This paper presents a payload security model to maintain the standards of TLS whilst removing obstacles associated with constrained devices and IoT network protocols. The domain of aquaponics as a smart-farming environment was used to test the novelty with ESP32 edge devices. The impact of privacy on message content illustrated the most appropriate security attribute configurations, followed by time and power analysis to calculate energy consumptions of each scenario. It was concluded that using this tailored payload security model rather than TLS was capable of extending the battery life of constrained devices by up to 81%, whilst maintaining TLS security standards, and applicable to various protocols.
翻译:本文介绍了一个有效载荷安全模型,用以维持TLS标准,同时消除与受限装置和IoT网络协议有关的障碍。作为智能农作环境的水生物质领域被用来测试ESP32边缘装置的新颖性。隐私对电文内容的影响说明了最适当的安全属性配置,随后是时间和动力分析,以计算每种情景的能源消耗量。得出的结论是,使用这种定制的有效载荷安全模型而不是TLS能够将受限装置的电池寿命延长高达81%,同时保持TLS安全标准,并适用于各种协议。