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Adaptive voltage control with distributed energy resources: Algorithm, theoretical analysis, simulation, and field test verification

机译:具有分布式能源的自适应电压控制:算法,理论分析,仿真和现场测试验证

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Distributed energy resources (DE) or distributed generators (DG) with power electronics interfaces and logic control using local measurements are capable of providing reactive power related ancillary system services. In particular, local voltage regulation has drawn much attention in regards to power system reliability and voltage stability, especially from past major cascading outages. This paper addresses the challenges of controlling DEs to regulate local voltage in distribution systems. An adaptive voltage control method has been proposed to dynamically modify control parameters to respond to system changes. Theoretical analysis shows that there exists a corresponding formulation of the dynamic control parameters; hence the adaptive control method is theoretically solid. Both simulation and field experiment test results at the Distributed Energy Communications and Controls (DECC) Laboratory confirm that this method is capable of satisfying the fast response requirement for operational use without causing oscillation, inefficiency, or system equipment interference. Since this method has a high tolerance to real-time data shortage and is widely adaptive to variable power system operational situations, it is quite suitable for broad utility application.
机译:具有电力电子接口和使用本地测量的逻辑控制的分布式能源(DE)或分布式发电机(DG)能够提供与无功功率相关的辅助系统服务。特别是,本地电压调节在电力系统的可靠性和电压稳定性方面引起了很多关注,尤其是过去发生的严重级联中断。本文解决了控制DE来调节配电系统中本地电压的挑战。已经提出了一种自适应电压控制方法来动态修改控制参数以响应系统变化。理论分析表明,存在相应的动态控制参数表述。因此,自适应控制方法在理论上是可靠的。分布式能源通信和控制(DECC)实验室的仿真和现场实验测试结果均证实,该方法能够满足操作使用的快速响应要求,而不会引起振荡,效率低下或系统设备干扰。由于这种方法对实时数据短缺具有很高的容忍度,并且广泛适用于可变电力系统的运行情况,因此非常适合广泛的公用事业应用。

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