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A fixed-frequency quasi-sliding control algorithm: application to power inverters design by means of FPGA implementation

机译:固定频率准滑动控制算法:通过FPGA实现在功率逆变器设计中的应用

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摘要

In this paper, a fixed-frequency quasi-sliding control algorithm based on switching surface zero averaged dynamics (ZAD) is reported. This algorithm is applied to the design of a buck-based inverter, and implemented in a laboratory prototype by means of a field programmable gate array (FPGA), taking into account processing speed versus computational complexity trade-off. Three control laws, namely sliding control (SC), fixed-frequency quasi-sliding ZAD and PWM-based control have been experimentally tested to highlight the features of the proposed algorithm. According to the experimental results presented in the paper, the ZAD algorithm fulfills the requirement of fixed switching frequency and exhibits similar robustness properties in the presence of perturbations to those of sliding control mode.
机译:本文提出了一种基于开关表面零平均动力学(ZAD)的固定频率准滑动控制算法。该算法应用于基于降压的逆变器的设计,并在实验室原型中通过现场可编程门阵列(FPGA)实现,同时考虑了处理速度与计算复杂度之间的权衡。通过实验测试了三种控制律,分别是滑动控制(SC),固定频率准滑动ZAD和基于PWM的控制,以突出该算法的特点。根据本文提出的实验结果,ZAD算法满足了固定开关频率的要求,并且在存在与滑动控制模式相同的扰动的情况下具有相似的鲁棒性。

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