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Nonlinear Decentralized Feedback Linearizing Controller Design for Islanded DC Microgrids

机译:孤岛直流微电网的非线性分散反馈线性化控制器设计

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摘要

This paper aims to design decentralized controllers for different components in islanded DC microgrids. The major components in the DC microgrid as considered in this paper include a fuel cell, solar photovoltaic (PV) unit, and battery energy storage system (BESS) along with critical and non-critical loads. The main control objective is to maintain the power balance within the DC micro-grid through the regulation of the common DC-bus voltage. The controllers are designed based on the dynamical models of the fuel cell, solar PV unit, and BESS. The feedback linearization technique is employed to obtain the control laws, which simplifies the original dynamical models and decouples different components in the form of several subsystems. In this way, the feedback linearization technique allows different components in DC microgrids to achieve the desired control objectives by using only the local information (i.e., in a decentralized manner). The performance of the proposed decentralized controllers for different components is evaluated on a test DC microgrid under different operating conditions. Simulation results demonstrate that the proposed control scheme performs in a much better way as compared to an existing proportional integral controller.
机译:本文旨在为岛式直流微电网中的不同组件设计分散式控制器。本文考虑的直流微电网的主要组件包括燃料电池,太阳能光伏(PV)单元和电池储能系统(BESS)以及关键和非关键负载。主要控制目标是通过调节公共DC总线电压来维持DC微电网内的功率平衡。控制器是根据燃料电池,太阳能光伏装置和BESS的动力学模型设计的。反馈线性化技术用于获得控制律,从而简化了原始动力学模型,并以多个子系统的形式将不同的组件解耦。以此方式,反馈线性化技术允许DC微电网中的不同组件仅通过使用局部信息(即,以分散的方式)来实现期望的控制目标。建议的分散控制器针对不同组件的性能在不同操作条件下的测试直流微电网上进行评估。仿真结果表明,与现有比例积分控制器相比,所提出的控制方案具有更好的性能。

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