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Optimal PWM based on real-time solution of harmonic elimination equations

机译:基于谐波消除方程实时解的最优PWM

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摘要

Pulse-width modulation of DC/AC power converters (PWM) based on the elimination of low-order harmonics necessitates solving systems of nonlinear equations. Conventional implementations of this technique based on storing off-line calculated solutions have the common problem that the system flexibility is very limited, especially for applications that require both amplitude and frequency control. A new implementation scheme based on real-time solution of nonlinear harmonic elimination equations using a digital signal processor DSP56001 is reported in this paper. With this digital signal processor (DSP), optimal pulse patterns having 15 switching angles in each quarter fundamental period can be determined within 2.15 ms. Details of the system hardware and software are described. New theoretical results concerning the solvability of harmonic elimination equations are also presented.
机译:基于消除低阶谐波的DC / AC电源转换器(PWM)的脉冲宽度调制,需要求解非线性方程组。基于存储脱机计算出的解的此技术的传统实现方式存在一个普遍问题,即系统灵活性非常有限,特别是对于同时需要幅度和频率控制的应用。本文提出了一种新的基于数字信号处理器DSP56001的非线性谐波消除方程实时求解的实现方案。使用该数字信号处理器(DSP),可以在2.15毫秒内确定在每个四分之一基本周期内具有15个开关角度的最佳脉冲模式。描述了系统硬件和软件的详细信息。还提出了有关谐波消除方程可解性的新理论结果。

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