Blockchain Papers

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Nov 28, 2019·International Journal of Innovative Computing
5 cites
Concept of Blockchain Technology

Muhammad Anwar Hussain, Muhammad Shafie Abd Latiff, Syed Hamid Hussain Madni, Raja Zuraidah Raja Mohd Rasi · 5 authors

Blockchain, Bitcoin's core technology, and spinal cord have received enthusiastic attention since the last couple of decades. The Blockchain serves as a paradigm for distributed and unchangeable computations for bitcoins and cryptocurrencies. The key features behind this technology are to create a reliable, secure, transparent, decentralized, and reliable autonomous ecosystem. It is useful for a variety of applications, especially for legacy devices, resources, and infrastructure. In this article, we presented a technical overview, its application, and the challenges associated with blockchain technology and cryptocurrencies. This study aims to provide a ground-breaking overview and future research direction and promising importance of Blockchain.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Advanced Steganography and Watermarking Techniques
Original source
Nov 28, 2019·Applied Sciences
21 cites
Hierarchically Authorized Transactions for Massive Internet-of-Things Data Sharing Based on Multilayer Blockchain

Shichang Xuan, Yibo Zhang, Hao Tang, Ilyong Chung · 6 authors

With the arrival of the Internet of Things (IoT) era and the rise of Big Data, cloud computing, and similar technologies, data resources are becoming increasingly valuable. Organizations and users can perform all kinds of processing and analysis on the basis of massive IoT data, thus adding to their value. However, this is based on data-sharing transactions, and most existing work focuses on one aspect of data transactions, such as convenience, privacy protection, and auditing. In this paper, a data-sharing-transaction application based on blockchain technology is proposed, which comprehensively considers various types of performance, provides an efficient consistency mechanism, improves transaction verification, realizes high-performance concurrency, and has tamperproof functions. Experiments were designed to analyze the functions and storage of the proposed system.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Privacy-Preserving Technologies in Data
Original source
Nov 28, 2019·IEEE Transactions on Communications
57 cites
Practical Modeling and Analysis of Blockchain Radio Access Network

Xintong Ling, Yuwei Le, Jiaheng Wang, Zhi Ding · 5 authors

The continually rising demand for wireless services and applications in the era of Internet of things (IoT) and artificial intelligence (AI) presents a significant number of unprecedented challenges to existing network structures. To meet the rapid growth need of mobile data services, blockchain radio access network (B-RAN) has emerged as a decentralized, trustworthy radio access paradigm spurred by blockchain technologies. However, many characteristics of B-RAN remain unclear and hard to characterize. In this study, we develop an analytical framework to model B-RAN and provide some basic fundamental analysis. Starting from block generation, we establish a queuing model based on a time-homogeneous Markov chain. From the queuing model, we evaluate the performance of B-RAN with respect to latency and security considerations. By connecting latency and security, we uncover a more comprehensive picture of the achievable performance of B-RAN. Further, we present experimental results via an innovative prototype and validate the proposed model.

Open access
3 source records
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Caching and Content Delivery
Original source
Nov 24, 2019·arXiv (Cornell University)
2 cites
Implementing a Protocol Native Managed Cryptocurrency

Peter Mell, Aurélien Delaitre, Frederic de Vaulx, Philippe Dessauw

Previous work presented a theoretical model based on the implicit Bitcoin specification for how an entity might issue a protocol native cryptocurrency that mimics features of fiat currencies. Protocol native means that it is built into the blockchain platform itself and is not simply a token running on another platform. Novel to this work were mechanisms by which the issuing entity could manage the cryptocurrency but where their power was limited and transparency was enforced by the cryptocurrency being implemented using a publicly mined blockchain. In this work we demonstrate the feasibility of this theoretical model by implementing such a managed cryptocurrency architecture through forking the Bitcoin code base. We discovered that the theoretical model contains several vulnerabilities and security issues that needed to be mitigated. It also contains architectural features that presented significant implementation challenges; some aspects of the proposed changes to the Bitcoin specification were not practical or even workable. In this work we describe how we mitigated the security vulnerabilities and overcame the architectural hurdles to build a working prototype.

