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Investigation of phase-wise voltage regulator control logics for compensating voltage deviations in an experimental low voltage network

机译:研究用于补偿实验低压电网中的电压偏差的相位电压调节器控制逻辑

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摘要

This paper investigates the control logics of an on-load tap-changer (OLTC) transformer by means of an experimental system validation. The experimental low-voltage unbalanced system consists of a decoupled single-phase OLTC transformer, a 75-metre 16 mm2 cable, a controllable single-phase resistive load and an electric vehicle, which has the vehicle-to-grid function. Three control logics of the OLTC transformer are described in the study. The three control logics are classified based on their control objectives and control inputs, which include network currents and voltages, and can be measured either locally or remotely. To evaluate and compare the control performances of the three control logics, all the tests use the same loading profiles. The experimental results indicate that the modified line compensation control can regulate voltage in a safe band in the case of various load and generation conditions.
机译:本文通过实验系统验证研究了有载分接开关(OLTC)变压器的控制逻辑。实验性低压不平衡系统包括一个解耦的单相OLTC变压器,一条75米长的16 mm2电缆,一个可控的单相电阻负载和一个具有车辆到电网功能的电动汽车。研究中描述了OLTC变压器的三种控制逻辑。三种控制逻辑根据其控制目标和控制输入进行分类,其中包括网络电流和电压,可以在本地或远程进行测量。为了评估和比较三种控制逻辑的控制性能,所有测试都使用相同的负载曲线。实验结果表明,在各种负载和发电条件下,改进的线路补偿控制可以在安全范围内调节电压。

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