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Load voltage control and maximum power extraction of a stand-alone wind-driven PMSG including unbalanced operating conditions

机译:负载电压控制和独立风力驱动PMSG的最大功率提取,包括不平衡的操作条件

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This paper presents a control strategy to enhance the performance characteristics of a stand-alone wind-driven Permanent Magnet Synchronous Generator (PMSG) under different operating conditions. The presented control strategy aims at regulating the load voltage, in terms of magnitude and frequency and extracting the maximum wind-power under both constant wind-speed and variable wind-speed including both balanced and unbalanced loading conditions. The wind generating-system under study consists of a wind turbine, PMSG, switch-mode rectifier (three-phase uncontrolled rectifier followed by DC-DC boost converter), bidirectional DC-DC buck-boost converter, battery bank, three-phase SPWM inverter, LC filter, three-phase isolating transformer and three-phase load. The employed control strategy is firstly based up controlling the duty cycle of the DC-DC boost converter, included in the switch mode rectifier, in order to extract maximum wind-power. Then, the operating mode (charging or discharging of the battery bank) of the bidirectional DC-DC buck-boost converter is controlled to attain an appropriate constant dc-voltage under different operating conditions. Finally, a sinusoidal pulse width modulated (SPWM) inverter is used to regulate the magnitude and frequency of the load voltage via controlling the modulation index. A sample of simulation results is obtained and analyzed in order to check the capability of the presented control strategy of the employed wind generating-system. The presented simulation results verify the effectiveness of the presented control strategy to supply the load at constant voltage and frequency with maximum wind-power extraction under different operating conditions.
机译:本文介绍了在不同操作条件下提高独立风力永磁同步发电机(PMSG)的性能特性的控制策略。所提出的控制策略旨在根据幅度和频率调节负载电压,并在恒定风速和可变风速下提取最大风力,包括平衡和不平衡的负载条件。正在研究的风力发电系统由风力涡​​轮机,PMSG,开关模式整流器(三相不受控制整流器,后跟DC-DC升压转换器),双向DC-DC降压 - 升压转换器,电池组,三相SPWM逆变器,LC滤波器,三相隔离变压器和三相负荷。所采用的控制策略首先基于控制在开关模式整流器中的DC-DC升压转换器的占空比,以便提取最大风力。然后,控制双向DC-DC降压转换器的操作模式(电池组的充电或放电)以在不同的操作条件下获得适当的恒定DC电压。最后,使用正弦脉冲宽度调制(SPWM)逆变器来调节通过控制调制指数来调节负载电压的幅度和频率。获得并分析模拟结果的样品,以检查所采用的风力发电系统的所呈现的控制策略的能力。所提出的仿真结果验证了所提出的控制策略的有效性,以在不同的操作条件下为恒定电压和频率提供恒定电压和频率的频率。

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