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Energy and Processing Demand Analysis of TLS Protocol in Internet of Things Applications

机译:物联网应用中TLS协议的能源和处理需求分析

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Transport Layer Security (TLS) is the de-facto protocol for secure communication in Internet of Things (IoT) applications. However, the processing and energy demands of this protocol are two essential parameters that must be taken into account with respect to the resource-constraint nature of IoT devices. In this paper, we study the resource consumption of the TLS handshake using a testbed in which an IoT board (Cypress CYW43907) communicates with a Raspberry Pi server over an 802.11 wireless link. Although TLS supports a wide-array of encryption algorithms, we focus on the performance of TLS using three of the most popular and robust cipher suites. Our experiments show that ciphers using Elliptic Curve Diffie Hellman (ECDHE) key exchange are considerably more efficient than ciphers using Diffie Hellman (DHE). Furthermore, ECDSA signature verification consumes more time and energy than RSA signature verification given ECDHE key exchange. The studies of this paper help IoT designers choose an appropriate TLS cipher suite based on application demands, computational capabilities, and available energy resources.
机译:传输层安全性(TLS)是事实上的协议,用于在物联网(IoT)应用程序中进行安全通信。但是,就物联网设备的资源约束性质而言,此协议的处理和能源需求是必须考虑的两个基本参数。在本文中,我们使用IoT板(Cypress CYW43907)通过802.11无线链路与Raspberry Pi服务器进行通信的测试床来研究TLS握手的资源消耗。尽管TLS支持各种各样的加密算法,但是我们使用三种最受欢迎​​和最强大的密码套件来专注于TLS的性能。我们的实验表明,使用椭圆曲线Diffie Hellman(ECDHE)密钥交换的密码比使用Diffie Hellman(DHE)的密码有效得多。此外,在进行ECDHE密钥交换的情况下,ECDSA签名验证比RSA签名验证消耗更多的时间和精力。本文的研究可帮助IoT设计师根据应用程序需求,计算能力和可用能源来选择合适的TLS密码套件。

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