Blockchain Papers

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1,173 papersLast indexed Aug 31, 2026
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Jun 15, 2018·arXiv (Cornell University)
1 cites
Design Patterns which Facilitate Message Digest Collision Attacks on Blockchains

Peter Robinson

Message digest algorithms are one of the underlying building blocks of\nblockchain platforms such as Ethereum. This paper analyses situations in which\nthe message digest collision resistance property can be exploited by attackers.\nTwo mitigations for possible attacks are described: longer message digest sizes\nmake attacks more difficult; and, including timeliness properties limits the\namount of time an attacker has to determine a hash collision.\n

Open access
3 source records
cs.CR
Blockchain Technology Applications and Security
Cloud Computing and Resource Management
Original source
Jun 12, 2018·arXiv (Cornell University)
11 cites
Trinity: A Distributed Publish/Subscribe Broker with Blockchain-based Immutability

Gowri Ramachandran, Kwame-Lante Wright, Bhaskar Krishnamachari

Internet-of-Things (IoT) and Supply Chain monitoring applications rely on messaging protocols for exchanging data. Contemporary IoT deployments widely use the publish-subscribe messaging model because of its resource-efficiency. However, the systems with publish-subscribe messaging model employ a centralized architecture, wherein the data from all the devices in the application network flows via a central broker to the subscribers. Such a centralized architecture make publish-subscribe messaging model susceptible to a central point of failure. Besides, it provides an opportunity for the organization that owns the broker to tamper with the data. In this work, we contribute Trinity, a novel distributed publish-subscribe broker with blockchain-based immutability. Trinity distributes the data published to one of the brokers in the network to all the brokers in the network. The distributed data is stored in an immutable ledger through the use of the blockchain technology. Furthermore, Trinity executes smart contracts to validate the data before saving the data on the blockchain. Through the use of a blockchain network, Trinity can guarantee persistence, ordering, and immutability across trust boundaries. Our evaluation results show that Trinity consumes minimal resources, and the use of smart contracts enable the stakeholders to automate the data management processes. To the best of our knowledge, Trinity is the first framework that combines the components of the blockchain technology with the publish-subscribe messaging model.

Open access
2 source records
cs.DC
Blockchain Technology Applications and Security
Caching and Content Delivery
Original source
Jun 8, 2018·International Journal of Intelligent Systems and Applications
377 cites
Blockchain with Internet of Things: Benefits, Challenges, and Future Directions

Hany F. Atlam, Ahmed Alenezi, Madini O. Alassafi, Gary Wills

The Internet of Things (IoT) has extended the internet connectivity to reach not just computers and humans, but most of our environment things. The IoT has the potential to connect billions of objects simultaneously which has the impact of improving information sharing needs that result in improving our life. Although the IoT benefits are unlimited, there are many challenges facing adopting the IoT in the real world due to its centralized server/client model. For instance, scalability and security issues that arise due to the excessive numbers of IoT objects in the network. The server/client model requires all devices to be connected and authenticated through the server, which creates a single point of failure. Therefore, moving the IoT system into the decentralized path may be the right decision. One of the popular decentralization systems is blockchain. The Blockchain is a powerful technology that decentralizes computation and management processes which can solve many of IoT issues, especially security. This paper provides an overview of the integration of the blockchain with the IoT with highlighting the integration benefits and challenges. The future research directions of blockchain with IoT are also discussed. We conclude that the combination of blockchain and IoT can provide a powerful approach which can significantly pave the way for new business models and distributed applications.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Caching and Content Delivery
Original source
Jun 6, 2018·arXiv (Cornell University)
38 cites
IoTChain: A Three-Tier Blockchain-based IoT Security Architecture

Zijian Bao, Wenbo Shi, Debiao He, Kim‐Kwang Raymond Choo

There has been increasing interest in the potential of blockchain in enhancing the security of devices and systems, such as Internet of Things (IoT). In this paper, we present a blockchain-based IoT security architecture, IoTchain. The three-tier architecture comprises an authentication layer, a blockchain layer and an application layer, and is designed to achieve identity authentication, access control, privacy protection, lightweight feature, regional node fault tolerance, denial-of-service resilience, and storage integrity. We also evaluate the performance of IoTchain to demonstrate its utility in an IoT deployment.

