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Digital Implementation of Sliding Mode Control Technique on SSC for Load Balancing and Reactive Power Compensation

机译:用于负载平衡和无功补偿的SSC滑模控制技术的数字实现

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This paper presents an implementation of a new control scheme of a 3-phase solid-state compensator (SSC) to compensate reactive power and to balance unbalanced loads. An IGBT-based current controlled PWM voltage source inverter (VSI) with a dc bus capacitor is employed as an SSC. A sliding mode controller (SMC) over the dc bus voltage of the SSC is used to derive reference supply currents in phase with supply voltages. The SMC closed loop controller over dc bus voltage of SSC provides robust control and transient free dynamic response of the system. An indirect current control over the reference and sensed supply currents is realised for generating the gating pulses for the IGBTs of the SSC. Test results of the SSC for the cases of single-phase and 3-phase lagging power-factor loads are presented and discussed in detail to demonstrate the reactive power compensation and loads balancing capabilities of the SSC.
机译:本文介绍了一种三相固态补偿器(SSC)的新控制方案的实现,该方案可补偿无功功率并平衡不平衡负载。带有直流总线电容器的基于IGBT的电流控制PWM电压源逆变器(VSI)被用作SSC。 SSC的直流总线电压上的滑模控制器(SMC)用于得出与电源电压同相的参考电源电流。 SMC闭环控制器通过SSC的直流总线电压提供了鲁棒的控制和系统的无瞬态动态响应。实现了对参考电流和检测到的电源电流的间接电流控制,以生成SSC IGBT的选通脉冲。给出并详细讨论了SSC在单相和三相滞后功率因数负载情况下的测试结果,以证明SSC的无功功率补偿和负载平衡能力。

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