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An Efficient Privacy-Preserving Authentication Scheme for Energy Internet-Based Vehicle-to-Grid Communication

机译:一种基于能源互联网的车对网通信的高效保密保护认证方案

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The energy Internet (EI) represents a new electric grid infrastructure that uses computing and communication to transform legacy power grids into systems that support open innovation. EI provides bidirectional communication for analysis and improvement of energy usage between service providers and customers. To ensure a secure, reliable, and efficient operation, the EI should be protected from cyber attacks. Thus, secure and efficient key establishment is an important issue for this Internet-based smart grid environment. In this paper, we propose an efficient privacy-preserving authentication scheme for EI-based vehicle-to-grid communication using lightweight cryptographic primitives such as one-way non-collision hash functions. In our proposed scheme, a customer can securely access services provided by the service provider using a symmetric key established between them. Detailed security and performance analysis of our proposed scheme are presented to show that it is resilient against many security attacks, cost effective in computation and communication, and provides an efficient solution for the EI.
机译:能源互联网(EI)代表着一种新的电网基础设施,该基础设施使用计算和通信功能将旧式电网转换为支持开放式创新的系统。 EI提供双向通信,以分析和改善服务提供商与客户之间的能源使用。为了确保安全,可靠和高效的操作,应该保护EI免受网络攻击。因此,对于这种基于Internet的智能电网环境,安全有效的密钥建立是一个重要的问题。在本文中,我们提出了一种有效的隐私保护身份验证方案,该方案使用轻量级密码原语(例如单向非冲突哈希函数)进行基于EI的车对网通信。在我们提出的方案中,客户可以使用在服务提供商之间建立的对称密钥来安全地访问服务提供商提供的服务。提出的方案的详细安全性和性能分析表明,该方案可抵御多种安全攻击,在计算和通信方面具有成本效益,并为EI提供了有效的解决方案。

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