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Predictive direct flux control - a new control method of voltage source inverters in distributed generation applications

机译:预测直接磁通控制-分布式发电应用中电压源逆变器的新控制方法

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摘要

Voltage source inverters (VSIs) have been widely utilized in electric drives and distributed generations (DGs), where electromagnetic torque, currents and voltages are usually the control objectives. The inverter flux, defined as the integral of the inverter voltage, however, is seldom studied. Although a conventional flux control approach has been developed, it presents major drawbacks of large flux ripples, leading to distorted inverter output currents and large power ripples. This paper proposes a new control strategy of VSIs by controlling the inverter flux. To improve the system's steady-state and transient performance, a predictive control scheme is adopted. The flux amplitude and flux angle can be well regulated by choosing the optimum inverter control action according to formulated selection criteria. Hence, the inverter flux can be controlled to have a specified magnitude and a specified position relative to the grid flux with less ripples. This results in a satisfactory line current performance with a fast transient response. The proposed predictive direct flux control (PDFC) method is tested in a 3 MW high-power grid-connected VSI system in the MATLAB/Simulink environment, and the results demonstrate its effectiveness.
机译:电压源逆变器(VSI)已广泛用于电力驱动和分布式发电(DG)中,其中电磁转矩,电流和电压通常是控制目标。但是,很少研究定义为逆变器电压积分的逆变器磁通。尽管已经开发了一种常规的磁通控制方法,但是它存在着较大的磁通纹波的主要缺点,导致逆变器输出电流失真和大功率纹波。通过控制逆变器磁通,提出了一种新型的VSI控制策略。为了改善系统的稳态和瞬态性能,采用了预测控制方案。通过根据制定的选择标准选择最佳的逆变器控制动作,可以很好地调节磁通幅度和磁通角。因此,可以将逆变器磁通控制为相对于电网磁通具有较小波纹的特定幅度和特定位置。这会产生令人满意的线电流性能,并具有快速的瞬态响应。在MATLAB / Simulink环境中的3 MW大功率并网VSI系统中对所提出的预测直接通量控制(PDFC)方法进行了测试,结果证明了其有效性。

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  • 作者

    Hu, JF;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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