设计一种支持类似现金隐私的中央银行数字货币

Jonas Gross, Johannes Sedlmeir, Matthias Babel, Alexandra Bechtel, Benjamin Schellinger
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引用次数: 24

摘要

发达经济体的大多数央行都考虑发行央行数字货币(cbdc),以解决现金使用量下降的问题,并使自己能够应对来自大型科技公司、加密货币和稳定币的日益激烈的竞争。CBDC系统的一个关键设计维度是交易隐私程度。现有的解决方案要么容易出现安全问题,要么不提供完整的(类似现金的)隐私。此外,人们经常认为,一个完全私人的支付系统,特别是匿名交易,不符合反洗钱(AML)和打击恐怖主义融资(CFT)的规定。在本文中,我们遵循设计科学研究方法(DSR)来开发和评估一个基于软件的整体CBDC系统,该系统支持完全私有交易并解决监管限制。为此,我们采用零知识证明(ZKP)对完全私人支付施加限制。因此,我们能够在不向第三方披露任何交易细节的情况下解决监管限制。我们在与领先的经济、法律和技术专家的访谈中评估了我们的产品,并发现支持完全(类似现金)隐私的符合监管要求的CBDC系统是可行的。
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Designing a Central Bank Digital Currency with Support for Cash-Like Privacy
Most central banks in advanced economies consider issuing central bank digital currencies (CBDCs) to address the declining use of cash and to position themselves against increased competition from Big Tech companies, cryptocurrencies, and stablecoins. One crucial design dimension of a CBDC system is the degree of transaction privacy. Existing solutions are either prone to security concerns or do not provide full (cash-like) privacy. Moreover, it is often argued that a fully private payment system and, in particular, anonymous transactions cannot comply with anti-money laundering (AML) and countering the financing of terrorism (CFT) regulation. In this paper, we follow a design science research approach (DSR) to develop and evaluate a holistic software-based CBDC system that supports fully private transactions and addresses regulatory constraints. To this end, we employ zero-knowledge proofs (ZKP) to impose limits on fully private payments. Thereby, we are able to address regulatory constraints without disclosing any transaction details to third parties. We evaluate our artifact in interviews with leading economic, legal, and technical experts and find that a regulatorily compliant CBDC system that supports full (cash-like) privacy is feasible.
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