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Stability analysis of an autonomous microgrid operation based on Particle Swarm Optimization

机译:基于粒子群优化的自主微电网运行稳定性分析

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This paper presents the stability analysis for an inverter based Distributed Generation (DG) unit in an autonomous microgrid operation. The small-signal model of the controlled Voltage Source Inverter (VSI) system is developed in order to investigate the dynamic stability for the given operating point and under the proposed power controller. This model includes all the details of the proposed controller, while no switching actions are considered. System oscillatory modes and the sensitivity to the control parameters are the main performance indices which are considered, particularly when the microgrid is islanded or under the load change condition. In this work, the proposed power controller is composed of an inner current control loop and an outer power control loop, both based on a synchronous reference frame and conventional PI regulators. These controllers also utilize the Particle Swarm Optimization (PSO) for real-time self-tuning in order to improve the quality of the power supply. The complete small-signal model is linearized and used to define the system state matrix which is employed for eigenvalue analysis. The results prove that the stability analysis is fairly accurate and the controller offers reliable system's operation.
机译:本文介绍了在自主微电网运行中的基于逆变器的分布式发电(DG)单元的稳定性分析。开发了受控电压源逆变器(VSI)系统的小信号模型,以研究给定的操作点和所提出的电源控制器下的动态稳定性。该模型包括所提出的控制器的所有细节,而无需考虑切换操作。系统振荡模式和对控制参数的敏感性是所考虑的主要性能指标,特别是当微电网岛或负载变化条件下时。在这项工作中,所提出的功率控制器由内部电流控制回路和外部功率控制回路组成,基于同步参考帧和传统的PI调节器。这些控制器还利用粒子群优化(PSO)进行实时自调整,以提高电源的质量。完整的小信号模型是线性化的,并用于定义用于特征值分析的系统状态矩阵。结果证明,稳定性分析相当准确,控制器提供可靠的系统操作。

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