management, healthcare, voting systems, and more. The future of blockchain technology depends critically on its ability to increase security and transparency. By providing a decentralized and unchangeable record, eliminating the need for middlemen, and boosting participant confidence, blockchain promotes secure and traceable transactions. This transparency has the potential to transform whole industries by reducing fraud, streamlining processes, and increasing output. Blockchain also has the power to change financial systems. Blockchain-based smart contracts facilitate faster, more efficient transactions by automating and enforcing contractual agreements without the need for middlemen. By enabling speedier cross-border transactions, reducing costs, and boosting financial inclusion, tokenization and blockchain-based digital currencies have the potential to overturn conventional banking institutions. Blockchain’s key attributes, including decentralization, transparency, immutability, and security, make it a desirable choice for a range of organizations. Cross-border payments, trade finance, and smart contracts are just a few of the financial sector processes that blockchain technology has the potential to enhance and automate, lowering costs and increasing productivity. Additionally, the tamper-resistance of blockchain technology can boost transaction security and reliability, allowing for a wider use in traditional financial institutions. Outside of the financial industry, blockchain technology has a lot of promise, particularly in industries like supply chain management, healthcare, energy, intellectual property, and governance. By enabling transparent and traceable transactions, blockchain may improve supply chain efficiency, ensure product authenticity, and boost customer trust. By facilitating the secure exchange of patient data and research data, the decentralized nature of blockchain technology can enhance data security, interoperability, and privacy in the healthcare sector. A more decentralized and sustainable energy ecosystem may be supported by blockchain technology through peer-to-peer energy exchange, grid management, and monitoring of renewable energy certificates in the energy sector. Additionally, blockchain technology has the potential to transform decentralized governance structures, voting procedures, intellectual property rights, and digital identity management. By allowing people to own and manage their digital identities, blockchain can enhance privacy and reduce identity theft. Blockchain-based voting systems can offer transparency, security, and verifiability, thereby increasing voter turnout and public trust in democratic institutions. Blockchain can also enable the secure and transparent management of intellectual property rights, fostering author credit and just compensation.

Open access
38 source records
Blockchain Technology Applications and Security
Intellectual Property and Patents
Law, AI, and Intellectual Property
Original source
Jul 1, 2017·2017 Computing Conference
24 cites
A blockchain based peer-to-peer framework for exchanging leftover foreign currency

Rituparna Bhattacharya, Martin White, Natalia Beloff

Almost every traveller possesses some amount of leftover foreign currency, either as actual cash or on a travel currency card, at the end of any international trip. However, the means to exchange this leftover currency, coins in particular, is largely inconvenient often leading to considerable amounts discarded or left unused. In this paper, we explore how distributed ledger technology, i.e. blockchain, could be applied to the problem of utilizing this leftover foreign currency. We portray here the drawbacks of the existing systems of foreign currency exchange and delineate the requirements of a potential mobile web application for exchanging this currency by integrating smart kiosk based systems, particularly for handling cash, with a peer-to-peer currency exchange technique based on blockchain that could help to bring such currency back into circulation efficiently.

Open access
Blockchain Technology Applications and Security
Caching and Content Delivery
Peer-to-Peer Network Technologies
Original source
Jun 1, 2017·2017 Global Internet of Things Summit (GIoTS)
95 cites
Thing-to-thing electricity micro payments using blockchain technology

Thomas Lundqvist, Andreas de Blanche, H. Robert H. Andersson

Thing-to-thing payments are a key enabler in the Internet of Things (IoT) era, to ubiquitously allow for devices to pay each other for services without any human interaction. Traditional credit card-based systems are not able to handle this new paradigm, however blockchain technology is a promising payment candidate in this context. The prominent example of blockchain technology is Bitcoin, with its decentralized structure and ease of account creation. This paper presents a proof-of-concept implementation of a smart cable that connects to a smart socket and without any human interaction pays for electricity. In this paper, we identify several obstacles for the widespread use of bitcoins in thing-to-thing payments. A critical problem is the high transaction fees in the Bitcoin network when doing micro transactions. To reduce this impact, we present a single-fee micro-payment protocol that aggregates multiple smaller payments incrementally into one larger transaction needing only one transaction fee. The proof-of concept shows that trustless, autonomous, and ubiquitous thing-to-thing micro-payments is no longer a future technology.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Caching and Content Delivery
Original source
May 30, 2017·Current Opinion in Environmental Sustainability
496 cites
Sustainability of bitcoin and blockchains

Harald Vranken

No abstract is available for this record.

