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首页> 外文期刊>Indian Journal of Science and Technology >Robust PI Controller for Frequency Stabilisation of Islanded Microgrid Operation using Battery Energy Storage System
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Robust PI Controller for Frequency Stabilisation of Islanded Microgrid Operation using Battery Energy Storage System

机译:坚固的PI控制器,用于使用电池储能系统稳定孤岛微电网的频率

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Background/Objectives: Maintaining constant frequency in an Islanded microgrid is highly demanding and challenging issue. Therefore it is proposed to use Robust PI Controller for controlling the frequency of islanded microgrid using Energy Storage system. Methods/Statistical Analysis: The proposed Robust PI controller provides the required frequency stability to the islanded microgrid. The test modeled in MATLAB Simulink environment. The Test system modeled as typical remote location (Island or Military Power Grid or Geographically Disconnected or Hilly Terrain) with a wind turbine and Solar panel, along with distributed loads and Energy storage system. Findings: The drawbacks of the traditional PI controller to adapt to the parametric variations and to provide faster response is overcome using proposed Robust PI controller. The inherent disadvantage of PID controller such as instability and peak overshoot is also overcome with the proposed controller. The Proposed Robust PI controller provides the improved dynamic frequency stability and reduced peak overshoot to the islanded microgrid with in 0.3seconds, if the microgrid is suddenly disconnected from the main grid. The controller also tested under various conditions and it provides required frequency stability to test system during islanding operation. The proposed method is simple, flexible and provides improved performance as compared to the existing methods and approaches for frequency stability of islanded microgrid. Application/Improvements: The proposed controller can be used in remote location and provides simple, yet cost effective solution as compared to costlier PID Controller based on fuzzy logic and neural network.
机译:背景/目标:在孤岛微电网中保持恒定的频率是一个非常苛刻且具有挑战性的问题。因此,建议使用鲁棒PI控制器通过储能系统控制孤岛微电网的频率。方法/统计分析:提出的鲁棒PI控制器为孤岛微电网提供所需的频率稳定性。该测试在MATLAB Simulink环境中建模。该测试系统建模为典型的远程位置(岛屿或军事电网或地理断开或丘陵地形),带有风力涡轮机和太阳能电池板,以及分布式负载和储能系统。发现:使用建议的鲁棒PI控制器克服了传统PI控制器适应参数变化并提供更快响应的缺点。 PID控制器固有的缺点,例如不稳定和峰值超调,也可以通过所提出的控制器克服。如果微电网突然与主电网断开连接,则建议的鲁棒PI控制器可在0.3秒内提供改进的动态频率稳定性并减少孤岛微电网的峰值过冲。该控制器还在各种条件下进行了测试,并在孤岛运行期间为测试系统提供了所需的频率稳定性。与用于孤岛微电网的频率稳定性的现有方法和方法相比,所提出的方法简单,灵活并且提供了改进的性能。应用/改进:与基于模糊逻辑和神经网络的昂贵PID控制器相比,所提出的控制器可在远程位置使用,并提供简单但具有成本效益的解决方案。

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