首页> 外文会议>Industry Applications Society Annual Meeting, 1994., Conference Record of the 1994 IEEE >Modeling and analysis of a feedback control strategy for three-phase voltage-source utility interface systems
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Modeling and analysis of a feedback control strategy for three-phase voltage-source utility interface systems

机译:三相电压源公用接口系统的反馈控制策略的建模和分析

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This paper presents the steady-state and dynamic analysis of a novel feedback control strategy for a three-phase voltage-source utility interface power convertor system with a third order T-filter. The control scheme employs an inner capacitor current feedback loop and an outer capacitor voltage control loop to ensure that the harmonic content of both the capacitor voltage and utility current is within the acceptable total harmonic distortion. The utility interface system is analyzed by establishing a general model using state-space analysis. Employing the concept of state-space averaging technique, the steady-state performance of a balanced three-phase system is obtained in terms of system parameters. The dynamic response of the control strategy is then examined by developing a linearized model of the system equations employing perturbation technique and small signal approximation. Based on the bode plot of the system transfer function, a control loop regulator is selected to improve the dynamic response of the system. It is shown in the paper that the proposed scheme offers many advantages for utility interface systems; it is robust and insensitive to parameter variations. In addition, due to the use of the inner current loop, the system has fast dynamic response. Moreover, it is compatible with both large and weak AC network applications and capable of feeding the utility current at any desired power factor.
机译:本文介绍了一种带有三阶T滤波器的三相电压源公用接口电力变换系统的新型反馈控制策略的稳态和动态分析。该控制方案采用内部电容器电流反馈环路和外部电容器电压控制环路,以确保电容器电压和市电电流的谐波含量均在可接受的总谐波失真范围内。通过使用状态空间分析建立通用模型来分析公用程序接口系统。利用状态空间平均技术的概念,可以根据系统参数获得平衡三相系统的稳态性能。然后,通过使用摄动技术和小信号逼近来开发系统方程的线性化模型,来检查控制策略的动态响应。根据系统传递函数的波德图,选择控制环路调节器以改善系统的动态响应。本文表明,所提出的方案为公用程序接口系统提供了许多优点。它坚固且对参数变化不敏感。此外,由于使用了内部电流环路,因此系统具有快速的动态响应。此外,它与大型和弱交流网络应用程序兼容,并能够以任何所需的功率因数馈送市电电流。

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