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PWM with Selective Harmonic Elimination Using Optimization Inspired on Earthquakes for AC Electric Drives

机译:PWM采用选择性谐波消除使用优化激发AC电动驱动器的地震

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Manufacturing products mainly depends on AC electric drives, so it is extremely important to improve the performance of those. Moreover, power electronics systems have increased their performance using better semiconductors. However, additional electric drives’ limitations can be tackled if the pulse-width modulation (PWM) is also improved by digital algorithms. This paper shows a PWM technique with selective harmonic elimination (SHE) to reduce odd harmonic in voltage source inverters (VSI) for induction motors. The presented optimization earthquake algorithm (EA) adopts the principle of the propagation of seismic waves P and S through an earth material composed of random densities to ensure the dynamic balance between exploration and exploitation and to ultimately reach the best solution in optimizing complex problems by searching for the optimum in the search space. The EA is used to find the optimum switching angles in order to reduce the harmonics that can damage the devices connected to the inverter. Experimental results validate the feasibility of the proposed PWM method in non-linear functions and engineering applications. Besides, the EA was capable of reducing the odd harmonics to control the velocity of a three-phase induction motor (IM) in the open loop through the VSI.
机译:制造产品主要取决于交流电动驱动器,因此提高人性的性能非常重要。此外,电力电子系统使用更好的半导体提高了它们的性能。然而,如果脉冲宽度调制(PWM)通过数字算法改善,则可以解决额外的电驱动器的限制。本文显示了一种具有选择性谐波消除(SHE)的PWM技术,以减少电压源逆变器(VSI)的奇谐波,用于感应电动机。所提出的优化地震算法(EA)采用地震波P和S通过由随机密度组成的地球材料传播的原理,以确保勘探和剥削之间的动态平衡,并最终通过搜索优化复杂问题的最佳解决方案在搜索空间中最佳。 EA用于找到最佳的开关角度,以便减少可能损坏连接到逆变器的设备的谐波。实验结果验证了所提出的PWM方法在非线性功能和工程应用中的可行性。此外,EA能够减少奇谐波以控制通过VSI的开环中的三相感应电动机(IM)的速度。

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