Open access
2 source records
cs.CR
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Original source
Jun 1, 2018·Duo Research Archive (University of Oslo)
4 cites
FireChain: An Efficient Blockchain Protocol using Secure Gossip

Jon Foss Mikalsen

Blockchains have become an integral part of many distributed applications, providing a new platform for interaction between system components. Blockchains are perhaps most known for their use in crypto-currency systems, such as Bitcoin and Ethereum, where pseudo-anonymous parties engage in transactions without a trusted third party. Blockchain systems often struggle to meet performance demands of real-word applications, rendering them inappropriate for performance sensitive applications.\nThere is also concerns regarding the immense amount of electrical energy required to securely run existing public blockchain systems. Bitcoin alone consumes more than small countries. Private systems have higher throughput and avoid excessive energy consumption, but have closed membership and do not scale to the same extent.\n\nBoth public and private blockchains rely on some form of membership mechanism providing peers with a view of other participants. Existing systems often employ partial view protocols due to their natural scalability. However, recent work have shown that full view protocols are feasible in practice, and can scale to thousands of participants. With full membership, applications can send messages directly to their destination without any intermediate hops.\n\nThis thesis presents FireChain, which combines a Byzantine fault-tolerant gossip service and full membership, with a proposal for blockchain systems that does not consume excessive energy. We evaluate FireChain's performance through experiments on PlanetLab, and show that it scales beyond hundreds of members.

Open access
Peer-to-Peer Network Technologies
Blockchain Technology Applications and Security
Caching and Content Delivery
Original source
Jun 1, 2018·IOP Conference Series Earth and Environmental Science
19 cites
Blockchain Technology Hyperledger Framework in the Internet of Energy

Dongpo Zhang, Zhenyuan Zhang, Luan Chen, S. Li · 6 authors

Internet of Energy, a combination of power grid and Internet, contains many energy forms. Different form of energy is distributed in Internet of energy, which means that it is closely related to distributed technology. Different forms of energy needs to interconvert, so it is necessary to make power trading in this distributed system, the current power trading model is not adaptive to distributed power trading, so a new distributed trading model is important to Internet of energy. Blockchain technology with distribution and decentralization features is widely used in electronic currency transactions, Hyperledger-Fabric is the one of typical framework of blockchain, which could provide a platform for distributed ledger, it has distributed blocks and ledgers to make decentralized trading by using blockchain technology for Internet of energy.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Caching and Content Delivery
Original source
Jun 1, 2018·2018 Power Systems Computation Conference (PSCC)
52 cites
Blockchain for Peer-to-Peer Energy Exchanges: Design and Recommendations

David Vangulick, Bertrand Cornélusse, Damien Ernst

Energy communities and peer-to-peer energy exchanges are expected to play an important role in the energy transition. In this context, the blockchain approach can be employed to foster this decentralized energy market. Our goal is to determine the design that should allow a Distribution System Operator (DSO) to accept peer-to-peer energy exchanges based on a distributed ledger supported by the blockchain technology. To this end, we will evaluate several designs based on criteria such as acceptance of the wholesale/retail market, the resilience of the consensus to approve a block, the accuracy, traceability, privacy and security of the proposed schemes.

Open access
Blockchain Technology Applications and Security
Smart Grid Energy Management
Caching and Content Delivery
Original source
Jun 1, 2018·2018 IEEE 19th International Symposium on "A World of Wireless, Mobile and Multimedia Networks" (WoWMoM)
12 cites
Demo: A Delay-Tolerant Payment Scheme on the Ethereum Blockchain

Ahsan Manzoor, Yining Hu, Madhusanka Liyanage, Parinya Ekparinya · 9 authors

Cash-less payment via a variety of credit, debit or prepaid cards is pervasive in our interconnected society, but not so ubiquitous in remote rural regions where network connectivity is intermittent. We proposed a cash-less payment scheme for remote villages based on blockchains that allow maintaining a record of verifiable transactions in a distributed manner. We overcome the limitations of intermittent network connectivity by solely relying on blockchain mining nodes in the village for transaction processing and verification. The bank joins as a peer and monitors node behaviors, rewards miners and processes currency exchanges whenever the connectivity is available. We take advantage of the Ethereum network to develop our solution and demonstrate the feasibility of the proposed system on off-the-shelf computing devices. We emulate a remote village scenario with intermittent network connectivity and show the robustness and reliability of the proposed system.

