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Implementation of a 35KVA Converter Base on the 3-Phase 4-Wire STATCOMs for Medium Voltage Unbalanced Systems

机译:基于三相4线STATCOM的35KVA转换器在中压不平衡系统中的实现

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This paper discussed a transformer-less shunt static synchronous compensator (STATCOM) with consideration of the following aspects: fast compensation of the reactive power, harmonic cancelation and reducing the unbalancing of the 3-phase source side currents. The STATCOM control algorithm is based on the theory of instantaneous reactive power (P-Q theory). A self charging technique is proposed to regulate the dc capacitor voltage at a desired level with the use of a PI controller. In order to regulate the DC link voltage, an off-line Genetic Algorithm (GA) is used to tune the coefficients of the PI controller. This algorithm arranged these coefficients while considering the importance of three factors in the DC link voltage response: overshoot, settling time and rising time. For this investigation, the entire system including the STATCOM, network, harmonics and unbalancing load are simulated in MATLAB/SIMULINK. After that, a 35KVA STATCOM laboratory setup test including two parallel converter modules is designed and the control algorithm is executed on a TMS320F2812 controller platform.
机译:本文从以下几个方面讨论了一种无变压器并联静态同步补偿器(STATCOM):无功功率的快速补偿,谐波消除和减少三相电源侧电流的不平衡。 STATCOM控制算法基于瞬时无功功率理论(P-Q理论)。提出了一种自充电技术,可通过使用PI控制器将直流电容器的电压调节到所需的水平。为了调节直流母线电压,使用离线遗传算法(GA)调整PI控制器的系数。该算法在考虑直流母线电压响应中三个因素的重要性时布置了这些系数:过冲,建立时间和上升时间。为了进行此研究,在MATLAB / SIMULINK中对包括STATCOM,网络,谐波和不平衡负载在内的整个系统进行了仿真。此后,设计了一个包括两个并行转换器模块的35KVA STATCOM实验室设置测试,并且在TMS320F2812控制器平台上执行了控制算法。

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