单级升压直流-交流逆变器的鲁棒控制器

Gowramma Dekka, S. Gudey
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引用次数: 3

摘要

Boost直流-交流逆变器的主要特点是升压输入直流电压,并在单级内将升压的直流电压转换为所需的交流电压,而不需要使用输出滤波器。负载可以是自我调节的,也可以是基于太阳能的家用设备。由于两级变换器中的级数较多,因此转换效率较低。本工作旨在模拟升压DC-AC逆变器在单级同时馈送线性和非线性负载。这里两个升压转换器在负载上进行差分连接,以便获得纯正弦波形作为输出。它只需要4个交换机。而且成本低,体积小。本文介绍了两种控制器。一种是双环控制器,另一种是基于PWM的滑模控制器。两个控制器都以10khz的开关频率操作。在不同负载(单相负载1.5kW,滞后0.8pf)下得到220V, 50Hz的纯正弦波形,稳态误差小,THD '低,收敛性好。即使在连接非线性负载时,两个控制器也能以鲁棒方式工作。结果表明,基于PWM的SMC跟踪电压更准确,稳态误差更小,稳定时间更短。通过相像法观察SMC的抖振。仿真结果采用电力系统计算机辅助设计工具PSCAD/EMTDC 4.6进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust Controllers for a Single-Stage Boost DC-AC Inverter
The main feature of a Boost DC-AC inverter is to step-up the input DC voltage and convert this boosted dc voltage into desired AC voltage in a single stage without the use of output filter requirement. The loads fed can be self-governing or solar based home gadgets. The conversion efficiency is less due to more number of stages in a two stage converter. This work aims to simulate a boost DC-AC inverter feeding both linear and non-linear loads in a single stage. Here two boost converters are differentially connected across the load, in order to get a pure sinusoidal waveform as an output. It requires four switches only. Also it is low in cost and in compact size. Two controllers are presented in this work. One is a dual loop controller and other one is a PWM based sliding mode controller. Both the controllers are operated at a switching frequency of 10 kHz. A 220V, 50Hz pure sinusoidal waveform is obtained for different loads (single phase load of 1.5kW, 0.8pf lag) with less steady state error, low THD’ and convergence. Even when a non-linear load is connected both controllers work in a robust manner. It is observed that the PWM based SMC is more accurate in tracking the voltage with less steady state error and settling time. Chattering of SMC is observed through phase portrait. The simulation results are performed using power system computer aided design PSCAD/EMTDC 4.6 tool.
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