Open access
Blockchain Technology Applications and Security
Caching and Content Delivery
Advanced Data Storage Technologies
Original source
May 1, 2017·2017 IEEE International Conference on Communications (ICC)
48 cites
CONNECT: CONtextual NamE disCovery for blockchain-based services in the IoT

Vanesa Daza, Roberto Di Pietro, Ivan Klimek, Matteo Signorini

The Internet of Things is gaining momentum thanks to the provided vision of seamlessly interconnected devices. However, a unified way to discover and to interact with the surrounding smart environment is missing. As an outcome, we have been assisting to the development of heterogeneous ecosystems, where each service provider adopts its own protocol- thus preventing IoT devices from interacting when belonging to different providers. And, the same is happening again for the blockchain technology which provides a robust and trusted way to accomplish tasks -unfortunately not providing interoperability thus creating the same heterogeneous ecosystems above highlighted. In this context, the fundamental research question we address is how do we find things or services in the Internet of Things. In this paper, we propose the first IoT discovery approach which provides an answer to the above question by exploiting hierarchical and universal multi-layered blockchains. Our approach does neither define new standards nor force service providers to change their own protocol. On the contrary, it leverages the existing and publicly available information obtained from each single blockchain to have a better knowledge of the surrounding environment. The proposed approach is detailed and discussed with the support of relevant use cases.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Caching and Content Delivery
Original source
Apr 17, 2017·Proceedings of the Second International Conference on Internet-of-Things Design and Implementation
695 cites
Towards an Optimized BlockChain for IoT

Ali Dorri, Salil S. Kanhere, Raja Jurdak

There has been increasing interest in adopting BlockChain (BC), that underpins the crypto-currency Bitcoin, in Internet of Things (IoT) for security and privacy. However, BCs are computationally expensive and involve high bandwidth overhead and delays, which are not suitable for most IoT devices. This paper proposes a lightweight BC-based architecture for IoT that virtually eliminates the overheads of classic BC, while maintaining most of its security and privacy benefits. IoT devices benefit from a private immutable ledger, that acts similar to BC but is managed centrally, to optimize energy consumption. High resource devices create an overlay network to implement a publicly accessible distributed BC that ensures end-to-end security and privacy. The proposed architecture uses distributed trust to reduce the block validation processing time. We explore our approach in a smart home setting as a representative case study for broader IoT applications. Qualitative evaluation of the architecture under common threat models highlights its effectiveness in providing security and privacy for IoT applications. Simulations demonstrate that our method decreases packet and processing overhead significantly compared to the BC implementation used in Bitcoin.

Open access
2 source records
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Caching and Content Delivery
Original source
Mar 20, 2017·Business & Information Systems Engineering
1,182 cites
Blockchain

Navneet Kaur, Nidhi Chahal, Ritu Dewan, Shikha Singh · 7 authors

Distributed ledger technology, a method of storing and maintaining the integrity of multiple copies of critical data using a massively redundant network of participating machines, has found a “killer application” in blockchain, a type of distributed ledger. A blockchain consists of sequential blocks that may never be modified or reordered, leaving a public, auditable record that is consistent and highly resistant to tampering and deletion. These qualities make blockchain eminently suitable for its most common use, cryptocurrency, and its occasional variants in the form of cryptocurrency tokens, used to represent ownership or some other right to virtual or physical goods and capabilities. Blockchain also enables smart contracts, discrete bodies of software written to serve both as the memorial and the means of execution of an agreement between parties. Smart contracts can have all the elements of a traditional contract, and as jurisdictions legislate or jurists rule on the fine points of enforceability and the acceptability of smart contracts as traditional contracts, applications in nearly every area of commerce have emerged. Digital lawyers may not need to become software developers, but deepening their understanding of the capabilities and limitations of the technology, developing a keen awareness of the issues at the intersection between code and the law, as well as the law’s readiness in this area, will be of great advantage to them and their clients in this rapidly evolving area at the intersection of technology, commerce and law.

