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Decoupled control strategy for the operation of capacitor-excited induction generator for DC power applications

机译:用于直流电源应用的电容器励磁感应发电机运行的解耦控制策略

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摘要

In this study, voltage oriented decoupled current mode control technique has been proposed for the operation of the capacitor-excited induction generator with pulse-width modulation (PWM) rectifier systems for supplying isolated DC loads. The proposed controller maintains constant voltage at the DC load terminals and also maintains unity power factor with very less harmonics at the PWM rectifier input terminals. The configuration and implementation of the control scheme employing dSPACE 1103 real-time controller have been fully described. A method for predetermining the steady-state performance of the proposed system has been developed and described with relevant analytical expressions. The effective load at the generator terminals becomes only resistance, since unity power factor is maintained at the PWM rectifier input terminals by the closed-loop controller. To verify the successful working of the proposed control strategy during transient conditions, the proposed system has been modelled in the MATLAB/Simulink toolbox and results are presented. A prototype system consisting of CEIG, PWM rectifier and the associated control circuits has been built in the laboratory for experimental verification. A close agreement between the experimental results and predicted values confirms the validity of the analysis and successful working of the proposed control strategy.
机译:在这项研究中,提出了面向电压的解耦电流模式控制技术,用于带脉冲宽度调制(PWM)整流器系统的电容器励磁感应发电机的运行,以提供隔离的直流负载。所提出的控制器在DC负载端子处保持恒定电压,并且在PWM整流器输入端子处保持单位功率因数且谐波极少。已经全面描述了使用dSPACE 1103实时控制器的控制方案的配置和实现。已经开发了一种用于确定所提出系统的稳态性能的方法,并通过相关的分析表达式进行了描述。发电机端子上的有效负载仅变为电阻,因为闭环控制器在PWM整流器输入端子上保持了单位功率因数。为了验证所提出的控制策略在瞬态条件下的成功运行,已在MATLAB / Simulink工具箱中对提出的系统进行了建模,并给出了结果。在实验室中建立了由CEIG,PWM整流器和相关控制电路组成的原型系统,用于实验验证。实验结果与预测值之间的密切一致性证实了分析的有效性以及所提出的控制策略的成功运行。

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