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An adaptive modulation scheme for fundamental frequency switched multilevel inverter with unbalanced and varying voltage sources

机译:具有不平衡和变化电压源的基频开关多电平逆变器的自适应调制方案

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Stepped modulation operates at fundamental frequency allows the use of low speed switching devices and mitigates the switching loss and EMI concerns suffered by many other hard-switched inverters adopting carrier-based pulse-width modulation (PWM) such as space vector PWM and sinusoidal PWM. Half-height (HH) method is one of the simplest ways to compute switching angles of stepped sinusoidal output. Similar approaches have been utilized in digital-analog signal conversion and synthesis. However, there is limited research on HH-based modulation for power inverters. In this paper, a computational modulation scheme based on HH method was studied. The proposed modulation scheme is capable for real-time computation with most present microprocessors. This paper will demonstrate the implementation of the proposed modulation scheme at balanced voltage and the techniques of adaption to varying and unbalanced sources. Capability of having minimum total harmonic distortion (THD) under equal voltage sources of HH method was verified. The performance of the proposed modulation scheme was examined using numeric calculation and simulation with a 7-level cascade H-bridge inverter and the results are presented.
机译:步进调制工作于基频,从而允许使用低速开关设备,并减轻了许多其他采用基于载波的脉宽调制(PWM)(例如空间矢量PWM和正弦波PWM)的硬开关逆变器所遭受的开关损耗和EMI问题。半高(HH)方法是计算步进正弦输出的开关角度的最简单方法之一。在数模信号转换和合成中已经使用了类似的方法。但是,关于基于HH的功率逆变器调制的研究很少。本文研究了一种基于HH方法的计算调制方案。所提出的调制方案能够使用大多数当前的微处理器进行实时计算。本文将演示在平衡电压下所提出的调制方案的实现以及适应变化和不平衡电源的技术。验证了在HH方法的相等电压源下具有最小总谐波失真(THD)的能力。利用数值计算和7级级联H桥逆变器的仿真对所提出的调制方案的性能进行了检验,并给出了结果。

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