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Control and PWM modulation scheme for dead-time compensation of CVCF inverters

机译:用于CVCF逆变器死区补偿的控制和pWm调制方案

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摘要

The switching dead-time necessary in PWM inverters results in output distortions, and deteriorates the utilization of dc-link voltage. To solve these problems, the authors have developed an accurate dead-time effect mathematical model, and proposed a compensation scheme for grid-connected inverters. In this paper, a new voltage control and PWM modulation scheme is presented for the dead-time compensation of CVCF inverters. It consists of a PID voltage controller and a sliding mode controller (SMC). The PID controller operates in the linear areas; the SMC controller detects the dead-time nonlinear operations and operates for the dead-time compensation . In this control scheme, the PWM modulation gate drive is divided into three operation modes according to the SMC controller output. The unnecessary gate drive signals are removed and the counter side switch can be controlled up to truly 100% PWM duty ratio with a smooth transition between different modulation modes. The influence of switching dead-time can be eliminated almost completely. The proposed control scheme is verified by simulation results. The improvement of harmonic distortion, the minimization of delink voltage and the reduction of inductor ripple current are all confirmed by the simulation results. The comparison results between the conventional and the proposed control scheme are presented in this paper.
机译:PWM逆变器所需的开关停滞时间会导致输出失真,并降低直流母线电压的利用率。为了解决这些问题,作者开发了精确的停滞时间效应数学模型,并提出了并网逆变器的补偿方案。本文提出了一种新的电压控制和PWM调制方案,用于CVCF逆变器的空载时间补偿。它由PID电压控制器和滑模控制器(SMC)组成。 PID控制器在线性区域内运行; SMC控制器检测死区非线性操作并进行死区补偿。在此控制方案中,PWM调制门驱动器根据SMC控制器的输出分为三种工作模式。消除了不必要的栅极驱动信号,并且可以在不同调制模式之间实现平稳过渡的情况下,将对端开关控制到真正的100%PWM占空比。切换停滞时间的影响几乎可以完全消除。仿真结果验证了所提出的控制方案。仿真结果证实了谐波畸变的改善,降压电压的最小化和电感器纹波电流的减小。给出了常规控制方案与拟议控制方案的比较结果。

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