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Design of a Three-Phase Bidirectional PWM Rectifier with Simple Control Algorithm

机译:具有简单控制算法的三相双向PWM整流器的设计

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The paper covers the main aspects of designing a low voltage three-phase PWM rectifier for bidirectional AC/DC power flow with unity power factor. A model in Matlab/Simulink environment has been built for a 10kW active rectifier with an LCL filter connected to grid side of the rectifier. The primary goal of the model is to achieve low grid current harmonic content for frequency ranges described in worldwide applicable standards and above. LCL filter parameter design procedure is described in the paper and implemented in the rectifier model to achieve a better power quality with limitations in passive element size. A simple “p-q” theory-based voltage oriented control algorithm is used in the model and described in the present paper. Model performance is characterised by dynamic response, stability and grid parameters during simulation. The simulation results demonstrate that the modelled rectifier system is stable and the grid current harmonic content is low both in the low-and high-frequency ranges.
机译:本文涵盖了为具有统一功率因数的双向AC / DC功率流设计低压三相PWM整流器的主要方面。已在Matlab / Simulink环境中为10kW有源整流器建立了模型,并在整流器的电网侧连接了一个LCL滤波器。该模型的主要目标是在全球适用标准及以上描述的频率范围内实现低电网电流谐波含量。本文描述了LCL滤波器参数设计程序,并在整流器模型中实现了LCL滤波器参数设计程序,以实现更好的电能质量,但无源元件尺寸受到限制。在模型中使用了简单的基于“ p-q”理论的电压定向控制算法,并在本文中进行了描述。在仿真过程中,模型性能的特征在于动态响应,稳定性和网格参数。仿真结果表明,所建模的整流器系统在低频和高频范围内都是稳定的,并且电网电流谐波含量较低。

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