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Formal validation of supervisory energy management systems for microgrids

机译:微型电网监督能源管理系统的形式验证

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An energy management system of a microgrid (MG) has several basic objectives; e.g. to maximize the utilization of renewable energy resources (RES), to protect the internal components from overloading, and to ensure that the MG operates reliably under any operating conditions. Although many control techniques are available in the literature to monitor and control the energy flows among distributed RES in MGs, formal verification of those techniques was not proposed yet. The emphasis of this paper is to design and validate energy management system for a MG which consists of a solar photovoltaic (PV) array, a pair of battery energy storage systems (BESes), a diesel generator (DG) and a load (LD). The physics and dynamics of the MG are defined as energy flow invariants and the designed behaviours are abstracted, modelled and validated in this work. Therefore, we have considered an invariant based flow technique to manage the energy flow in an MG. The results are validated and verified with UPPAAL, a powerful industrial tool which is commonly used to verify the correctness of real-time systems like supervisory controllers, communication protocols and others.
机译:微电网(MG)的能源管理系统有几个基本目标。例如最大限度地利用可再生能源(RES),保护内部组件免于过载,并确保MG在任何运行条件下均可靠运行。尽管文献中提供了许多控制技术来监视和控制MG中分布式RES之间的能量流,但尚未提出对这些技术的正式验证。本文的重点是设计和验证MG​​的能源管理系统,该系统由太阳能光伏(PV)阵列,一对电池储能系统(BESes),柴油发电机(DG)和负载(LD)组成。 MG的物理和动力学定义为能量流不变性,并且在此工作中对设计的行为进行了抽象,建模和验证。因此,我们考虑了一种基于不变的流量技术来管理MG中的能量流。使用功能强大的工业工具UPPAAL可以验证和验证结果,该工具通常用于验证诸如监督控制器,通信协议等实时系统的正确性。

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