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首页> 外文期刊>Power Electronics, IEEE Transactions on >SHE–PWM Cascaded Multilevel Inverter With Adjustable DC Voltage Levels Control for STATCOM Applications
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SHE–PWM Cascaded Multilevel Inverter With Adjustable DC Voltage Levels Control for STATCOM Applications

机译:具有STATCOM应用的可调节DC电压电平控制的SHE–PWM级联多电平逆变器

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摘要

This paper presents a new multilevel selective harmonic elimination pulse-width modulation (MSHE–PWM) technique for transformerless static synchronous compensator (STATCOM) system employing cascaded H-bridge inverter (CHI) configuration. The proposed MSHE–PWM method optimizes both the dc-voltage levels and the switching angles, enabling more harmonics to be eliminated without affecting the structure of the inverter circuit. The method provides constant switching angles and linear pattern of dc-voltage levels over the modulation index range. This in turns eliminates the tedious steps required for manipulating the offline calculated switching angles and therefore, easing the implementation of the MSHE–PWM for dynamic systems. Although the method relies on the availability of the variable dc-voltage levels which can be obtained by various topologies, however, the rapid growth and development in the field of power semiconductor devices led to produce high-efficiency dc–dc converters with a relatively high-voltage capacity and for simplicity, a buck dc–dc converter is considered in this paper. Current and voltage closed loop controllers are implemented for both the STATCOM and the buck converter to meet the reactive power demand at different loading conditions. The technique is further compared with an equivalent conventional carrier-based pulse-width modulation to illustrate its enhanced characteristics. The effectiveness and the theoretical analysis of the proposed approach are verified through both simulation and experimental studies.
机译:本文针对采用级联H桥逆变器(CHI)配置的无变压器静态同步补偿器(STATCOM)系统,提出了一种新的多级选择性谐波消除脉冲宽度调制(MSHE-PWM)技术。提出的MSHE-PWM方法可以优化直流电压电平和开关角度,从而可以消除更多的谐波,而不会影响逆变器电路的结构。该方法在调制指数范围内提供恒定的开关角度和直流电压电平的线性模式。反过来,这消除了操纵离线计算的开关角度所需的繁琐步骤,因此简化了动态系统MSHE-PWM的实现。尽管该方法依赖于可通过各种拓扑获得的可变直流电压电平的可用性,但是,功率半导体器件领域的快速发展和发展导致生产出具有相对较高效率的高效直流-直流转换器-电压容量,为简单起见,本文考虑了降压dc-dc转换器。 STATCOM和降压转换器均采用电流和电压闭环控制器,以满足不同负载条件下的无功功率需求。将该技术与等效的传统基于载波的脉宽调制进行了比较,以说明其增强的特性。通过仿真和实验研究验证了该方法的有效性和理论分析。

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