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Faster Dual-Key Stealth Address for Blockchain-Based Internet of Things Systems

机译:基于区块链的物联网系统更快的双键隐身地址

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Stealth address prevents public association of a blockchain transaction's output with a recipient's wallet address and hides the actual destination address of a transaction. While stealth address provides an effective privacy-enhancing technology for a cryptocurrency network, it requires blockchain nodes to actively monitor all the transactions and compute the purported destination addresses, which restricts its application for resource-constrained environments like Internet of Things (IoT). In this paper, we propose DKSAP-IoT, a faster dual-key stealth address protocol for blockchain-based IoT systems. DKSAP-IoT utilizes a technique similar to the TLS session resumption to improve the performance and reduce the transaction size at the same time between two communication peers. Our theoretical analysis as well as the extensive experiments on an embedded computing platform demonstrate that DKSAP-IoT is able to reduce the computational overhead by at least 50% when compared to the state-of-the-art scheme, thereby paving the way for its application to blockchain-based IoT systems.
机译:隐身地址可防止将区块链交易的输出与收件人的钱包地址进行公开关联,并隐藏交易的实际目标地址。虽然隐身地址为加密货币网络提供了有效的隐私增强技术,但它要求区块链节点主动监视所有交易并计算所声称的目的地址,这限制了其在物联网(IoT)等资源受限环境中的应用。在本文中,我们提出了DKSAP-IoT,这是一种用于基于区块链的IoT系统的更快的双键隐身地址协议。 DKSAP-IoT利用类似于TLS会话恢复的技术来改善性能,并同时减少两个通信对等方之间的事务大小。我们的理论分析以及在嵌入式计算平台上的大量实验表明,与最先进的方案相比,DKSAP-IoT能够将计算开销减少至少50%,从而为其实现铺平了道路。应用于基于区块链的物联网系统

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