电源系统数字控制设计方法的建模与仿真

V. Boscaino, G. Capponi, G. Di Blasi, P. Livreri, F. Marino
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引用次数: 12

摘要

电子设计师需要建模和模拟系统特征,尽可能接近其有效行为。此外,今天的电子系统通常由混合模拟和数字元件组成。不断增加的复杂性导致使用不同的仿真软件,每个软件都针对特定的抽象层次:数学、电路、行为等。为了对整个系统进行仿真,这些软件应该协同工作:对于数字控制的电力电子系统,联合仿真是必要的。本文利用MATLAB/Simulink、ALDEC Active-HDL和Powersys PSIM对一个数控开关电源系统进行了建模。在PSIM中对功率变换器进行建模,利用Active-HDL在VHDL中对数字控制进行描述,并在MATLAB/Simulink环境中对整个系统进行仿真。这种设计方法展示了每种常用软件的所有优点,并将讨论其所有功能。对数字控制降压变换器样机的仿真结果与实验结果进行了比较
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Modeling and simulation of a digital control design approach for power supply systems
Electronic designers need to model and simulate system features as close as possible to its effective behaviour. Moreover, today, electronics systems are often composed of mixed analog and digital components. The increasing complexity has led to the use of different simulation softwares, each one specific for a particular level of abstraction: mathematical, circuital, behavioural, etc. In order to simulate the entire system these softwares should work together: co-simulation is necessary for digitally controlled power electronics systems. In this paper, the modeling of a digitally controlled switching power supply system using MATLAB/Simulink, ALDEC Active-HDL and Powersys PSIM is presented. The power converter is modelled in PSIM, the digital control is described in VHDL by using Active-HDL, and the complete system is simulated in MATLAB/Simulink environment. This design approach presents all the advantages of each used software and all its features will be discussed. The comparison between simulation and experimental results of the digitally controlled step-down converter prototype are reported
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