Open access
Caching and Content Delivery
Blockchain Technology Applications and Security
Opportunistic and Delay-Tolerant Networks
Original source
Jun 1, 2018·arXiv (Cornell University)
11 cites
On the Applicability of Distributed Ledger Architectures to Peer-to-Peer Energy Trading Framework

Van Hoa Nguyen, Yvon Bésanger, Quoc Tuan Tran, Minh Tri Le

As more and more distributed renewable energy resources are integrated to the grid, the traditional consumers have become the prosumers who can sell back their surplus energy to the others who are in energy shortage. This peer-to-peer (P2P) energy transaction framework benefits the end users, financially and in term of energy security; and the network operators, in term of flexibility in DRES management, peak load shifting and regulation of voltage/frequency. Environmentally, P2P energy transaction also helps to reduce carbon footprint, reduces DRES payback period and incentivizes the installation of DRES. The current centralized market model is no longer suitable and it is therefore necessary to develop an adapted decentralized architecture for the advanced P2P energy transaction framework intra/inter-micro grid. In this paper, we discuss several distributed ledger approaches for such framework: Blockchain, Block Lattice and Directed Acyclic Graph (the Tangle). The technical advantages of these architectures as well as the persistent challenges are then considered.

Open access
3 source records
Blockchain Technology Applications and Security
Smart Grid Energy Management
Caching and Content Delivery
Original source
May 29, 2018·Proceedings of the 1st Workshop on Cryptocurrencies and Blockchains for Distributed Systems
26 cites
Open Peer-to-Peer Systems over Blockchain and IPFS

Antonio Tenorio-Fornés, Samer Hassan, Juán Pavón

In recent years, the increasing concerns around the centralized cloud web services (e.g. privacy, governance, surveillance, security) have triggered the emergence of new distributed technologies, such as IPFS or the Blockchain. These innovations have tackled technical challenges that were unresolved until their appearance. Existing models of peer-to-peer systems need a revision to cover the spectrum of potential systems that can be now implemented as peer-to-peer systems. This work presents a framework to build these systems. It uses an agent-oriented approach in an open environment where agents have only partial information of the system data. The proposal covers data access, data discovery and data trust in peer-to-peer systems where different actors may interact. Moreover, the framework proposes a distributed architecture for these open systems, and provides guidelines to decide in which cases Blockchain technology may be required, or when other technologies may be sufficient.

Open access
Peer-to-Peer Network Technologies
Blockchain Technology Applications and Security
Caching and Content Delivery
Original source
May 24, 2018·Journal of Signal Processing
30 cites
Secure Caching Scheme by Using Blockchain for Information-Centric Network-Based Wireless Sensor Networks

Shintaro Mori

This paper addresses a secure caching scheme for information-centric network (ICN)-based wireless sensor networks (WSNs). In order to achieve the above mechanism, we utilize both the public-key cryptography technique and the blockchain technique, which enable data to be safely gathered and the decentralized and crossverified sensing data to be copied and stored. In addition, we propose a protocol design for introducing the proposed structure into an ICN-based WSN system. Furthermore, we formulate statistical models and demonstrate numerical results by performing computer simulations and hardware-based experiments.

Open access
Caching and Content Delivery
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Original source
May 24, 2018·Future Generation Computer Systems
1,892 cites
On blockchain and its integration with IoT. Challenges and opportunities

Ana Reyna, Cristian Martín, Jaime Chen, Enrique Soler · 5 authors

In the Internet of Things (IoT) vision, conventional devices become smart and autonomous. This vision is turning into a reality thanks to advances in technology, but there are still challenges to address, particularly in the security domain e.g., data reliability. Taking into account the predicted evolution of the IoT in the coming years, it is necessary to provide confidence in this huge incoming information source. Blockchain has emerged as a key technology that will transform the way in which we share information. Building trust in distributed environments without the need for authorities is a technological advance that has the potential to change many industries, the IoT among them. Disruptive technologies such as big data and cloud computing have been leveraged by IoT to overcome its limitations since its conception, and we think blockchain will be one of the next ones. This paper focuses on this relationship, investigates challenges in blockchain IoT applications, and surveys the most relevant work in order to analyze how blockchain could potentially improve the IoT.

Open access
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Caching and Content Delivery
Original source
May 15, 2018·arXiv (Cornell University)
31 cites
Towards a Design Philosophy for Interoperable Blockchain Systems

Thomas Hardjono, Alexander Lipton, Alex Pentland

In this paper we discuss a design philosophy for interoperable blockchain systems, using the design philosophy of the Internet architecture as the basis to identify key design principles. Several interoperability challenges are discussed in the context of cross-domain transactions. We illustrate how these principles are informing the interoperability architecture of the MIT Tradecoin system.