Open access
33 source records
Blockchain Technology Applications and Security
Big Data and Digital Economy
Cybersecurity and Cyber Warfare Studies
Original source
Jan 1, 2017·KTH Publication Database DiVA (KTH Royal Institute of Technology)
2 cites
Blockchain technology in Scania Services : An investigative study of how blockchain technology can be utilized by Scania

Jim Lindberg

Blockchain technology emerged in 2009 together with the introduction of Bitcoin, the first virtual currency which enabled nodes in a network, that do not necessarily trust each other, to exchange digital value without the use of trusted intermediaries. Since then, the idea of disintermediation and decentralization has gained traction in a large number of applications outside the world of finance and virtual currencies. This thesis is written in collaboration with Scania, an automotive industry manufacturer, with the purpose of gaining a better understanding of blockchain technology and how it can be used in the transportation industry. This thesis proposes five potential blockchain use cases that aim to either enhance Scania’s existing services or to create new services. Out of these five use cases, one is deemed inappropriate in regards to the use of blockchain technology while the other four have potentials benefits. The common denominator among these use cases is that they are decentralized in nature meaning that the use of intermediaries is mitigated. It is recognized that all use cases could be implemented using traditional, centralized databases and that the use of blockchain boils down to a technology choice with its own trade-offs relative to other potential choices. This thesis concludes that blockchain technology offers a new kind of database architecture, the main benefit of which is that it lets several non-trusting entities agree on a common set of facts, without having a trusted intermediary establishing these facts.

Open access
Blockchain Technology Applications and Security
Caching and Content Delivery
FinTech, Crowdfunding, Digital Finance
Original source
Jan 1, 2017·IEEE Communications Magazine
108 cites
A Model for Collaborative Blockchain-Based Video Delivery Relying on Advanced Network Services Chains

Nicolas Herbaut, Nicolas Negru

The constant rise of over-the-top video consumption nowadays challenges the current Internet architecture. In this article, we propose a user-centric approach that helps the necessary reshaping of the content delivery ecosystem. We study how blockchain-powered smart contracts and network service chaining can be exploited to support such novel collaboration schemes. Finally, our findings suggest that the proposed solution can complement existing technologies by supporting a wide range of business cases while at the same time significantly reducing costs.

Open access
Blockchain Technology Applications and Security
Caching and Content Delivery
Software-Defined Networks and 5G
Original source
Jan 1, 2017·Royal Society Open Science
70 cites
Scalable funding of Bitcoin micropayment channel networks

Conrad Burchert, Christian Decker, Roger Wattenhofer

The Bitcoin network has scalability problems. To increase its transaction rate and speed, micropayment channel networks have been proposed; however, these require to lock funds into specific channels. Moreover, the available space in the blockchain does not allow scaling to a worldwide payment system. We propose a new layer that sits in between the blockchain and the payment channels. The new layer addresses the scalability problem by enabling trustless off-blockchain channel funding. It consists of shared accounts of groups of nodes that flexibly create one-to-one channels for the payment network. The new system allows rapid changes of the allocation of funds to channels and reduces the cost of opening new channels. Instead of one blockchain transaction per channel, each user only needs one transaction to enter a group of nodes-within the group the user can create arbitrarily many channels. For a group of 20 users with 100 intra-group channels, the cost of the blockchain transactions is reduced by 90% compared to 100 regular micropayment channels opened on the blockchain. This can be increased further to 96% if Bitcoin introduces Schnorr signatures with signature aggregation.

