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Reducing Harmonic Distortion in a 5-Level Cascaded H-bridge Inverter Fed by a 12-Pulse Thyristor Rectifier

机译:减少由12脉冲晶闸管整流器供给的5级级联H桥式逆变器中的谐波失真

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This paper investigates a multilevel inverter with a capability that produces a wide voltage range with high quality. The selective harmonic elimination (SHE) method is considered for a single-phase 5-level cascaded H-bridge (CHB) inverter, in which the particle swarm optimization (PSO) algorithm solves the nonlinear equations. However, eliminating the low-order harmonics has been challenging when a low range of output voltage is required. To surmount such challenges and access to a wide range of output voltage, an adjustable dc-link is introduced that allows the inverter to increase the modulation index, resulting in a significant decrease in total harmonic distortion (THD). In this paper, to regulate the dc-link voltage amount, a 12-pulse rectifier is employed to allow the inverter to produce the output voltage requirements with less distortion. To prove such claims, the PSO algorithm is modified to calculate the optimal angles, as a result, the switching angles are applied in SIMULINK MATLAB to generate a 5-level output voltage.
机译:本文调整了多级逆变器,具有高质量的宽电压范围的能力。考虑选择性谐波消除(SHE)方法用于单相5级级联H桥(CHB)逆变器,其中粒子群优化(PSO)算法解决了非线性方程。但是,当需要低的输出电压时,消除低阶谐波一直在具有挑战性。为了超越这些挑战和访问广泛的输出电压,引入了可调节的直流链路,使逆变器增加调制指数,导致总谐波失真(THD)显着降低。在本文中,为了调节DC-Link电压量,采用12脉冲整流器来允许逆变器以较少的失真产生输出电压要求。为了证明这种权利要求,修改PSO算法以计算最佳角度,结果,在Simulink MATLAB中应用切换角以产生5级输出电压。

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