Open access
3 source records
cs.CR
Blockchain Technology Applications and Security
Advanced Steganography and Watermarking Techniques
Original source
Nov 23, 2019·arXiv (Cornell University)
8 cites
Empowering Artists, Songwriters & Musicians in a Data Cooperative through Blockchains and Smart Contracts

Thomas Hardjono, Alex Pentland

Over the last decade there has been a continuing decline in social trust on the part of individuals with regards to the handling and fair use of personal data, digital assets and other related rights in general. At the same time, there has been a change in the employment patterns for many people through the emergence of the gig economy. These gig workers include artists, songwriters and musicians in the music industry. We discuss the notion of the data cooperative with fiduciary responsibilities to its members, which is similar in purpose to credit unions in the financial sector. A data cooperative for artists and musicians allows the community to share IT resources, such as data storage, analytics processing, blockchains and distributed ledgers. A cooperative can also employ smart contracts to remedy the various challenges currently faced by the music industry with regards to the license tracking management.

Open access
3 source records
cs.CR
Blockchain Technology Applications and Security
Distributed systems and fault tolerance
Original source
Nov 22, 2019·Internet Technology Letters
46 cites
An efficient blockchain‐based approach for cooperative decision making in swarm robotics

Pranav Kumar Singh, Roshan Singh, Sunit Kumar Nandi, Kayhan Zrar Ghafoor · 6 authors

Swarm robotics is an emerging robotic domain that aims to accomplish complex tasks with the cooperative effort of a group of simple robots. These robots communicate and share information to coordinate their actions for achieving a common goal. However, existing mechanisms of control and communications are not very secure, efficient, and also rely on centralized controlling authority. It is not flexible, and also has low transparency and tracking capabilities. Blockchain, a decentralized technology based on peer to peer communication along with smart contracts, can be a potential contender for addressing these challenges. However, blockchains are resource‐intensive and not found suitable for resource‐constrained devices. We propose a blockchain‐based framework, which is based on Proof‐of‐Authority (PoA) consensus mechanism to ensure efficiency. We experiment with test‐bed implementation using RaspberryPi. The results obtained demonstrate that the PoA mechanism is not a resource‐hungry one (unlike other state‐of‐the‐art consensus mechanisms). The blockchain with PoA in swarm robotics can provide the necessary security, transparency, decentralization, reliability, autonomy, etc.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Original source
Nov 22, 2019·Information
25 cites
The Good, the Bad, and the Ethical Implications of Bridging Blockchain and Multi-Agent Systems

Davide Calvaresi, Jean-Paul Calbimonte, Alevtina Dubovitskaya, Valerio Mattioli · 6 authors

The agent based approach is a well established methodology to model distributed intelligent systems. Multi-Agent Systems (MAS) are increasingly employed in applications dealing with safety and information critical tasks (e.g., in eHealth, financial, and energy domains). Therefore, transparency and the trustworthiness of the agents and their behaviors must be enforced. For example, employing reputation based mechanisms can promote the development of trust. Nevertheless, besides recent early stage studies, the existing methods and systems are still unable to guarantee the desired accountability and transparency adequately. In line with the recent trends, we advocate that combining blockchain technology (BCT) and MAS can achieve the distribution of the trust, removing the need for trusted third parties (TTP), potential single points of failure. This paper elaborates on the notions of trust, BCT, MAS, and their integration. Furthermore, to attain a trusted environment, this manuscript details the design and implementation of a system reconciling MAS (based on the Java Agent DEvelopment Framework (JADE)) and BTC (based on Hyperledger Fabric). In particular, the agents’ interactions, computation, tracking the reputation, and possible policies for disagreement-management are implemented via smart contracts and stored on an immutable distributed ledger. The results obtained by the presented system and similar solutions are also discussed. Finally, ethical implications (i.e., opportunities and challenges) are elaborated before concluding the paper.