Open access
2 source records
Blockchain Technology Applications and Security
Caching and Content Delivery
Cryptography and Data Security
Original source
Jan 1, 2017·Lecture notes in computer science
104 cites
An Analysis of Bitcoin OP_RETURN Metadata

Massimo Bartoletti, Livio Pompianu

The Bitcoin protocol allows to save arbitrary data on the blockchain through a special instruction of the scripting language, called OP_RETURN. A growing number of protocols exploit this feature to extend the range of applications of the Bitcoin blockchain beyond transfer of currency. A point of debate in the Bitcoin community is whether loading data through OP_RETURN can negatively affect the performance of the Bitcoin network with respect to its primary goal. This paper is an empirical study of the usage of OP_RETURN over the years. We identify several protocols based on OP_RETURN, which we classify by their application domain. We measure the evolution in time of the usage of each protocol, the distribution of OP_RETURN transactions by application domain, and their space consumption.

Open access
4 source records
Blockchain Technology Applications and Security
Peer-to-Peer Network Technologies
Caching and Content Delivery
Original source
Jan 1, 2017·Proceedings of the 2nd International Conference on Internet of Things, Big Data and Security
16 cites
Enhancing IoT Security and Privacy with Distributed Ledgers - A Position Paper

Paul Fremantle, Benjamin Aziz, Tom Kirkham

The Internet of Things has a number of well-publicised security flaws, resulting in numerous recent attacks.In this paper we lay out a framework for looking at how distributed ledgers and Blockchain technology can be used to enhance the security, privacy and manageability of IoT devices and networks.A significant concern is the inability to process blockchains on small devices.We propose an architecture for IoT security and privacy based on blockchains that addresses this and other issues.We look at related work and propose areas of further research.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Caching and Content Delivery
Original source
Jan 1, 2017·IEEE Intelligent Systems
37 cites
Redecentralizing the Web with Distributed Ledgers

Luis Ibáñez, Elena Simperl, Fabien Gandon, Henry Story

The web was originally conceived as decentralized and universal, but during its popularization, its big value was built on centralized servers and nonuniversal access. A key element to redecentralize the web is to be able to generate trustable, secure, and accountable updates among autonomous participants without a central server. The authors believe that the marriage between distributed ledgers and linked data can provide this functionality and unlock the web's true potential. As a first step toward it, the authors propose a minimal vocabulary to describe and link distributed ledgers.

Open access
Peer-to-Peer Network Technologies
Caching and Content Delivery
Spam and Phishing Detection
Original source
Jan 1, 2017·SSRN Electronic Journal
4 cites
KYC Optimization Using Distributed Ledger Technology

José Parra-Moyano, Omri Ross

The know-your-customer (KYC) due diligence process is outdated and generates costs of up to USD 500 million per year per bank. We propose a new system, based on distributed ledger technology (DLT) that reduces the costs of the core KYC verification process for financial institutions and improves the customer experience. In the proposed system, the core KYC verification process is only conducted once for each customer, regardless of the number of financial institutions with which the customer intends to work. Thanks to DLT, the result of the core KYC verification can be securely shared by customers with all the financial institutions that they intend to work with. This system allows for efficiency gains, cost reduction, improved customer experience, and increased transparency throughout the process of onboarding a customer.

Open access
2 source records
Blockchain Technology Applications and Security
Caching and Content Delivery
Peer-to-Peer Network Technologies
Original source
Dec 21, 2016·Ledger
38 cites
Subchains: A Technique to Scale Bitcoin and Improve the User Experience

Peter R. Rizun

Orphan risk for large blocks limits Bitcoin’s transactional capacity while the lack of secure instant transactions restricts its usability. Progress on either front would help spur adoption. This paper considers a technique for using fractional-difficulty blocks (weak blocks) to build subchains bridging adjacent pairs of real blocks. Subchains reduce orphan risk by propagating blocks layer-by-layer over the entire block interval, rather than all at once when the proof-of-work is solved. Each new layer of transactions helps to secure the transactions included in lower layers, even though none of the transactions have been con-firmed in a real block. Miners are incentivized to cooperate building subchains in order to process more transactions per second (thereby claiming more fee revenue) without incur-ring additional orphan risk. The use of subchains also diverts fee revenue towards network hash power rather than dripping it out of the system to pay for orphaned blocks. By nesting subchains, weak block verification times approaching the theoretical limits imposed by speed-of-light constraints would become possible with future technology improvements. As subchains are built on top of the existing Bitcoin protocol, their implementation does not require any changes to Bitcoin’s consensus rules.