Open access
2 source records
cs.CR
Blockchain Technology Applications and Security
Distributed systems and fault tolerance
Original source
May 11, 2018·arXiv (Cornell University)
17 cites
IPchain: Securing IP Prefix Allocation and Delegation with Blockchain

Jordi Paillissé, Miquel Ferriol, Eric García, Hamid Latif · 11 authors

We present IPchain, a blockchain to store the allocations and delegations of IP addresses, with the aim of easing the deployment of secure interdomain routing systems. Interdomain routing security is of vital importance to the Internet since it prevents unwanted traffic redirections. IPchain makes use of blockchains' properties to provide flexible trust models and simplified management when compared to existing systems. In this paper we argue that Proof of Stake is a suitable consensus algorithm for IPchain due to the unique incentive structure of this use-case. We have implemented and evaluated IPchain's performance and scalability storing around 150k IP prefixes in a 1GB chain.

Open access
3 source records
cs.NI
Blockchain Technology Applications and Security
Advanced Malware Detection Techniques
Original source
May 7, 2018·IEEE Access
1,003 cites
A Survey on Consensus Mechanisms and Mining Strategy Management in Blockchain Networks

Wenbo Wang, Dinh Thai Hoang, Peizhao Hu, Zehui Xiong · 8 authors

The past decade has witnessed the rapid evolution in blockchain technologies, which has attracted tremendous interests from both the research communities and industries. The blockchain network was originated from the Internet financial sector as a decentralized, immutable ledger system for transactional data ordering. Nowadays, it is envisioned as a powerful backbone/framework for decentralized data processing and data-driven self-organization in flat, open-access networks. In particular, the plausible characteristics of decentralization, immutability, and self-organization are primarily owing to the unique decentralized consensus mechanisms introduced by blockchain networks. This survey is motivated by the lack of a comprehensive literature review on the development of decentralized consensus mechanisms in blockchain networks. In this paper, we provide a systematic vision of the organization of blockchain networks. By emphasizing the unique characteristics of decentralized consensus in blockchain networks, our in-depth review of the state-of-the-art consensus protocols is focused on both the perspective of distributed consensus system design and the perspective of incentive mechanism design. From a game-theoretic point of view, we also provide a thorough review of the strategy adopted for self-organization by the individual nodes in the blockchain backbone networks. Consequently, we provide a comprehensive survey of the emerging applications of blockchain networks in a broad area of telecommunication. We highlight our special interest in how the consensus mechanisms impact these applications. Finally, we discuss several open issues in the protocol design for blockchain consensus and the related potential research directions.

Open access
2 source records
Blockchain Technology Applications and Security
Spam and Phishing Detection
Caching and Content Delivery
Original source
May 7, 2018·arXiv (Cornell University)
100 cites
A Survey on Consensus Mechanisms and Mining Management in Blockchain Networks

Wenbo Wang, Dinh Thai Hoang, Zehui Xiong, Dusit Niyato · 7 authors

The past decade has witnessed the rapid evolution in blockchain technologies, which has attracted tremendous interests from both the research communities and the industry. The blockchain network was originated in the Internet finical sector as a decentralized, immutable ledger system for transactional data ordering. Nowadays, it is envisioned as a powerful backbone/framework for decentralized data processing and data-driven self-organization in flat, open-access networks. In particular, the plausible characteristics of decentralization, immutability and self-organization are primarily owing to the unique decentralized consensus mechanisms introduced by blockchain networks. This survey is motivated by the lack of a comprehensive literature review on the development of decentralized consensus mechanisms in blockchain networks. In this survey, we provide a systematic vision of the organization of blockchain networks. By emphasizing the unique characteristics of incentivized consensus in blockchain networks, our in-depth review of the state-of-the-art consensus protocols is focused on both the perspective of distributed consensus system design and the perspective of incentive mechanism design. From a game-theoretic point of view, we also provide a thorough review on the strategy adoption for self-organization by the individual nodes in the blockchain backbone networks. Consequently, we provide a comprehensive survey on the emerging applications of the blockchain networks in a wide range of areas. We highlight our special interest in how the consensus mechanisms impact these applications. Finally, we discuss several open issues in the protocol design for blockchain consensus and the related potential research directions.

