相量测量单元
电力系统
自动频率控制
控制理论(社会学)
计量单位
相量
计算机科学
交流电源
可靠性工程
功率(物理)
工程类
控制(管理)
电信
电压
电气工程
物理
量子力学
人工智能
作者
Wenxuan Yao,Shutang You,Weikang Wang,Xianda Deng,Yicheng Li,Lingwei Zhan,Yilu Liu
标识
DOI:10.1109/tsg.2019.2926205
摘要
The increase of renewable penetration in power grids calls for loads to participate in frequency regulation to avoid under-frequency load shedding after large resource contingencies. The motivation of this paper is to fulfill a fast residential load control for frequency stability enhancement. For this purpose, a novel mobile distribution-level phasor measurement unit (MDPMU) is developed for disturbance event detection, power mismatch estimation and fast load control. First, the systematic design of the MDPMU introduced. The proposed MDPMU has the major advantages of low cost and high frequency measurement accuracy. Second, the distributionlevel measurement is utilized for the rate of change of frequency (ROCOF) calculation. Upon detection of a power system frequency event, power mismatch is estimated at the early stage of the event. Details of a robust approach to calculate ROCOF and determine the event starting point are presented. Practical issues including the measurement reporting rate and estimation time are also considered. Last, with the proposed control system, residential load responses can be controlled coordinately based on load availability and compensation prices offered by customers, providing adaptive frequency regulation service after large resource contingencies. The accuracy of frequency measurement and power mismatch estimation are evaluated via experimental analysis. The frequency stability improvement by load control is validated via PSS/E simulation.
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