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A Formal Approach to Testing Logical Reliablity of Intelligent Device in Home Energy management System

机译:家用能源管理系统智能设备逻辑可靠性的正式方法

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摘要

Home energy management system (HEMS), which typically consists of a gateway, several smart plugs and other intelligent devices, plays an increasingly significant role in smart grid. Due to sophisticated functions and complex underlying software designing of the intelligent devices, it has become increasingly challenging to critically verify their reliability. This paper demonstrates that the formal methodology can be equally applied to software designs of those intelligent devices in HEMS. In this paper, timed automaton (TA) is adopted to describe the formal specifications of intelligent devices and UPPAAL, which is based on timed computation tree logic (TCTL), is applied as the model checker to execute formal verifications of the above formal specifications. Then, abnormal protections of smart plug such as overcurrent protection, overvoltage protection and under-voltage protection are taken as examples to show how UPPAAL can be implemented to present the formal specifications and formal verifications of the software designing of the intelligent devices in HEMS. This same technique is universal to a wide variety of software designs in smart grid, and the information it provides is invaluable as a necessary and useful supplement of simulation to software engineers during the development of new systems.
机译:家庭能源管理系统(HEMS)通常由网关,多个智能插头和其他智能设备组成,在智能电网中起着越来越大的作用。由于复杂的功能和复杂的智能设备的软件设计,它越来越具有挑战性,以批判性地验证其可靠性。本文表明,正式的方法可以同等地应用于下摆中智能设备的软件设计。在本文中,采用定时自动机(TA)来描述智能设备和UPPAAL的正式规范,基于定时计算树逻辑(TCTL),应用于模型检查器以执行上述正式规范的正式验证。然后,将智能插头的异常保护如过电流保护,过电压保护和欠压保护,以显示如何实现UPPAAL以呈现出智能设备软件设计的正式规格和正式验证。与智能电网的各种软件设计普遍具有相同的技术,以及在新系统开发期间对软件工程师的仿真补充,它提供的信息非常宝贵。

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