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Power quality improvement of grid-connected wind energy conversion system for optimum utilization of variable speed wind turbines

机译:并网风能转换系统的电能质量改进,以优化变速风力涡轮机的利用率

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This paper presents an improved technique for the power quality of the electrical part of a wind generation system with a synchronous generator (SG). The main aim is to optimize the utilization of wind power injected into the grid. To realize this goal, an uncontrolled rectifier-digitally controlled inverter (URDCI) system is proposed. The advantage of the proposed system is its simplicity due to reduced number of controlled switches which leads to less control complexity. The inverter system provides economic utilization of the wind generator by insuring unity power factor operation under different possible conditions. It also provides full control of active and reactive power injected into the grid using a digitally controlled voltage source inverter (VSI). A voltage oriented control (VOC) scheme is presented in order to control the energy to be injected into the grid. In an attempt to minimize the harmonics in the inverter current and voltage and to avoid poor power quality of the wind energy conversion system (WECS), an LC filter is inserted between VOC VSI and the grid. Simulation results are carried out to validate the proposed solution. The proposed technique is implemented by a digital signal processor (DSP TMS320F240) to verify the good performance of the proposed control system and agree with the simulation results to a great extend. The results verify the validity of the proposed model and show its practical superiority in renewable energy applications.
机译:本文针对具有同步发电机(SG)的风力发电系统的电气部分的电能质量提出了一种改进的技术。主要目的是优化注入电网的风能的利用率。为了实现这个目标,提出了一种不受控制的整流器-数控逆变器(URDCI)系统。所提出的系统的优点是由于减少了受控开关的数量而简化了系统,从而减少了控制的复杂性。逆变器系统通过确保在不同可能条件下的统一功率因数操作来提供风力发电机的经济利用。它还使用数字控制电压源逆变器(VSI)完全控制注入电网的有功和无功功率。提出了面向电压的控制(VOC)方案,以便控制要注入电网的能量。为了尽量减少逆变器电流和电压中的谐波并避免风能转换系统(WECS)的不良电能质量,在VOC VSI和电网之间插入了一个LC滤波器。仿真结果进行了验证,以验证所提出的解决方案。所提出的技术由数字信号处理器(DSP TMS320F240)实施,以验证所提出的控制系统的良好性能,并在很大程度上与仿真结果保持一致。结果验证了该模型的有效性,并显示了其在可再生能源应用中的实际优势。

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