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Cyber-physical Power System Modeling for Timing-driven Control of Active Distribution Network

机译:网络 - 物理电力系统建模,用于主动分配网络时序驱动控制

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摘要

In a cyber-physical power system, active distribution network (ADN) facilitates the energy control through hierarchical and distributed control system (HDCS). Various researches have dedicated to develop the control strategies of primary devices of ADN. However, an ADN demonstration project shows that the information transmission of HDCS may cause time delay and response lag, and little model can describe both the ADN primary device and HDCS as a cyber-physical system (CPS). In this paper, a hybrid system based CPS model is proposed to describe ADN primary devices, control information flow, and HDCS. Using the CPS model, the energy process of primary devices and the information process of HDCS are optimized by model predictive control (MPC) methodology to seamlessly integrate the energy flow and the information flow. The case study demonstrates that the proposed CPS model can accurately reflect main features of HDCS, and the control technique can effectively achieve the operation targets on primary devices despite the fact that HDCS brings adverse effects to control process.
机译:在网络物理电力系统中,主动分配网络(ADN)通过分配控制系统(HDC)促进能量控制。各种研究致力于制定ADN主设备的控制策略。然而,ADN演示项目表明,HDC的信息传输可能导致时间延迟和响应滞后,并且很少的模型可以将ADN主设备和HDC描述为网络物理系统(CPS)。在本文中,提出了一种基于混合系统的CPS模型来描述ADN主设备,控制信息流和HDC。使用CPS模型,通过模型预测控制(MPC)方法优化主设备的能量过程和HDC的信息过程,以无缝地集成能量流和信息流。案例研究表明,所提出的CPS模型可以准确地反映HDC的主要特征,并且控制技术可以有效地实现主设备上的操作目标,尽管HDCs对控制过程带来不利影响。

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