The paper claims IP networks are inherently insecure and unable to evolve, and proposes the CoG-MIN architecture with blockchain governance and cyberspace customs as a complete replacement, backed by self-reported tests and unsupported theorems.
Q-PnV: A Quantum Consensus Mechanism for Security Consortium Blockchains
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abstract
Due to the rapid development of quantum computing, many classical blockchain technologies are now considered insecure. The emergence of quantum blockchain holds promise for addressing this issue. Various quantum consensus algorithms have been proposed so far, but there has not yet been a quantum consensus algorithm tailored specifically for consortium blockchain scenarios. In this paper, we propose a novel quantum consensus mechanism, named Q-PnV. This consensus mechanism is based on the classical Proof of Vote (PoV), integrating quantum voting, quantum digital signature and quantum random number generators (QRNGs). By combining Q-PnV with a quantum blockchain using weighted hypergraph states, we propose a comprehensive quantum blockchain solution for consortium blockchain scenarios. Compared to the classical method, the quantum blockchain based on Q-PnV can resist quantum attacks and shows significant improvements in security and fairness, making it better suit-ed for the future quantum era.
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A technical solution for the rule of law, peace, security, and evolvability of global cyberspace -- solve the three genetic defects of IP network
The paper claims IP networks are inherently insecure and unable to evolve, and proposes the CoG-MIN architecture with blockchain governance and cyberspace customs as a complete replacement, backed by self-reported tests and unsupported theorems.