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A Hybrid Voltage Regulator with Arcless Tap Change and Stepless Voltage Regulation Functions

机译:具有无弧分接变换和无级调压功能的混合稳压器

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Step voltage regulator (SVR) has been utilized in the power distribution systems for decades. The induced arc from the conventional SVR tap change and the voltage instability from the renewable energy penetration impose constraints on the conventional SVRs’ lifetime. Meanwhile the voltage regulation accuracy cannot be guaranteed since the SVR regulates the voltage step by step. The power electronics transformer solution was proposed but requires the power converter capacity proportional to the voltage regulation range, which significantly increases the system cost. This paper proposed a hybrid voltage regulator that achieves arcless tap change and stepless voltage regulation by using a back-to-back power converter. Load voltage regulation continuity is guaranteed while the tap changer mechanism remains in the system, which helps to promote the upgrade to the existing power distribution systems. The required converter capacity in the proposed topology is 0.31% of the distribution transformer rating, which also reduces the system cost compared with the full power electronics solutions. The proposed hybrid voltage regulator was simulated and experimentally validated. The experimental results demonstrate arcless tap change operation, stepless voltage regulation, and load voltage continuity during the tap change.
机译:步进电压调节器(SVR)已在配电系统中使用了数十年。常规SVR抽头变换产生的感应电弧以及可再生能源渗透产生的电压不稳定性对常规SVR的使用寿命造成了限制。同时,由于SVR逐步调节电压,因此无法保证电压调节的准确性。提出了电力电子变压器解决方案,但要求功率转换器的容量与调压范围成正比,这大大增加了系统成本。本文提出了一种混合电压调节器,该电压调节器通过使用背靠背功率转换器来实现无弧分接变化和无级电压调节。在分接开关机制保留在系统中的同时,保证了负载电压调节的连续性,这有助于促进对现有配电系统的升级。在建议的拓扑中,所需的转换器容量为配电变压器额定值的0.31%,与全功率电子解决方案相比,这还降低了系统成本。拟议的混合电压调节器经过仿真和实验验证。实验结果证明了无弧分接变换操作,无级调压和分接变换期间的负载电压连续性。

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