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Merkle Tree Digital Signature and Trusted Computing Platform

机译:Merkle Tree数字签名和可信计算平台

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摘要

Lack of efficiency in the initial key generation process is a serious shortcoming of Merkle tree signature scheme with a large number of possible signatures. Based on two kinds of Merkle trees, a new tree type signature scheme is constructed, and it is provably existentially unforgeable under adaptive chosen message attack. By decentralizing the initial key generation process of the original scheme within the signature process, a large Merkle tree with 6. 87 X 10~(10) possible signatures can be initialized in 590 milliseconds. Storing some small Merkle trees in hard disk and memory can speed up Merkle tree signature scheme. Mekle tree signature schemes are fit for trusted computing platform in most scenarios.
机译:初始密钥生成过程中效率低下是带有大量可能签名的Merkle树签名方案的严重缺陷。基于两种Merkle树,构造了一种新的树型签名方案,并且在自适应选择消息攻击下它证明是存在不可伪造的。通过在签名过程中分散原始方案的初始密钥生成过程,可以在590毫秒内初始化具有6个,87 X 10〜(10)个可能签名的大型Merkle树。在硬盘和内存中存储一​​些小型Merkle树可以加快Merkle树签名方案的速度。 Mekle树签名方案在大多数情况下都适用于受信任的计算平台。

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