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ANFIS Based Frequency Control in an Autonomous Microgrid Integrated with PV and Battery Storage

机译:集成光伏和电池储能的自主微电网中基于ANFIS的频率控制

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Perpetual drift towards distributed generation has encouraged the concept of microgrids on a wide scale. Over the years, microgrids integrated with renewable energies, power electronics devices, energy storage elements and static or dynamic loads are gaining attention worldwide. However, the control and operation of renewable based microgrids is challenging, owing to their dependence on weather conditions. Further, controlling frequency of microgrids within acceptable range, especially if islanded is a complex process. This paper presents an adaptive neuro-fuzzy inference system based frequency regulation in an autonomous microgrid. The ANFIS controller aims at performing coordinative charging/discharging of storage battery for real power balance in the system. The system has been tested under several scenarios including changing weather conditions and consumer power consumption usage. The system is designed and tested in MATLAB/Simulation environment. The obtained results verify efficiency of the proposed controller.
机译:永久性地向分布式发电的发展鼓励了大规模的微电网概念。多年来,与可再生能源,电力电子设备,储能元件以及静态或动态负载集成在一起的微电网正逐渐受到全世界的关注。然而,基于可再生能源的微电网的控制和操作由于其对天气条件的依赖而具有挑战性。此外,将微电网的频率控制在可接受的范围内,尤其是在孤岛的情况下,这是一个复杂的过程。本文提出了一种在自主微电网中基于频率调节的自适应神经模糊推理系统。 ANFIS控制器旨在对蓄电池进行协调的充电/放电,以实现系统中的实际功率平衡。该系统已在多种情况下进行了测试,包括不断变化的天气条件和用户用电情况。该系统是在MATLAB /仿真环境中设计和测试的。获得的结果验证了所提出控制器的效率。

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