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A novel simplex homotopic fixed-point algorithm for computation of optimal PWM patterns

机译:一种新颖的单纯形同位不动点算法,用于计算最佳PWM模式

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A novel simplex homotopic fixed-point algorithm to solve the optimal PWM problem is introduced in this paper. The goal of optimal PWM is to select the switching instants (angles) in such a way that a waveform with a particular characteristic is obtained and a certain criterion is minimized. The algorithms, which have been given so far in the literature to address this problem, use off-line precalculations and look-up tables. The proposed algorithm transforms the nonlinear equations to a polynomial set, uses the simplex homotopic fixed-point approach to find the initial values of the roots, and then uses cubic iteration to refine the roots. The salient features of the algorithm presented in this paper are: high accuracy, fast speed (low computational cost), and robustness even when facing ill-conditioned cases. With typical contemporary DSP, this algorithm can be used to set amplitudes of several tens of harmonics within one cycle of the AC power waveform. Since the switching angles are calculated independently from each other, the algorithm can be easily implemented for parallel processing. This would enable its use in demanding waveform processing applications.
机译:介绍了一种新颖的单纯形同构不动点算法,用于求解最优PWM问题。最佳PWM的目标是选择开关时刻(角度),以便获得具有特定特性的波形并最小化特定标准。迄今为止,文献中已经给出了用于解决该问题的算法,该算法使用离线预计算和查找表。所提出的算法将非线性方程式转换为多项式集,使用单纯形同构不动点方法找到根的初始值,然后使用三次迭代法对根进行细化。本文提出的算法的显着特点是:即使面对疾病情况,也具有很高的准确性,速度快(计算成本低)和鲁棒性。在典型的当代DSP中,该算法可用于在交流电源波形的一个周期内设置数十个谐波的幅度。由于开关角度是彼此独立计算的,因此该算法可轻松实现并行处理。这将使其能够用于苛刻的波形处理应用中。

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