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Enhanced battery controller for inertia support in residential microgrid based on active disturbance rejection control

机译:基于主动干扰抑制控制的住宅微电网中增强电池控制器

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Lack of system inertia is becoming a big concern in modern power systems with a high penetration of inverter interfaced generation. In this paper, we argue that PV-battery systems owned by end-users can be used as a source of inertia to improve the frequency performance of future grids. To that end, we implement grid-forming control on battery converters in a residential microgrid powered by prosumer-owned PV-battery systems and a back-up generator. To improve performance, we propose a novel controller based on active disturbance rejection control (ADRC). This controller observes and rejects the "total disturbance" of the system, thereby increasing the response speed and enhancing the stability of the system. In addition, we incorporate an adaptive parameter tuning algorithm into the ADRC controller, which automatically calculates and updates the optimal control parameters in every sampling period. Simulation results are provided to verify the effectiveness and feasibility of the proposed approach.
机译:缺乏系统惯性在现代电力系统方面是一个很大的关切,具有高逆变器界面的渗透。在本文中,我们认为最终用户拥有的PV-电池系统可用作提高未来网格的频率性能的惯性源。为此,我们在由专业的PV-电池系统和备用发电机提供的住宅微电网中的电池转换器上实现了电池转换器的网格控制。为了提高性能,我们提出了一种基于主动扰动抑制控制(ADRC)的新型控制器。该控制器观察并拒绝系统的“总干扰”,从而提高了响应速度并增强了系统的稳定性。此外,我们将自适应参数调整算法纳入ADRC控制器,该算法在每个采样周期中自动计算和更新最佳控制参数。提供仿真结果以验证所提出的方法的有效性和可行性。

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