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Indirect digital control of three-phase DC/AC inverter

机译:三相DC / AC逆变器的间接数字控制

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This paper presents an analytical design method of indirect full digital controller with a simple structure for three-phase inverter system. Most of conventional researches on the analytical design of controller have been studied about the structure of continuous-time controller, and so the final implementation of full digital controller for industrial application was complicate and anyway based on the trial and error methods for gain tuning. So firstly, two axes model of synchronous reference frame is derived to adopt a linear controller in s-domain. During this process, two decoupling terms are generated and the system is to be MIMO. Before eliminating the coupling term to make the system be SISO, the effects of two coupling terms are analyzed by RGA and simulation. And then, the controller of two-parameter structure which has no additional zero in the transfer function is designed by the CRA method and the pole-placement method in s-domain to meet the time response specification depending on the system response. To make a digital controller, the designed controller of two-parameter structure is manipulated and minimally realized. The indirect full digital controller is simulated by PSiM DLL and experimented by TMS320VC33 without any conversion of program. The simulation and experiment results show the good performance of tracking and regulation.
机译:本文提出了一种结构简单的三相逆变器系统间接全数字控制器的分析设计方法。关于控制器的分析设计的大多数常规研究都涉及连续时间控制器的结构,因此,全数字控制器在工业应用中的最终实现是复杂的,并且无论如何都是基于增益调整的试验和误差方法。因此,首先,导出了同步参考系的两轴模型,以在s域中采用线性控制器。在此过程中,将生成两个解耦项,并且系统将为MIMO。在消除耦合项以使系统成为SISO之前,通过RGA和仿真分析了两个耦合项的影响。然后,通过CRA方法和s域中的极点放置方法,设计了在传递函数中没有附加零的两参数结构的控制器,以满足根据系统响应的时间响应规范。为了制造数字控制器,需要对设计的两参数结构的控制器进行操作并使其最小化。间接全数字控制器由PSiM DLL仿真,并由TMS320VC33进行实验,无需任何程序转换。仿真和实验结果表明,该算法具有良好的跟踪和调节性能。

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