Open access
Blockchain Technology Applications and Security
Cloud Data Security Solutions
IoT and Edge/Fog Computing
Original source
Nov 21, 2019·Brazilian Journal of Operations & Production Management
14 cites
Blockchain technology applications: a literature review

Marcelo Jasmim Meiriño, Mírian Picinini Méxas, Alexandre do Valle Faria, Rodrigo Picinini Méxas · 5 authors

Goal: The objective of this article is to raise the state of the art of the applications of blockchain described in the scientific literature.
 Design/methodology/approach: A bibliographic research on the Scopus database was carried out from November, 2017 to May, 2018, supported by the scientific research technique called Bibliometry. The compilation of 102 articles found in the scientific literature were presented in the Blockchain context, providing a reference for the fields of blockchain applications.
 Results: The results indicate a large increase in the number of articles published since 2017, the largest number of publications were written by authors affiliated with institutions located in China, as well as the most referenced applications are related to cryptocurrencies, smart contracts and IoT.
 Limitations of the investigation: The limitation lies in using only the Scopus database for bibliometry, despite being a renowned scientific base.
 Practical implications: This study can serve as a bibliographic reference with a global view of the main Blockchain applications that can be applied by different types of organizations
 Originality/value: Blockchain is a technology that aims to securely store data, such as financial data, contracts, proof of identity, documents of possession, medical information, etc. To do so, a framework based on laws of mathematics and cryptography is used to ensure the security of transactions of different applications, such as Bitcoin, which is a digital currency that guarantees the safe transfer of financial data. However, being a new technology, there is still little research on the subject. On the other hand, there are different types of applications that are already benefiting from the blockchain structure.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Original source
Nov 21, 2019·arXiv (Cornell University)
1 cites
An Interleaving Hybrid Consensus Protocol

Yao Sun, Aayush Rajasekaran

We introduce Unity Interleave, a new consensus algorithm for public blockchain settings. It is an eventual consistency protocol merging the Proof-of-Work (PoW) and Proof-of-Stake (PoS) into a coherent stochastic process. It builds upon research previously done for the Unity protocol, improving security while maintaining fairness and scalability.

Open access
2 source records
Blockchain Technology Applications and Security
Distributed systems and fault tolerance
IoT and Edge/Fog Computing
Original source
Nov 18, 2019·Applied Sciences
61 cites
UniChain: A Design of Blockchain-Based System for Electronic Academic Records Access and Permissions Management

Eman Daraghmi, Yousef‐Awwad Daraghmi, Shyan‐Ming Yuan

Although blockchain technology was first introduced through Bitcoin, extending its usage to non-financial applications, such as managing academic records, is a new mission for recent research to balance the needs for increasing data privacy and the regular interaction among students and universities. In this paper, a design for a blockchain-based system, namely UniChain, for managing Electronic Academic Records (EARs) is proposed. UniChain is designed to improve the current management systems as it provides interoperable, secure, and effective access to EARs by students, universities, and other third parties, while keeping the students’ privacy. UniChain employs timed-based smart contracts for governing transactions and controlling access to EARs. It adopts advanced encryption techniques for providing further security. This work proposes a new incentive mechanism that leverages the degree of universities regarding their efforts on maintaining academic records and creating new blocks. Extensive experiments were conducted to evaluate the UniChain performance, and the results indicate the efficiency of the proposal in handling a large dataset at low latency.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Cloud Data Security Solutions
Original source
Nov 18, 2019·Anais Estendidos do IX Simpósio Brasileiro de Engenharia de Sistemas Computacionais (SBESC Estendido 2019)
13 cites
Industry 4.0: Smart Contract-based Industrial Internet of Things Process Management

Charles Tim Batista Garrocho, Célio Márcio Soares Ferreira, Ailton Sávio Sacramento Júnior, Carlos Frederico Marcelo da Cunha Cavalcanti · 5 authors

Through the Internet of Industrial Things, significant investments in the industry are expected. In this new environment, machine-to-machine communication showed immediate potential. However, most communication implementations require a trusted intermediary. The introduction of smart contracts can enable communication without the need for a trusted intermediary. To provide security and decentralization in industrial communication processes, smart contract-based middleware is proposed. This proposal is evaluated for impacts against the stringent communication requirements required by industrial applications. Experimental results show that while this approach offers greater security and decentralization than traditional proposals, blockchain-based smart contracts cannot yet be applied to industrial systems due to blocking time.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Digital Transformation in Industry
Original source
Nov 14, 2019·The 6th International Electronic Conference on Sensors and Applications
13 cites
LoRaWAN and Blockchain based Safety and Health Monitoring System for Industry 4.0 Operators

