Jin Wang, Wencheng Chen, Lei Wang, Yongjun Ren · 5 authors
With the development of the Industrial Internet of Things and the continuous expansion of application scenarios, many development bottlenecks have followed. Its data security issue has become an obstacle to its widespread application. It has attracted substantial attention from both academia and industry. Blockchain technology has the characteristics of decentralization, openness and transparency and non-tampering. It has natural advantages in solving the security of the Industrial Internet of Things. Accordingly, this paper first analyzes the security risks associated with data storage in the Industrial Internet of Things and proposes the use of blockchain technology to ensure the secure storage of data in the Industrial Internet of Things. In traditional blockchains, the data layer uses Merkle hash trees to store data; however, the Merkle hash tree not able to provide non-member proof, which makes it unable to resist attacks from malicious nodes in the network. To solve this problem, this paper replaces the Merkle hash tree with a password accumulator to provide member proof and non-member proof. Moreover, the existing accumulators have trapdoors and cannot be updated in batches, and unable to meet the blockchain’s expansion requirements. This paper presents an improved RSA accumulator and gives the definition of the accumulator. Finally, this paper uses RSA to construct a batch update accumulator scheme without trapdoor, and shows that the scheme is feasible through correctness and security
This research paper focuses on the interconnections between traditional and cutting-edge technological features of virtual currencies and the EU legal framework to prevent the misuse of the financial system for money laundering and terrorist financing purposes. It highlights a set of Anti-Money Laundering and Counter-Terrorist Financing (AML/CFT) challenges brought about in the Internet of Money (IoM) landscape by the double-edged nature of Distributed Ledger Technologies (DLTs) as both transparency and privacy ori- ented. Special attention is paid to inferences from concepts such as pseudonymity and traceability; this contribution explores these notions by relating them to privacy enhanc- ing mechanisms and blockchain intelligence strategies, while heeding both core elements of the present AML/CFT obliged entities’ framework and possible new conceptualizations. Finally, it identifies key controversies and open questions as to the actual feasibility of ef- fectively applying the “active cooperation” AML/CFT approach to the crypto ecosystems.
We propose a quantum assisted secure distributed ledger system that is client centric and polyvalent. The multiple attribute lock encryption (MALE) provides asymmetric key encryption to protect the data. The keys are of high randomness as they are generated via the simulation of a quantum walk. Quantum random walkers on a circle structure have been shown to be an efficient pseudo-random number generator. On top of the quantum random walker, we apply the quantum key distribution (QKD) protocol to avoid the double spending problem and to serve as a seed provider for the quantum walk. We further design the key chain update protocol with the help of MALE mechanism after each data access. Both QKD and quantum random walker can be efficiently simulated with current classical computation and near-term quantum technologies. Potential applications of proposed work in smart-city context are briefly discussed as well.
The Internet of Medical Things (IoMT) represents a network of implantable or wearable medical devices that continuously collect medical data about the patient’s health status. These data are heavy, sensitive and require high level of security. With the emergence of blockchain technology, researchers are focusing on using blockchain strategies to bring security to healthcare applications. However, such integration is very difficult and challenging due to the different requirements in these two technologies. We present in this paper a technical review of existing solutions applying blockchain technology on IoMT. We analyze these studies, discuss the proposed architectures and how they managed the integration challenges. The open issues regarding the application of blockchain over IoMT are also specified.
With the greater availability and reduced dimensions of complex electronics, an Internet of Things (IoT) will emerge in the future, in which machines use sensors to collect and evaluate information about the physical world and share it with other machines without having to rely on human interaction. Blockchain technology encompasses features such as trustworthiness and decentralization and these features can be advantageous in the IoT context, as they can help to ensure data integrity in an Internet of Things unmonitored by humans. In the course of this paper, we investigate to what extent the use of blockchain technology is feasible for autonomous devices in IoT. For this purpose, a prototypical client blockchain component is built using the single-board computer Raspberry Pi and a simulated Ethereum blockchain. This prototype will be examined for aspects like proper functionality, response times and performance.
