在中心脉冲ZAD逆变器中跟踪信号

D. Biel, R. Cardoner, E. Fossas
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引用次数: 5

摘要

研究了中心脉冲零平均动力学(ZAD)在跟踪信号中的应用。基于开关表面在稳定状态下进行滑动模态跟踪的特性,设计了一种中心脉冲ZAD算法来产生定频脉宽调制(PWM)。利用PSIM软件对功率逆变器进行了仿真,仿真过程中考虑了实际影响(如电阻损耗、开关死区时间、量化和采样等)。此外,控制算法已经用C代码编程,可以使用,稍加修改,编程一个数字控制器(微处理器,DSP等)。仿真结果表明,三角波形和正弦波的生成均满足设计要求。即对电阻性负载、非线性负载、时变负载和开路运行等不同负载具有零误差跟踪和鲁棒性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tracking signal in a centered pulse ZAD power inverter
This paper is devoted to the application of the centered pulse zero average dynamics (ZAD) to tracking signals. Based on the use of a switching surface, which performs sliding mode with desired tracking in steady state, a centered pulse ZAD algorithm is designed to yield fixed-frequency pulse width modulation (PWM). A power inverter has been simulated by means of PSIM software, which allows including realistic (i.e. resistive losses, dead time of switches, quantification and sampling and so on) effects in the simulation process. Additionally, the control algorithm has been programmed in C code, which could be used, with slight modifications, to programme a digital controller (microprocessor, DSP, etc.). The simulation results from generating triangular and sinusoidal waveforms show the fulfilment of the specifications. Namely, zero error tracking and robustness with respect to different loads: resistive load, nonlinear load, time-variable load and open circuit operation
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