微型水电厂的一种先进控制方案

M. Hanmandlu, H. Goyal, D. Kothari
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引用次数: 34

摘要

微型水力发电厂由于不存在大型水力发电厂所带来的人口迁移和环境问题,正在成为当今主要的可再生能源。然而,它们需要控制系统来限制预期在溪流中输入流量的巨大变化,这些系统是为了产生恒定的电力供应而建立的。本文提出了一种电动伺服电机作为微水电厂,特别是隔离运行的微水电厂的调速器。根据控制动作可分为线性部分和非线性部分的概念,结合四种控制方案开发了一种高级控制器。该控制器的线性部分包含自适应快速横向滤波(FTF)算法和归一化LMS (nLMS)算法。控制器的非线性部分采用模糊PI和神经网络。与其他控制方案相比,该控制器具有优越的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Advanced Control Scheme for Micro Hydro Power Plants
Micro hydropower plants are emerging as a major renewable energy resource today as they do not encounter the problems of population displacement and environmental problems associated with the large hydro power plants. However, they require control systems to limit the huge variation in input flows expected in rivulets over which these are established to produce a constant power supply. This paper proposes an electric servomotor as a governor for a micro hydro power plant especially those plants that are operated in isolated mode. An advanced controller is developed combining four control schemes for the control of the governor following the concept that the control action can be split up into linear and non linear parts. The linear part of this controller contains an adaptive fast transversal filter (FTF) algorithm and normalized LMS (nLMS) algorithm. The non-linear part of the controller incorporates fuzzy PI and a neural network. The new controller has a superior performance over other control schemes.
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