Open access
Blockchain Technology Applications and Security
Caching and Content Delivery
Auction Theory and Applications
Original source
Dec 16, 2016·arXiv (Cornell University)
56 cites
Strong Federations: An Interoperable Blockchain Solution to Centralized Third-Party Risks

Johnny Dilley, Andrew Poelstra, Jonathan Wilkins, Marta Piekarska · 6 authors

Bitcoin, the first peer-to-peer electronic cash system, opened the door to permissionless, private, and trustless transactions. Attempts to repurpose Bitcoin's underlying blockchain technology have run up against fundamental limitations to privacy, faithful execution, and transaction finality. We introduce \emph{Strong Federations}: publicly verifiable, Byzantine-robust transaction networks that facilitate movement of any asset between disparate markets, without requiring third-party trust. \emph{Strong Federations} enable commercial privacy, with support for transactions where asset types and amounts are opaque, while remaining publicly verifiable. As in Bitcoin, execution fidelity is cryptographically enforced; however, \emph{Strong Federations} significantly lower capital requirements for market participants by reducing transaction latency and improving interoperability. To show how this innovative solution can be applied today, we describe \emph{\liquid}: the first implementation of \emph{Strong Federations} deployed in a Financial Market.

Open access
2 source records
cs.CR
cs.CY
Blockchain Technology Applications and Security
Original source
Oct 24, 2016·Proceedings of the 2022 ACM SIGSAC Conference on Computer and Communications Security
58 cites
Poster

Roman Matzutt, Oliver Hohlfeld, Martin Henze, Robin Rawiel · 6 authors

As transaction fees skyrocket today, blockchains become increasingly expensive, hurting their adoption in broader applications. This work tackles the saving of transaction fees for economic blockchain applications. The key insight is that other than the existing "default'' mode to execute application logic fully on-chain, i.e., in smart contracts, and in fine granularity, i.e., user request per transaction, there are alternative execution modes with advantages in cost-effectiveness. On Ethereum, we propose a holistic middleware platform supporting flexible and secure transaction executions, including off-chain states and batching of user requests. Furthermore, we propose control-plane schemes to adapt the execution mode to the current workload for optimal runtime cost. We present a case study on the institutional accounts (e.g., coinbase.com) intensively sending Ether on Ethereum blockchains. By collecting real-life transactions, we construct workload benchmarks and show that our work saves 18%\sim 47%18%-47% per invocation than the default baseline while introducing 1.81%\sim 16.59%1.81%-16.59% blocks delay.

Open access
8 source records
Blockchain Technology Applications and Security
Distributed systems and fault tolerance
Cryptography and Data Security
Original source
Jul 5, 2016·Proceedings of the 17th ACM International Symposium on Mobile Ad Hoc Networking and Computing
15 cites
LocalCoin

Dimitris Chatzopoulos, Sujit Gujar, Boi Faltings, Pan Hui

The popularity of digital currencies, especially cryptocurrencies, has been continuously growing since the appearance of Bitcoin. Bitcoin is a peer-to-peer (P2P) cryptocurrency protocol enabling transactions between individuals without the need of a trusted authority. Its network is formed from resources contributed by individuals known as miners. Users of Bitcoin currency create transactions that are stored in a specialised data structure called a block chain. Bitcoin's security lies in a proof-of-work scheme, which requires high computational resources at the miners. These miners have to be synchronised with any update in the network, which produces high data traffic rates. Despite advances in mobile technology, no cryptocurrencies have been proposed for mobile devices. This is largely due to the lower processing capabilities of mobile devices when compared with conventional computers and the poorer Internet connectivity to that of the wired networking. In this work, we propose LocalCoin, an alternative cryptocurrency that requires minimal computational resources, produces low data traffic and works with off-the-shelf mobile devices. LocalCoin replaces the computational hardness that is at the root of Bitcoin's security with the social hardness of ensuring that all witnesses to a transaction are colluders. It is based on opportunistic networking rather than relying on infrastructure and incorporates characteristics of mobile networks such as users' locations and their coverage radius in order to employ an alternative proof-of-work scheme. Localcoin features (i) a lightweight proof-of-work scheme and (ii) a distributed block chain.

