首页> 外文会议>International Conference on Financial Cryptography and Data Security(FC 2005); 20050228-0303; Roseau(DM) >Probabilistic Escrow of Financial Transactions with Cumulative Threshold Disclosure
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Probabilistic Escrow of Financial Transactions with Cumulative Threshold Disclosure

机译:具有累积阈值披露的金融交易的概率托管

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摘要

We propose a scheme for privacy-preserving escrow of financial transactions. The objective of the scheme is to preserve privacy and anonymity of the individual user engaging in financial transactions until the cumulative amount of all transactions in a certain category, for example all transactions with a particular counterparty in any single month, reaches a pre-specified threshold. When the threshold is reached, the escrow agency automatically gains the ability to decrypt the escrows of all transactions in that category (and only that category). Our scheme employs the probabilistic polling idea of Jarecki and Odlyzko [JO97], amended by a novel robustness mechanism which makes such scheme secure for malicious parties. When submitting the escrow of a transaction, with probability that is proportional to the amount of the transaction, the user reveals a share of the key under which all his transactions are encrypted. Therefore, the fraction of shares that are known to the escrow agency is an accurate approximation of the fraction of the threshold amount that has been transacted so far. When the threshold is reached, with high probability the escrow agency possesses all the shares that it needs to reconstruct the key and open the escrows. Our main technical contribution is a novel tool of robust probabilistic information transfer, which we implement using techniques of optimistic fair 2-party computation.
机译:我们提出了一种保护金融交易隐私的托管方案。该计划的目的是保护从事金融交易的个人用户的隐私和匿名,直到某个类别中所有交易的累计金额,例如任何一个月中与特定交易对手的所有交易的累计金额达到预先指定的阈值。达到阈值后,托管机构将自动获得解密该类别(且仅该类别)中所有交易的托管的能力。我们的方案采用了Jarecki和Odlyzko [JO97]的概率轮询思想,并通过一种新颖的鲁棒性机制进行了修订,该机制使该方案对于恶意方而言很安全。当提交交易托管时,用户与交易金额成正比的概率显示了一部分密钥,在该密钥下,所有交易均被加密。因此,代管机构已知的股份比例是到目前为止已交易的阈值量的比例的精确近似值。当达到阈值时,托管机构很有可能拥有重建密钥和打开托管所需的所有份额。我们的主要技术贡献是一种可靠的概率信息传输的新颖工具,我们使用乐观的公平两方计算技术来实现。

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