Iván Froiz-Míguez, Paula Fraga‐Lamas, José Varela-Barbeito, Tiago M. Fernández‐Caramés

The latest advances in the different Industry 4.0 technologies have enabled the automation and optimization of complex tasks of production processes thanks to their ability to monitor and track the state of physical elements like machinery, environmental sensors/actuators or industrial operators. This paper focuses on the latter and presents the design and evaluation of a system for monitoring industrial workers that provides a near real-time decentralized response system aimed at reacting and tracing events that affect operator personal safety and health. Such a monitoring system is based on the information collected from sensors encapsulated in IoT wearables that are used to measure both personal and environmental data. The communications architecture relies on LoRaWAN, an LPWAN (Low-Power Wide-Area Network) technology that offers good reliability in harsh communications environments and that provides relatively long distance communications with low-energy consumption. Specifically, each wearable sends the collected information (e.g., heart rate, altitude, external temperature, gas concentration, location) from the sensors to the nearest LoRaWAN gateway, which is transmitted to a pool of nodes where information is stored in a distributed manner. Such a decentralized system allows for providing information redundancy and guarantees its availability as long as there is an operative node. In addition, the proposed system is able to store and to process the collected data through smart contracts in a blockchain, which eliminate the need for a central backend and ensure the traceability and immutability of such data in order to share them with third parties (e.g., insurance companies or medical services).

Open access
IoT Networks and Protocols
IoT and Edge/Fog Computing
Wireless Body Area Networks
Original source
Nov 13, 2019·Sustainability
96 cites
Blockchain in FinTech: A Mapping Study

Simón Fernández-Vázquez, Rafael Rosillo, David de la Fuente, Paolo Priore

Blockchain is currently one of the most important topics in both the academia and industry world, mainly due to the possible effects that the continuing application of this new technology could have. The adoption of this technology by FinTech companies constitutes the next step towards the expansion of blockchain and its sustainability. The paper conducts a mapping study on the research topics, limitations, gaps and future trends of blockchain in FinTech companies. A total of 49 papers from a scientific database (Web of Science Core Collection) have been analyzed. The results show a deep focus in challenges such as security, scalability, legal and regulatory, privacy or latency, with proposed solutions still to be far from being effective. A vast majority of the research is focused into finance and banking sector, obviating other industries that could play a crucial role in the further expansion of blockchain. This study can contribute to researchers as a starting point for their investigation, as well as a source for recommendations on future investigation directions regarding blockchain in the FinTech sector.

Open access
Blockchain Technology Applications and Security
FinTech, Crowdfunding, Digital Finance
IoT and Edge/Fog Computing
Original source
Nov 12, 2019·arXiv
4 cites
Impact of consensus on appendable-block blockchain for IoT

Roben Castagna Lunardi, Regio A. Michelin, Charles V. Neu, Henry C. Nunes · 6 authors

The Internet of Things (IoT) is transforming our physical world into a complex and dynamic system of connected devices on an unprecedented scale. Connecting everyday physical objects is creating new business models, improving processes and reducing costs and risks. Recently, blockchain technology has received a lot of attention from the community as a possible solution to overcome security issues in IoT. However, traditional blockchains (such as the ones used in Bitcoin and Ethereum) are not well suited to the resource-constrained nature of IoT devices and also with the large volume of information that is expected to be generated from typical IoT deployments. To overcome these issues, several researchers have presented lightweight instances of blockchains tailored for IoT. For example, proposing novel data structures based on blocks with decoupled and appendable data. However, these researchers did not discuss how the consensus algorithm would impact their solutions, i.e., the decision of which consensus algorithm would be better suited was left as an open issue. In this paper, we improved an appendable-block blockchain framework to support different consensus algorithms through a modular design. We evaluated the performance of this improved version in different emulated scenarios and studied the impact of varying the number of devices and transactions and employing different consensus algorithms. Even adopting different consensus algorithms, results indicate that the latency to append a new block is less than 161ms (in the more demanding scenario) and the delay for processing a new transaction is less than 7ms, suggesting that our improved version of the appendable-block blockchain is efficient and scalable, and thus well suited for IoT scenarios.