Open access
Peer-to-Peer Network Technologies
Caching and Content Delivery
Opportunistic and Delay-Tolerant Networks
Original source
May 20, 2016·arXiv
102 cites
The Unreasonable Effectiveness of Address Clustering

Martin Harrigan, Christoph Fretter

Address clustering tries to construct the one-to-many mapping from entities to addresses in the Bitcoin system. Simple heuristics based on the micro-structure of transactions have proved very effective in practice. In this paper we describe the primary reasons behind this effectiveness: address reuse, avoidable merging, super-clusters with high centrality, and the incremental growth of address clusters. We quantify their impact during Bitcoin's first seven years of existence.

Open access
2 source records
cs.CR
Blockchain Technology Applications and Security
Peer-to-Peer Network Technologies
Original source
May 10, 2016·Econstor (Econstor)
146 cites
The Blockchain Phenomenon – The Disruptive Potential of Distributed Consensus Architectures

Juri Mattila

Blockchain technology is disrupting society by enabling new kinds of disintermediated digital platforms. Furthermore, it is also providing efficiency gains on top of old existing structures by removing the need for actively intermediated data-synchronization and concurrency control. Due to this dual effect, blockchain technology has the potential to impact all sectors and layers of society, in a multitude of combined ways. While there is a lot of hype around the concept of blockchains, the phenomenon itself has remained ambiguous and misconceptions have emerged about the capabilities and the potential of blockchain technology. Drawing from ETLA’s participation in blockchain research in 2014–2016, this paper aims to provide a more comprehensive understanding on blockchain technology, its true possibilities, and its potential larger societal implications. It offers a holistic view of the key concepts and the basic principles, and the tools and the framework to understand the ongoing discussion, to critically evaluate different viewpoints, and to delve deeper in a constructed manner

Open access
Blockchain Technology Applications and Security
FinTech, Crowdfunding, Digital Finance
Caching and Content Delivery
Original source
May 6, 2016·Proceedings of the 2016 CHI Conference Extended Abstracts on Human Factors in Computing Systems
56 cites
Exploring Motivations for Bitcoin Technology Usage

Irni Eliana Khairuddin, Corina Sas, Sarah Clinch, Nigel Davies

This paper presents an exploratory study focusing on user experience with Bitcoin technology. We describe interviews with 9 Bitcoin users and report findings related to users' motivations for buying and using bitcoins. Our initial findings capture three main motivations such as Bitcoin's predicted role in a monetary revolution, users' increased empowerment, and their perception of a real value of Bitcoin currency. We conclude with reflections on the value of these findings for HCI researchers.

Open access
Blockchain Technology Applications and Security
Caching and Content Delivery
Peer-to-Peer Network Technologies
Original source
May 5, 2016·Proceedings of the 2016 CHI Conference on Human Factors in Computing Systems
72 cites
Of Two Minds, Multiple Addresses, and One Ledger

Xianyi Gao, Gradeigh D. Clark, Janne Lindqvist

Digital currencies represent a new method for exchange -- a payment method with no physical form, made real by the Internet. This new type of currency was created to ease online transactions and to provide greater convenience in making payments. However, a critical component of a monetary system is the people who use it. Acknowledging this, we present results of our interview study (N=20) with two groups of participants (users and non-users) about how they perceive the most popular digital currency, Bitcoin. Our results reveal: non-users mistakenly believe they are incapable of using Bitcoin, users are not well-versed in how the protocol functions, they have misconceptions about the privacy of transactions, and that Bitcoin satisfies properties of ideal payment systems as defined by our participants. Our results illustrate Bitcoin's tradeoffs, its uses, and barriers to entry.

Open access
ICT in Developing Communities
Blockchain Technology Applications and Security
Caching and Content Delivery
Original source