带储能装置的固态变压器接驳电网的风力发电机特性研究

Qingshan Wang, D. Liang
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引用次数: 5

摘要

随着风电场装机容量的不断增加,风电对公共电网的影响日益明显,风电并网的研究越来越受到重视。提出了一种基于固态变压器(SST)的感应式风力发电机并网系统。分别建立了感应风力发电机、输入侧可控整流器、输出侧逆变器和中级高频变压器的集总参数数学模型。分析了系统在正反两种状态下的工作原理,设计了各模块的控制策略。基于上述拓扑和控制策略,建立了系统仿真模型。结果表明,新设计的系统具有良好的工作性能。并网电流为正弦电流,实现了单位功率因数控制。工作过程中输出电压和直流母线电压稳定。在电网故障引起电压骤降时,储能装置接在SST放电上维持低压直流母线电压,增强了系统的低电压穿越能力。
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Characteristics research of wind power generator interfaced to grid via solid state transformer with energy storage device
With the installed volume on wind farm increasing constantly, the impact of wind electricity on public grid has become increasingly evident, which superimposes more and more importance on the study on wind power integration to grid. A solid state transformer (SST) based induction wind power generator grid-connected system is put forward in this paper. The lumped parameter mathematical model of the induction wind power generator, input side controlled rectifier, output side inverter and middle stage high-frequency transformer are constituted respectively. System working principle at power flowing forward and backward status are analysed and the control strategy of each module is designed afterwards. A system simulation model is built based on topologies and control strategies discussed above. It is seen from the results that the newly designed system is of good working performance. The grid connecting current is sinusoidal and the unity power factor control is achieved. Output voltage and DC bus voltage are stable during the operating process. During voltage sag caused by grid faults, energy storage devices connected to the SST discharge to sustain the low-voltage DC bus voltage, enhancing the system low voltage ride through (LVRT) capability.
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