A Response to the United Nations CITES Blockchain Challenge: Incremental and Integrative PoA-based Permit Exchange

Anselm Busse, Jacob Eberhardt, Sebastian Frost, Dong-Ha Kim, Thore Weilbier, Lukas Renner, Matthias Roth, S. Tai
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引用次数: 5

Abstract

The Convention on International Trade in Endangered Species of Wild Fauna and Flora (CITES) negotiated and administered by the United Nations Environment Programme (UNEP) regulates the international trade of endangered species and derived products through a permit-based system. Currently, the permit process is paper-based and hence highly prone to manipulations and errors. Being aware of blockchains’ potential, the CITES Secretariat defined a challenge to determine whether a blockchain-based system can address the aforementioned issues and serve as a secure, efficient, and affordable permit processing system. In this paper, we respond to the CITES Blockchain Challenge. First, we analyze the permit process and discuss how blockchain systems can improve that process in a way traditional systems cannot. Building on these results, we design a blockchain-based system that enables secure, manipulation-resistant permit validation, produces an immutable record of processed permits, and is in compliance with the CITES agreement. To evaluate this design, we developed a proof-of-concept implementation compatible with the paper-based permit process and deployed it to a Proof-of-Authority-based blockchain network. This allows incremental adoption and integration with the existing process, thereby increasing acceptance and addressing affordability. Finally, we describe how a blockchain-based system could disruptively improve the established permit process by enforcing quotas and tracking provenance.
对联合国CITES区块链挑战的回应:增量和综合基于poa的许可证交换
由联合国环境规划署(环境署)谈判和管理的《濒危野生动植物种国际贸易公约》(CITES)通过基于许可证的制度规范了濒危物种及其衍生产品的国际贸易。目前,许可证程序是纸质的,因此很容易被操纵和出错。意识到区块链的潜力,CITES秘书处定义了一个挑战,以确定基于区块链的系统是否可以解决上述问题,并作为一个安全、高效和负担得起的许可证处理系统。在本文中,我们回应了CITES区块链挑战。首先,我们分析了许可流程,并讨论了区块链系统如何以传统系统无法做到的方式改进该流程。在这些结果的基础上,我们设计了一个基于区块链的系统,该系统可实现安全、抗操纵的许可证验证,生成已处理许可证的不可变记录,并符合CITES协议。为了评估这一设计,我们开发了一个与基于纸张的许可流程兼容的概念验证实现,并将其部署到基于权威证明的区块链网络中。这允许增量采用和与现有流程的集成,从而提高接受度和处理可负担性。最后,我们描述了基于区块链的系统如何通过执行配额和跟踪来源来颠覆性地改善既定的许可流程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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