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Selective harmonics elimination in multilevel inverter by a derivative-free iterative method under varying voltage condition

机译:不同电压条件下的衍生迭代方法在多级逆变器中选择性谐波消除

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Selective Harmonics Elimination Pulse width modulation (SHE PWM) presents an alternative modulation technique to operate medium voltage medium and high power converters as it reduces the switching losses. SHE PWM generates high-quality output waveform at the low switching frequency. Its application to multilevel converters furthers leads to improvement in output waveforms with lower switching losses, lesser dv/dt and lowers switching devices ratings. In this Paper SHE PWM for an asymmetrical cascaded H-bridge multilevel inverter under unequal DC voltage condition for fundamental and multiple switching cases are investigated. More harmonics can be eliminated by considering multiple switching's. The Solution of the Nonlinear transcendental SHE equation is obtained using an advanced derivative free numerical technique which. The method is simple in implementation with fast calculations per iteration as it avoids the evaluation of Jacobian and its matrix. Also the need for precise initial guess in the proximity of actual solution is not needed as an identity matrix of the size of designed variable serves the purpose. Different inequality in the dc voltages is taken to eliminate the lower order harmonics from the output. Only exact solutions for the switching angles which ensure the complete elimination of targeted harmonics are reported. Simulation and Hardware results are presented to confirm the validity of the proposed technique. (C) 2019 ISA. Published by Elsevier Ltd. All rights reserved.
机译:选择性谐波消除脉冲宽度调制(SHE PWM)呈现了操作中电压介质和高功率转换器的替代调制技术,因为它降低了开关损耗。她PWM以低开关频率产生高质量的输出波形。其在多级转换器传感器的应用导致具有较低开关损耗的输出波形,较小的DV / DT和降低开关器件额定值。在本文中,研究了在不平等的直流电压条件下,对非对称级联H桥多级逆变器进行了针对基本和多种切换箱的普通电压逆变器。通过考虑多个切换,可以消除更多谐波。非线性异位的SHE方程的解决方案使用先进的衍生自由数学技术获得。该方法在实现中简单,并且每次迭代的快速计算,因为它避免了雅各比和矩阵的评估。作为精确初始猜测的需求,不需要在实际解决方案附近,因为设计变量大小的身份矩阵是为目的服务的。 DC电压中的不同不等式是从输出中消除较低的谐波。仅报道了确保完全消除目标谐波的切换角的精确解决方案。提出了仿真和硬件结果以确认所提出的技术的有效性。 (c)2019 ISA。 elsevier有限公司出版。保留所有权利。

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