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Neuro-Fuzzy Control of DFIG Wind Energy System with Distribution Network

机译:带配电网的双馈风能系统的神经模糊控制

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摘要

For highly efficient and powerful operation of modern grid connected wind energy generation system, reliable operation and smooth control strategy is sufficient. Control strategies incorporated in double fed induction generator (DFIG) based wind energy conversion system should capable for handling the uncertainties in wind speed and grid disturbances. This paper investigates a neuro-fuzzy based adaptive control strategy for controlling rotor side converter of DFIG based wind energy distribution system. Recently proposed extreme learning adaptive neuro-fuzzy inference system (ELANFIS) is utilized for efficient control. ELANFIS is a hybrid neuro-fuzzy system which combines reasoning capability of fuzzy logic systems and approximation capability of extreme learning machine (ELM). The membership function parameters of ELANFIS are calculated randomly and output parameters are found using Moore Penrose pseudo inverse method. The vector control with proposed ELANFIS control strategy on DFIG connected IEEE-34 bus system is tested under various contingencies and is able to handle the uncertainties in the wind speed and grid disturbance. The performance of the proposed in technique is verified thought real time digital simulator (RTDS) along with hardware in loop (HIL) configuration.
机译:为了使现代并网风能发电系统高效高效地运行,可靠的运行和平稳的控制策略已足够。基于双馈感应发电机(DFIG)的风能转换系统中包含的控制策略应能够处理风速和电网干扰的不确定性。本文研究了一种基于神经模糊的自适应控制策略,用于控制基于DFIG的风能分配系统的转子侧变流器。最近提出的极限学习自适应神经模糊推理系统(ELANFIS)用于有效控制。 ELANFIS是一种混合神经模糊系统,结合了模糊逻辑系统的推理能力和极限学习机(ELM)的近似能力。随机计算ELANFIS的隶属函数参数,并使用Moore Penrose伪逆方法找到输出参数。在各种偶发情况下,对在DFIG连接的IEEE-34总线系统上采用提出的ELANFIS控制策略的矢量控制进行了测试,并且能够处理风速和电网干扰中的不确定性。通过实时数字仿真器(RTDS)以及硬件环路(HIL)配置,验证了所提出技术的性能。

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