Emmanuel Boateng Sifah, Hu Xia, Christian Nii Aflah Cobblah, Qi Xia · 6 authors
In recent years, the use of blockchain has gained attention in industrial interventions and research. Blockchain technologies can be particularly utilized in the domain of Smart Governance, which is a critical component of Smart Cities. Smart Governance aims to ensure smarter decision making, openness and collaborative participation of all entities involved as well as help minimize resource usage, reduce consumption and save cost. Smart Governance involves putting in place systems for monitoring and evaluating the performance of government workers. However, government workers lack trust in these systems because they are mostly centralized systems which are prone to single-point of failure problems and also data fed into these systems can be tampered with by the higher-ups or employers to favour individual workers. With these problems, there is a need for a decentralized system that can ensure trust, tamper-resistance, accountability, reliability, transparency and security. In this paper, we propose a decentralized employee evaluation system based on blockchain. We utilized a 3-chain model, namely; ID-Chain, Behavior Chain and Credit Chain fused to make a single unified chain. Our system also makes use of an automated game-based employee evaluation approach. Our system is based on Hyperledger Fabric as the blockchain platform and operating mechanism. Our Proof of Concept (PoC) results shows that in utilizing the Blockchain system, security concerns such as trust, privacy, accountability, among others, that are present in current employee performance evaluation systems are tackled and also in the adoption of the game-based automated system, our system can make an effective decision regarding employee performance. Our system achieves trust, transparency, security and accountability among government workers under a Smart City governing environment.
Dmitrij Lagutin, Priit Anton, Francesco Bellesini, Tommaso Bragatto · 18 authors
The Internet of Things (IoT) suffer from lack of interoperability as data, devices, and whole sub-systems are locked in 'silos' because of technical, but mostly business reasons. Many new applications would be enabled and existing ones could be implemented in a more cost-efficient way, if the 'silos' could be bridged in a secure and privacy preserving manner. The SOFIE approach provides an effective way of accomplishing this by using interledger technologies that leverage the distributed trust enabled by distributed ledgers. The federated approach of SOFIE facilitates the creation of cross-organisational applications. This chapter presents the SOFIE approach and details the benefits it provides in four real-world pilots.
The Internet of Things (IoT) which creates a hyper-connected society is playing a major role in the 4th industrial revolution. The IoT is being leveraged across various fields of business globally and the number of IoT devices is causing serious security concerns. Since the firmware update of an IoT device is necessary for its lifecycle, secure firmware update of the IoT device is being brought as the first step in IoT security. The Internet Engineering Task Force (IETF) Software Updates for Internet of Things (SUIT) working group has started to specify a software update architecture for IoT devices. However, the current SUIT working group adopts a traditional client-server model to distribute firmware images, which potentially causes security risks. The current approach of the SUIT working group is unable to solve a targeting issue and an author-disappearing issue, which is suggested in this paper. Therefore, in this work, we introduce a distributed firmware update architecture based on the SUIT firmware update architecture applying blockchain. Our update architecture can prevent the issues we concern through the characteristics of blockchain, such as decentralization, transparency, and irreversibility. The blockchain network has registration nodes that process registration of manifest and firmware image files from authors, and retrieval nodes that process downloading manifest and firmware image files. The firmware image files are stored in a distributed file system and the hash values of firmware image chunks are stored on the blockchain with manifest files. The proposed architecture in this paper enables the irreversible downloads even in the author-disappearing state and tolerant to a single point of failure.
The revolution of the Internet of Things (IoT) is transforming many concepts, making them “Smart”. It has revolutionized many areas of real life. Smart City is one of the key concepts of this revolution. Although cities are being digitally transformed, it still has obstacles along the way. In this paper, we have analyzed different publications for our Systematic Literature Review (SLR). This study highlights the areas where the blockchain is used and determines the benefits of using blockchain. The main contribution is to explore and identify the barriers and hurdles in Smart City Domain and how these hurdles are mitigated by the blockchain technology. This Systematic Study also addresses different challenges and issues such as security, immutability, interoperability, decentralization, privacy, and trust in the development of Smart Cities. An overview of the systematic research is also presented that would help identify the most and least studied concerns addressed in this study. This paper aims at analyzing how blockchain technology is used in different smart city business models, what are the features of blockchain that could consider it to be used beyond crypto currencies. We hope that this study can inspire interest in theory and exercise to stand-in discussions in this area adhere to these limits.
J. A. García-García, N. Sánchez-Gómez, David Lizcano, María José Escalona · 5 authors
BlockChain Technology (BCT) has appeared with strength and promises an authentic revolution on business, management, and organizational strategies related to utilization of advanced software systems. In fact, BCT promotes a decentralized architecture to process management and the collaborative work between entities when these ones are working together in a business process. This paper aims to know what proposals exist to improve any stage of business process management using BCT because this technology could provide benefits in this management. For this purpose, this paper presents a systematic literature review in area of Collaborative Business Processes (CBP) in BCT domain to identify opportunities and gaps for further research. This paper concludes there is a rapid and growing interest of public bodies, scientific community and software industries to know opportunities that BCT offers to improve CBP management in a decentralized manner. However, although the topic is in early stages, there are very promising lines of research and relevant open issues, but there also is lack of scientific rigor in validation process into the different studies.