Open access
2 source records
cs.CR
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Original source
Nov 11, 2019·Anais do XXX Simpósio Brasileiro de Informática na Educação (SBIE 2019)
26 cites
A Blockchain Microsites-Based Ecosystem for Learning and Inclusion

Valéria Farinazzo Martins, Solomon Sunday Oyelere, Łukasz Tomczyk, Gabriel Barros-Gavilanes · 8 authors

Several initiatives have made available open educational resources, offered through educational platforms, aiming to achieve a broader audience, thus having the opportunity of democratizing knowledge. However, accessibility aspects in these resources still have many gaps. One is how to help teachers to prepare curricular contents available to all students, regardless of their limitations and disabilities. In this sense, this paper presents a digital ecosystem architecture, called SELI, that is being developed by a group of eleven European and Latin American countries. This ecosystem aims to provide an accessible learning environment and its contents, besides proper authoring tools based on recent technologies such as Blockchain, microsites, and universal accessibility guidelines.

Open access
IoT and Edge/Fog Computing
E-Learning and Knowledge Management
Blockchain Technology Applications and Security
Original source
Nov 11, 2019·Concurrency and Computation Practice and Experience
46 cites
Blockchain and edge computing–based architecture for participatory smart city applications

Zaheer Khan, Abdul Ghafoor Abbasi, Zeeshan Pervez

Summary Smart cities aim to provide smart governance with the emphasis on gaining high transparency and trust in public services and enabling citizen participation in decision making processes. This means on the one hand data generated from urban transactions need to be open and trustworthy. On the other hand, security and privacy of public data needs to be handled at different administrative and geographical levels. In this paper, we investigate the pivotal role of blockchain in providing privacy, self‐verification, authentication, and authorization of participatory transactions in open governance. We also investigate up to what extent edge computing can contribute toward management of permissioned sharing at specific administrative levels and enhance privacy and provide an economic approach for resource utilization in a distributed environment. We introduce a novel architecture that is based on distributed hybrid ledger and edge computing model. The architecture provides refined and secure management of data generated and processed in different geographical and administrative units of a city. We implemented a proof of concept of the architecture and applied it on a carefully designed use case, ie, citizen participation in administrative decisions through consensus. This use case highlights the need to keep and process citizen participation data at local level by deploying district chaincodes and only share consensus results through permissioned chaincodes. The results reveal that proposed architecture is scalable and provide secure and privacy protected environment for citizen participatory applications. Our performance test results are promising and show that under control conditions, the average registration time for a citizen transaction is about 42 ms, whilst the validation and result compilation of 100 concurrent citizens' transactions took about 2.4 seconds.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Mobile Crowdsensing and Crowdsourcing
Original source
Nov 8, 2019·IEEE Internet of Things Journal
527 cites
Blockchain for Future Smart Grid: A Comprehensive Survey

Muhammad Baqer Mollah, Jun Zhao, Dusit Niyato, Kwok‐Yan Lam · 8 authors

Due to the unique features and characteristics of blockchain technology, its applications have expanded across various sectors, including finance, banking, supply chains, and smart grids (SGs). Blockchain ensures security and trust in transactions without requiring a third party, making it particularly valuable in decentralized systems. This paper explores the integration of blockchain technology into SG systems. It begins with a comprehensive review of conventional and smart power grids, identifying the key challenges modern SGs face, particularly issues related to trust and fraud. An in-depth analysis of blockchain technology follows, highlighting its potential, advantages, and defining characteristics. The study then examines several blockchain-based SG applications and provides a comparative analysis of prior research. The findings of this review illuminate the critical role of blockchain in enhancing SG performance by addressing trust and fraud prevention challenges. Furthermore, this research has significant implications for the energy sector, as it underscores the potential of blockchain to revolutionize SGs through increased security, transparency, and efficiency. By providing a foundation for future studies, this paper aims to guide the development of unified blockchain frameworks that address scalability, privacy, and energy management, paving the way for a more secure and efficient decentralized energy system

