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首页> 外文期刊>International Journal of Power Electronics and Drive Systems >Harmonic minimization of a single-phase asymmetrical TCHB multilevel inverter based on nearest level control method
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Harmonic minimization of a single-phase asymmetrical TCHB multilevel inverter based on nearest level control method

机译:基于最近水平控制方法的单相缺乏TCHB多级逆变器的谐波最小化

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Multilevel inverters are gaining special interest among researchers and in the industry due to their widespread applications and numerous merits. Obtaining high quality, more reliable output while using a reduced number of electronic components is the main purpose of most of the research conducted in this area of study. The purpose of this study is to apply the nearest level control (NLC) method to a 13-level transistor-clamped H-bridge (TCHB) inverter with unequal DC voltage supplies. The NLC method operates at the fundamental frequency, thus reducing switching losses, and can reduce the harmonic content significantly. The adopted multilevel inverter consists of two TCHB cells supplied with two asymmetrical DC input sources with a voltage ratio of 1:2. This structure reduces the number of electronic components, and the asymmetry in the DC input voltages results in a higher number of levels. The adopted topology and its proposed control method were simulated in Matlab/Simulink, and the simulation results were verified through experiments using an Altera field-programmable gate array (FPGA) board. The results showed that the topology and its control method are efficient in obtaining a high-quality output with an improved total harmonic distortion (THD).
机译:由于广泛的应用和众多优点,多级逆变器在研究人员和行业中获得了特殊的兴趣。获得高质量,更可靠的输出,同时使用减少数量的电子元件是该研究领域大部分研究的主要目的。本研究的目的是利用不等的DC电压供应将最近的电平控制(NLC)方法应用于13级晶体管夹紧的H桥(TCHB)逆变器。 NLC方法以基频运行,从而降低开关损耗,并可以显着降低谐波含量。采用的多级逆变器由两个TCHB电池组成,其具有两个不对称直流输入源,电压比为1:2。该结构减少了电子元件的数量,并且DC输入电压中的不对称性导致较高的电平。在MATLAB / Simulink中模拟了采用的拓扑和其提出的控制方法,并通过使用Altera现场可编程门阵列(FPGA)板进行实验来验证仿真结果。结果表明,拓扑及其控制方法在获得高质量的输出中具有改善的总谐波失真(THD)。

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