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Feb 14, 2021·Future Internet
8 cites
An Accelerating Approach for Blockchain Information Transmission Based on NDN

Zhipeng Yang, Hua Lü, Ningjie Gao, Ru Huo · 6 authors

Blockchain is becoming more and more popular in various fields. Since the information transmission mode of the blockchain is data broadcasting, the traditional TCP/IP network cannot support the blockchain system well, but the Named-Data Networking (NDN) could be a good choice because of its multi-path forwarding and intra-network caching functions. In this article, we propose a new blockchain information transmission acceleration strategy (AITS) combining with graph theory and probability theory based on the NDN architecture. We select some more important nodes in the network as “secondary nodes”, and give them more bandwidth and cache space to assist the NDN network in data transmission. In order to select the correct node as the secondary node, we present a method to calculate the number of secondary nodes, and give the function to calculate the importance of each node. The simulation results show that in complex networks, the proposed method has superior performance in accelerating information transmission and reducing data overhead.

Open access
Caching and Content Delivery
Carbon and Quantum Dots Applications
Covalent Organic Framework Applications
Original source
Jun 1, 2019·IEEE Communications Magazine
77 cites
Securing ICN-Based UAV Ad Hoc Networks with Blockchain

Kai Lei, Qichao Zhang, Junjun Lou, Bo Bai · 5 authors

Named data networking (NDN) enables fast and efficient content dissemination in mission-critical unmanned aerial vehicle ad hoc networks (UAANETs); however, its in-network caching mechanism brings a new security challenge: content poisoning. Poisoned content can contaminate the cache on the routers and isolate valid content from the network, leading to performance degradation or denial of service. To mitigate such attacks and enhance network-layer trust of NDN-based UAANETs, this article proposes a novel and systematic framework that integrates interest-key-content binding (IKCB), forwarding strategy, and on-demand verification to efficiently discover poisoned content. To further provide decentralized IKCB store and detect internal attackers, we introduce a lightweight permissioned blockchain system over NDN and develop a scalable adaptive delegate consensus algorithm. Our experimental results have demonstrated that our proposed framework can effectively purge poisoned content with low overhead, and our algorithms achieve great performance to fit UAANETs.

Caching and Content Delivery
Opportunistic and Delay-Tolerant Networks
Carbon and Quantum Dots Applications
Original source