电压
节点(物理)
控制器(灌溉)
继电器
发电机(电路理论)
估计员
控制理论(社会学)
电压控制器
电压降
交流电源
计算机科学
功率(物理)
工程类
电压调节器
控制(管理)
电气工程
数学
统计
人工智能
物理
农学
生物
结构工程
量子力学
作者
C.M. Hird,Hélder Leite,Nick Jenkins,H. Li
出处
期刊:IEE proceedings
[Institution of Electrical Engineers]
日期:2004-01-01
卷期号:151 (2): 150-150
被引量:108
标识
DOI:10.1049/ip-gtd:20040083
摘要
Present distribution network voltage design practice limits the distributed generation capacity that can be connected to 11 kV networks. It has been shown previously that adoption of a more active approach to network voltage control can significantly increase distributed generation capacity. One way to do this is to control the target voltage of automatic voltage control relays at primary substations. A basic design for a controller to do this has been created, comprising three algorithms. A statistical state estimation algorithm estimates the voltage magnitude at each network node supplied by the primary substation, using real-time measurements, network data and load data. The estimate accuracy depends on the number and placement of real-time measurements. Studies using an 11 kV feeder model showed that an acceptable accuracy could be obtained with one or two measurements. The state estimator uses pseudo measurements for unmeasured loads. A load model was constructed using load profiles to calculate the pseudo measurements. The calculated pseudo measurements were inaccurate, but it was found that acceptable state estimate accuracy could be obtained with inaccurate pseudo measurements. A control algorithm alters the AVC relay target voltage, based on the maximum and minimum node voltage magnitude estimates. A simulation on a four-feeder network showed that the algorithm enabled the generator power export to be more than doubled.
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