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Use of Stored Energy in PMSG Rotor Inertia for Low-Voltage Ride-Through in Back-to-Back NPC Converter-Based Wind Power Systems

机译:背靠背基于NPC转换器的风力发电系统中PMSG转子惯性中的储能用于低压穿越

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摘要

The increasing installed wind power capacity has caused wind power generation to become a significant percentage of the entire electric power generation. As a consequence, the power system operators have included wind power plants regulation to improve the control of the overall power system, both in steady-state and transient operation. Therefore, wind power systems are required to verify the grid connection requirements stated by the power system operators. In presence of grid voltage dips, the low voltage ride-through (LVRT) requirement compliance produces a mismatch between the generated active power and the active power delivered to the grid. The conventional solution assumes that the active power surplus is dissipated in a dc-link resistor. In this paper, a control scheme for the back-to-back neutral-point-clamped converter is proposed. Under grid voltage dip, the controllers for generator-side and grid-side converters work concurrently to meet the LVRT requirement by storing the active power surplus in the turbine-generator mechanical system inertia while keeping constant the dc-link voltage. Simulation and experimental results verify the proposed control scheme.
机译:不断增加的风力发电装机容量已使风力发电占整个发电量的很大一部分。因此,电力系统运营商已纳入了风力发电厂法规,以改善稳态和暂态运行中整个电力系统的控制。因此,需要风力发电系统来验证电力系统运营商规定的并网连接要求。在存在电网电压骤降的情况下,低电压穿越(LVRT)要求合规会在生成的有功功率和输送到电网的有功功率之间产生失配。传统解决方案假定有功功率剩余在直流链路电阻器中消散。本文提出了一种背靠背中性点钳位转换器的控制方案。在电网电压骤降的情况下,发电机侧和电网侧变流器的控制器通过将有功功率剩余存储在涡轮发电机机械系统惯性中,同时保持恒定的直流母线电压,来同时工作以满足LVRT要求。仿真和实验结果验证了所提出的控制方案。

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