Control of bidirectional DC/DC converter for back to back NPC-based wind turbine system under grid faults

Md Shafquat Ullah Khan, A. I. Maswood, H. D. Tafti, Muhammad M. Roomi, M. Tariq
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引用次数: 19

Abstract

Viability and reliability of the wind power has made Wind Turbine Systems (WTSs) a popular renewable energy resource. A bidirectional DC/DC converter is proposed in this study for the WTS. The proposed DC/DC converter controls the DC-link voltage by injecting the difference between the extracted power from permanent magnet synchronous generator (PMSG) and the output power of the grid-tied inverter, to the energy storage system. The proposed DC/DC converter controller compensates the shortage of extracted active power from PMSG under wind reduced speed condition in order to inject the constant power to the grid during normal operation. The back to back (BTB) neutral point clamped (NPC) converter is proposed to extract the maximum power from PMSG and inject the extracted power to the grid. The proposed WTS structure achieves fault ride through capability and it can inject reactive power to the grid in order to enhance the PCC voltages under voltage sags. The proportional resonant (PR) current controller is implemented for both rectifier and grid-tied inverter due to its fast response and low steady state error. The adaptive space vector modulation (ASVM) is used to generate the switching signal while balances the DC-link capacitor voltages. The performance of the proposed controller is investigates under grid faults as well as reduced wind speed condition and results have proven the applicability of the proposed controller.
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电网故障下基于背靠背npc的风力发电系统双向DC/DC变换器控制
风力发电的可行性和可靠性使风力发电系统成为一种受欢迎的可再生能源。本文提出了一种用于WTS的双向DC/DC变换器。所提出的DC/DC变换器通过将从永磁同步发电机(PMSG)提取的功率与并网逆变器输出功率之间的差注入储能系统来控制直流链路电压。所提出的DC/DC变换器控制器补偿了风力减速条件下从PMSG中提取的有功功率的不足,以便在正常运行时向电网注入恒功率。提出了背靠背(BTB)中性点箝位(NPC)变换器,从PMSG中提取最大功率并将提取的功率注入电网。所提出的WTS结构实现了故障穿越能力,并可以向电网注入无功功率,以提高电压跌落下的PCC电压。比例谐振(PR)电流控制器具有响应快、稳态误差小的特点,适用于整流器和并网逆变器。在平衡直流链路电容电压的同时,采用自适应空间矢量调制(ASVM)产生开关信号。研究了该控制器在电网故障和风速降低情况下的性能,结果证明了该控制器的适用性。
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