A novel control scheme for STATCOM using space vector modulation based hysteresis current controller

M. Marei, E. El-Saadany, M. Salama
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引用次数: 20

Abstract

At high power levels, low switching frequencies of solid-state devices results in diminished quality and distorted waveforms of both currents and voltages in FACTS applications. Normally, multiconverter schemes are used to deal with the above problem. This paper investigates a control system appropriate for STATCOM with reduced switching frequency. The proposed system comprises of a current regulated pulse width modulation CRPWM inverter using a novel space vector modulation SVM based hysteresis current controller HCC. The proposed methodology exploits the combined advantages of both HCC and SVM techniques. In attempt to reduce the number of switchings, a set of space vectors, including the zero vectors, is derived from two sets of hysteresis comparators. One comparator set has a larger hysteresis band resulting in considerable reduction in the number of switchings and thus improvements in the efficiency of the system. Simulation results obtained from PSCAD/EMTDC packages are used to illustrate the merits of the proposed scheme.
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提出了一种基于空间矢量调制的磁滞电流控制器的STATCOM控制方案
在高功率水平下,固态器件的低开关频率会导致FACTS应用中电流和电压的质量下降和波形畸变。通常采用多变换器方案来解决上述问题。本文研究了一种适合于STATCOM的降低开关频率的控制系统。该系统包括一个电流调节脉宽调制CRPWM逆变器,该逆变器采用一种新型的基于空间矢量调制SVM的迟滞电流控制器HCC。提出的方法利用HCC和SVM技术的综合优势。为了减少开关的次数,从两组迟滞比较器推导出一组空间矢量,包括零矢量。一个比较器集具有更大的滞后带,从而大大减少了开关的数量,从而提高了系统的效率。利用PSCAD/EMTDC包的仿真结果说明了该方案的优点。
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