Open access
3 source records
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Smart Grid Security and Resilience
Original source
Nov 8, 2019·Sensors
280 cites
Blockchain in Smart Grids: A Review on Different Use Cases

Tejasvi Alladi, Vinay Chamola, Joel J. P. C. Rodrigues, S. A. Kozlov

With the integration of Wireless Sensor Networks and the Internet of Things, the smart grid is being projected as a solution for the challenges regarding electricity supply in the future. However, security and privacy issues in the consumption and trading of electricity data pose serious challenges in the adoption of the smart grid. To address these challenges, blockchain technology is being researched for applicability in the smart grid. In this paper, important application areas of blockchain in the smart grid are discussed. One use case of each area is discussed in detail, suggesting a suitable blockchain architecture, a sample block structure and the potential blockchain technicalities employed in it. The blockchain can be used for peer-to-peer energy trading, where a credit-based payment scheme can enhance the energy trading process. Efficient data aggregation schemes based on the blockchain technology can be used to overcome the challenges related to privacy and security in the grid. Energy distribution systems can also use blockchain to remotely control energy flow to a particular area by monitoring the usage statistics of that area. Further, blockchain-based frameworks can also help in the diagnosis and maintenance of smart grid equipment. We also discuss several commercial implementations of blockchain in the smart grid. Finally, various challenges to be addressed for integrating these two technologies are discussed.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Smart Grid Security and Resilience
Original source
Nov 6, 2019·3C Tecnología_Glosas de innovación aplicadas a la pyme
29 cites
Blockchain based auditable medical transaction scheme for organ transplant services

Gasim Alandjani

Internet of Things have brought exciting changes in the social norms, work environments and the prospects for future generations. These devices (Things) have already changed the way our networks are used for communication. With the introduction of machine to machine communication (M2M), where devices communicate without human involvement to perform routine day to day tasks.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Organ Donation and Transplantation
Original source
Nov 6, 2019·Applied Sciences
77 cites
A Survey on Challenges and Progresses in Blockchain Technologies: A Performance and Security Perspective

Xiaoying Zheng, Yongxin Zhu, Xueming Si

Blockchain naturally fits multiple industry sectors due its characteristics of decentralization, enhanced security, tamper-proof, improved traceability and transparency. However, there is a significant concern of blockchain’s performance, since blockchain trades off its performance for a completely distributed feature, which enhances its security. In this paper, we investigate the state-of-the-art progress of blockchain, mainly from a performance and security perspective. We extracted 42 primary papers from major scientific databases and 34 online technical articles. The objective is to understand the current research trends, challenges and future directions. We briefly introduce the key technologies of blockchain including distributed ledger, cryptography, consensus, smart contracts and benchmarks. We next summarize the performance and security concerns raised in the investigation. We discuss the architectural choices, performance metrics, database management enhancements, and hybrid blockchains, and try to identify the effort that the state-of-the-art has made to balance between the performance and security. We also make experiments on Ethereum and survey other popular blockchain platforms on the scalability feature of blockchain. We later discuss the potential applications and present the lessons learned. Finally, we attempt to identify the open issues and possible research directions.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Retinal Imaging and Analysis
Original source
Nov 6, 2019·Proceedings of the 2019 ACM SIGSAC Conference on Computer and Communications Security
115 cites
HyperService