Open access
Blockchain Technology Applications and Security
Caching and Content Delivery
Peer-to-Peer Network Technologies
Original source
May 2, 2018·arXiv
9 cites
Erasure code-based low storage blockchain node

Doriane Perard, Jérôme Lacan, Yann Bachy, Jonathan Detchart

The concept of a decentralized ledger usually implies that each node of a blockchain network stores the entire blockchain. However, in the case of popular blockchains, which each weigh several hundreds of GB, the large amount of data to be stored can incite new or low-capacity nodes to run lightweight clients. Such nodes do not participate to the global storage effort and can result in a centralization of the blockchain by very few nodes, which is contrary to the basic concepts of a blockchain. To avoid this problem, we propose new low storage nodes that store a reduced amount of data generated from the blockchain by using erasure codes. The properties of this technique ensure that any block of the chain can be easily rebuild from a small number of such nodes. This system should encourage low storage nodes to contribute to the storage of the blockchain and to maintain decentralization despite of a globally increasing size of the blockchain. This system paves the way to new types of blockchains which would only be managed by low capacity nodes.

Open access
2 source records
cs.CR
cs.DC
Advanced Data Storage Technologies
Original source
May 1, 2018·2018 IFIP Networking Conference (IFIP Networking) and Workshops
18 cites
A Blockchain Consensus Protocol With Horizontal Scalability

Kelong Cong, Zhijie Ren, Johan Pouwelse

Blockchain technology has the potential to decentralise many traditionally centralised systems. However, scalability remains a key challenge. A horizontally scalable solution, where performance increases by adding more nodes, would move blockchain systems one step closer to ubiquitous use. We design a novel blockchain system called CHECO. Each node in our system maintains a personal hash chain, which only stores transactions that the node is involved in. A consensus is reached on special blocks called checkpoint blocks rather than on all transactions. Checkpoint blocks are effectively a hash pointer to the personal hash chains; thus a single checkpoint block may represent an arbitrarily large set of transactions. We introduce a validation protocol so that any node can check the validity of any transaction. Since transaction and validation protocols are point-to-point, we achieve horizontal scalability. We analytically evaluate our system and show a number of highly desirable correctness properties such as consensus on the validity of transactions. Further, we give a free and open-source implementation of CHECO and evaluate it experimentally. Our results show a strong indication of horizontal scalability.

Open access
Blockchain Technology Applications and Security
Distributed systems and fault tolerance
Caching and Content Delivery
Original source
May 1, 2018·2018 IEEE Symposium on Security and Privacy (SP)
1,228 cites
OmniLedger: A Secure, Scale-Out, Decentralized Ledger via Sharding

Eleftherios Kokoris-Kogias, Philipp Jovanovic, Linus Gasser, Nicolas Gailly · 6 authors

Designing a secure permissionless distributed ledger (blockchain) that performs on par with centralized payment processors, such as Visa, is a challenging task. Most existing distributed ledgers are unable to scale-out, i.e., to grow their total processing capacity with the number of validators; and those that do, compromise security or decentralization. We present OmniLedger, a novel scale-out distributed ledger that preserves longterm security under permissionless operation. It ensures security and correctness by using a bias-resistant public-randomness protocol for choosing large, statistically representative shards that process transactions, and by introducing an efficient cross-shard commit protocol that atomically handles transactions affecting multiple shards. OmniLedger also optimizes performance via parallel intra-shard transaction processing, ledger pruning via collectively-signed state blocks, and low-latency "trust-but-verify" validation for low-value transactions. An evaluation of our experimental prototype shows that OmniLedger's throughput scales linearly in the number of active validators, supporting Visa-level workloads and beyond, while confirming typical transactions in under two seconds.

Open access
2 source records
Blockchain Technology Applications and Security
Peer-to-Peer Network Technologies
Caching and Content Delivery
Original source
May 1, 2018·2018 IoT Vertical and Topical Summit on Agriculture - Tuscany (IOT Tuscany)
850 cites
Blockchain-based traceability in Agri-Food supply chain management: A practical implementation

