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Design of a software architecture supporting business-to-government information sharing to improve public safety and security: Combining business rules, Events and blockchain technology

机译:支持企业对政府信息共享以提高公共安全性的软件体系结构设计:结合业务规则,事件和区块链技术

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摘要

Toensurepublicsafetyandsecurity,itisvitallyimportantforgovernmentstocol- lect information from businesses and analyse it. Such information can be used to determine whether transported goods might be suspicious and therefore require physical inspection. Although businesses are obliged to report some information, they are reluctant to share addi- tional information for fear of sharing competitively sensitive information, becoming liable and not being compliant with the law. These reasons are often overlooked in the design of software architectures for information sharing. In the present research, we followed a design science approach to develop a software architecture for business-to-government information sharing. Based on literature and a case study, we elicited the requirements an architecture that provides for the sharing of information should meet to make it acceptable to businesses. We then developed the architecture and evaluated it against the requirements. The architec- ture consists of a blockchain that stores events and rules for information sharing that are controlled by businesses. For each event, two parties use their private keys to encrypt its Merkle root to confirm that they know the data are correct. This makes it easy to check whether information is reliable and whether an event should be accepted. Access control, metadata and context information enable the context-based sharing of information. This is combined with the encryption and decryption of data to provide access to certain data within an organisation.
机译:为了确保公共安全,政府收集和分析企业信息的重要性至关重要。此类信息可用于确定运输的货物是否可疑,因此需要进行物理检查。尽管企业有义务报告某些信息,但由于担心共享具有竞争性的敏感信息,承担责任并且不遵守法律,他们不愿意共享其他信息。这些原因通常在信息共享的软件体系结构设计中被忽略。在本研究中,我们遵循了一种设计科学方法,以开发用于企业对政府信息共享的软件体系结构。基于文献和案例研究,我们得出了一种要求,即提供信息共享的体系结构应满足的要求,以使其能够为企业所接受。然后,我们开发了体系结构,并根据需求对其进行了评估。该架构由一个区块链组成,该区块链存储事件和由企业控制的信息共享规则。对于每个事件,两个参与方使用其私钥加密其Merkle根,以确认他们知道数据正确。这使得检查信息是否可靠以及是否应接受事件变得容易。访问控制,元数据和上下文信息可实现基于上下文的信息共享。这与数据的加密和解密结合在一起,以提供对组织内某些数据的访问。

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