Zhuotao Liu, Yangxi Xiang, Jian Shi, Peng Gao · 8 authors

Blockchain interoperability, which allows state transitions across different blockchain networks, is critical functionality to facilitate major blockchain adoption. Existing interoperability protocols mostly focus on atomic token exchanges between blockchains. However, as blockchains have been upgraded from passive distributed ledgers into programmable state machines (thanks to smart contracts), the scope of blockchain interoperability goes beyond just token exchanges. In this paper, we present HyperService, the first platform that delivers interoperability and programmability across heterogeneous blockchains. HyperService is powered by two innovative designs: (i) a developer-facing programming framework that allows developers to build cross-chain applications in a unified programming model; and (ii) a secure blockchain-facing cryptography protocol that provably realizes those applications on blockchains. We implement a prototype of HyperService in approximately 35,000 lines of code to demonstrate its practicality. Our experiments show that (i) HyperService imposes reasonable latency, in order of seconds, on the end-to-end execution of cross-chain applications; (ii) the HyperService platform is scalable to continuously incorporate new large-scale production blockchains.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Distributed systems and fault tolerance
Original source
Nov 5, 2019·IEEE Transactions on Network Science and Engineering
16 cites
Downsampling and Transparent Coding for Blockchain

Qin Huang, Li Quan, Shengli Zhang

Blockchain is considered to be able to solve the problem of trust between distributed nodes. However, it's a challenge to store the large amount of data produced by blockchain. Therefore, it is necessary to reduce node storage overhead while ensuring node independence and data recoverability. This paper proposes to downsample these data to reduce the storage overhead of nodes. These nodes keep good independence, if downsampling follows the entropy of blockchain and the block bodies are continuously stored. Moreover, it demonstrates that the entire blockchain history can be efficiently recovered through the cooperative decoding of a group of nodes like fountain codes, if reserved data over these nodes obey the soliton distribution. However, these data on nodes are transparent (stored data are uncoded and can be used directly by the node without decoding). Thus, the proposed algorithm not only keeps decentralization and security, but also has good scalability in independence and recoverability.

Open access
2 source records
cs.CR
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Original source
Nov 4, 2019·arXiv
109 cites
Enabling Enterprise Blockchain Interoperability with Trusted Data Transfer (Industry Track)

Ermyas Abebe, Dushyant Behl, Chander Govindarajan, Yining Hu · 9 authors

The adoption of permissioned blockchain networks in enterprise settings has seen an increase in growth over the past few years. While encouraging, this is leading to the emergence of new data, asset and process silos limiting the potential value these networks bring to the broader ecosystem. Mechanisms for enabling network interoperability help preserve the benefits of independent sovereign networks, while allowing for the transfer or sharing of data, assets and processes across network boundaries. However, a naive approach to interoperability based on traditional point-to-point integration is insufficient for preserving the underlying trust decentralized networks provide. In this paper, we lay the foundation for an approach to interoperability based on a communication protocol that derives trust from the underlying network consensus protocol. We present an architecture and a set of building blocks that can be adapted for use in a range of network implementations and demonstrate a proof-of-concept for trusted data-sharing between two independent trade finance and supply-chain networks, each running on Hyperledger Fabric. We show how existing blockchain deployments can be adapted for interoperation and discuss the security and extensibility of our architecture and mechanisms.

Open access
2 source records
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Cloud Data Security Solutions
Original source
Nov 2, 2019·International Journal of Recent Technology and Engineering (IJRTE)
33 cites
Digital Forensics using Blockchain

Authors unavailable

On considering the integrity of electronic evidence, in particular,we can see that such evidence needs to be protected from a number of undesirable outcomes namely, alteration or destruction. We need to guard against these events and others when trying to maintain system integrity and preserve the purity of evidence so that it could be acceptable in the court. Chain of Custody is nothing but the consecutive documentation of records. The Chain of Custody has all the necessary steps that a crime investigator must follow to make sure whether the information is honest. The Chain of Custody is significant because it cannot be proven that evidence was not altered during the time between collection and its usage in court. Then the collected evidence is not credible. Blockchain technology,a decentralized network currently used by Bitcoins and other Cryptocurrency networks, helps provide a secure database with the help of hashing the data and storing it in blocks.We propose to implement blockchain technology for the process of Chain of Custody, which helps in tracking the people whoaccess the data and assist in assuring the credibility of the data provided during the time of submission in court.

Open access
Blockchain Technology Applications and Security
Advanced Steganography and Watermarking Techniques
IoT and Edge/Fog Computing
Original source