Miguel Pincheira, Muhammad Salek Ali, Massimo Vecchio, Raffaele Giaffreda

The recent, exponential rise in adoption of the most disparate Internet of Things (IoT) devices and technologies has reached also Agriculture and Food (Agri-Food) supply chains, drumming up substantial research and innovation interest towards developing reliable, auditable and transparent traceability systems. Current IoT-based traceability and provenance systems for Agri-Food supply chains are built on top of centralized infrastructures and this leaves room for unsolved issues and major concerns, including data integrity, tampering and single points of failure. Blockchains, the distributed ledger technology underpinning cryptocurrencies such as Bitcoin, represent a new and innovative technological approach to realizing decentralized trustless systems. Indeed, the inherent properties of this digital technology provide fault-tolerance, immutability, transparency and full traceability of the stored transaction records, as well as coherent digital representations of physical assets and autonomous transaction executions. This paper presents AgriBlockIoT, a fully decentralized, blockchain-based traceability solution for Agri-Food supply chain management, able to seamless integrate IoT devices producing and consuming digital data along the chain. To effectively assess AgriBlockIoT, first, we defined a classical use-case within the given vertical domain, namely from-farm-to-fork. Then, we developed and deployed such use-case, achieving traceability using two different blockchain implementations, namely Ethereum and Hyperledger Sawtooth. Finally, we evaluated and compared the performance of both the deployments, in terms of latency, CPU, and network usage, also highlighting their main pros and cons.

Open access
2 source records
Blockchain Technology Applications and Security
IoT and Edge/Fog Computing
Caching and Content Delivery
Original source
Apr 30, 2018·IEICE Transactions on Information and Systems
19 cites
A Hardware-Based Caching System on FPGA NIC for Blockchain

Yuma Sakakibara, Shin Morishima, Kohei Nakamura, Hiroki Matsutani

Engineers and researchers have recently paid attention to Blockchain. Blockchain is a fault-tolerant distributed ledger without administrators. Blockchain is originally derived from cryptocurrency, but it is possible to be applied to other industries. Transferring digital asset is called a transaction. Blockchain holds all transactions, so the total amount of Blockchain data will increase as time proceeds. On the other hand, the number of Internet of Things (IoT) products has been increasing. It is difficult for IoT products to hold all Blockchain data because of their storage capacity. Therefore, they access Blockchain data via servers that have Blockchain data. However, if a lot of IoT products access Blockchain network via servers, server overloads will occur. Thus, it is useful to reduce workloads and improve throughput. In this paper, we propose a caching technique using a Field Programmable Gate Array-based (FPGA) Network Interface Card (NIC) which possesses four 10Gigabit Ethernet (10GbE) interfaces. The proposed system can reduce server overloads, because the FPGA NIC instead of the server responds to requests from IoT products if cache hits. We implemented the proposed hardware cache to achieve high throughput on NetFPGA-10G board. We counted the number of requests that the server or the FPGA NIC processed as an evaluation. As a result, the throughput improved by on average 1.97 times when hitting the cache.

Open access
Caching and Content Delivery
IoT and Edge/Fog Computing
Blockchain Technology Applications and Security
Original source
Apr 22, 2018·Ubiquity The Journal of Pervasive Media
7 cites
Searching for an OxChain: Co-designing blockchain applications for charitable giving

Chris Elsden, Kate Symons, Chris Speed, John Vines · 5 authors

Abstract The OxChain project is investigating the design of blockchain applications in partnership with a large and traditionally trusted institution, Oxfam. We outline some of the potential opportunities that distributed ledger technologies could offer the charity and development sector as a whole, but focus on the challenges of undertaking co-design work in the context of large institutions. We suggest the need to leverage existing trusted relationships and understand the unique value that such institutions offer.

Open access
2 source records
FinTech, Crowdfunding, Digital Finance
Caching and Content Delivery
ICT in Developing Communities
Original source
Apr 20, 2018·IEEE Vehicular Technology Magazine
122 cites
Trusted 5G Vehicular Networks: Blockchains and Content-Centric Networking

Víctor Manuel Sámano Ortega, Faiza Bouchmal, José F. Monserrat

Vehicular communications, though a reality, must continue to evolve to support higher throughput and, above all, ultralow latency to accommodate new use cases, such as the fully autonomous vehicle. Cybersecurity must be assured since the risk of losing control of vehicles if a country were to come under attack is a matter of national security. This article presents the technological enablers that ensure security requirements are met. Under the umbrella of a dedicated network slice, this article proposes the use of content-centric networking (CCN), instead of conventional transmission control protocol/Internet protocol (TCP/IP) routing and permissioned blockchains that allow for the dynamic control of the source reliability, and the integrity and validity of the information exchanged.

Open access
Blockchain Technology Applications and Security
Vehicular Ad Hoc Networks (VANETs)
Caching and Content Delivery
Original source