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Hardware and software model evaluation of a dynamic load balancer for mitigation of current unbalance in distribution circuits

机译:动态负载平衡器的硬件和软件模型评估,可减轻配电电路中的电流不平衡

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Current unbalance conditions are a concern to utilities and can negatively affect power quality and safe and reliable system operation if left untreated. Conventional solutions involve physical re-configuration and are typically challenging and less effective as these changes are temporary and will change as circuit and customer load habits evolve. As alternative, power electronic-based devices are promising solutions to mitigating current unbalance. This paper introduces the control theory behind one such power electronics-based Dynamic Load Balancer (DLB) and details the development of a transient software-based simulation model to allow for mitigation planning and performance evaluation in distribution circuits. The physical and software model for DLB were tested under a range of system conditions as verification of model accuracy and also evaluation of the device capabilities and performance.
机译:当前的不平衡状况是公用事业关注的问题,如果不加以处理,可能会对电能质量和安全可靠的系统运行产生负面影响。常规解决方案涉及物理重新配置,并且通常具有挑战性且效率较低,因为这些更改是暂时的,并且会随着电路和客户负载习惯的发展而更改。作为替代方案,基于电力电子的设备是缓解电流不平衡的有前途的解决方案。本文介绍了一种基于电力电子的动态负载平衡器(DLB)背后的控制理论,并详细介绍了基于瞬态软件的仿真模型的开发,该模型可用于配电线路中的缓解计划和性能评估。在一系列系统条件下测试了DLB的物理和软件模型,以验证模型的准确性以及评估设备的功能和性能。

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