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台风天气下配电网可靠性的新型评估算法
引用本文:尹超雄,唐武勤,温灵锋,蓝建杰,林杰欢,李少逸,李宁. 台风天气下配电网可靠性的新型评估算法[J]. 电力系统保护与控制, 2018, 46(4): 138-143
作者姓名:尹超雄  唐武勤  温灵锋  蓝建杰  林杰欢  李少逸  李宁
作者单位:广东电网有限责任公司惠州供电局,广东 惠州 516001,广州市奔流电力科技有限公司,广东 广州 510640,广东电网有限责任公司惠州供电局,广东 惠州 516001,广东电网有限责任公司惠州供电局,广东 惠州 516001,广东电网有限责任公司惠州供电局,广东 惠州 516001,广东电网有限责任公司惠州供电局,广东 惠州 516001,惠州电力勘察设计院有限公司,广东 惠州 516001
摘    要:基于台风的可预测性,考虑到配电网元件电杆的强度随机变量,提出基于风速的配电网元件电杆故障率计算模型。通过该模型可计算出不同风速下配电网元件的故障率,并结合现有的馈线、负荷分块的思想,采用序贯蒙特卡洛模拟法计算出配电系统在台风登陆过程中最高风速段的可靠性水平。模拟过程中考虑了元件的实时故障率以及运行—故障—运行—故障的动态交替特性。该计算结果为以后的配电网工程加固提供了理论基础,对于配电网的差异化规划设计也具有一定的指导意义。最后以IEEE RBTS BUS6 F4馈线为算例,在Matlab上进行了计算,计算结果验证了该方法的正确性与有效性。

关 键 词:配电网;荷载;可靠性;蒙特卡洛模拟法;台风
收稿时间:2017-02-16
修稿时间:2017-05-18

A new method for reliability evaluation of distribution network considering the influence of typhoon
YIN Chaoxiong,TANG Wuqin,WEN Lingfeng,LAN Jianjie,LIN Jiehuan,LI Shaoyi and LI Ning. A new method for reliability evaluation of distribution network considering the influence of typhoon[J]. Power System Protection and Control, 2018, 46(4): 138-143
Authors:YIN Chaoxiong  TANG Wuqin  WEN Lingfeng  LAN Jianjie  LIN Jiehuan  LI Shaoyi  LI Ning
Affiliation:Huizhou Power Supply Bureau, Guangdong Power Supply Co., Ltd, Huizhou 516001, China,Guangzhou Benliu Power Electrical Engineering Technology Co., Ltd, Guangzhou 510640, China,Huizhou Power Supply Bureau, Guangdong Power Supply Co., Ltd, Huizhou 516001, China,Huizhou Power Supply Bureau, Guangdong Power Supply Co., Ltd, Huizhou 516001, China,Huizhou Power Supply Bureau, Guangdong Power Supply Co., Ltd, Huizhou 516001, China,Huizhou Power Supply Bureau, Guangdong Power Supply Co., Ltd, Huizhou 516001, China and Huizhou Electric Power Survey & Design Institute Co., Ltd, Huizhou 516001, China
Abstract:Based on the typhoon forecasting and the strength random variables of distribution component pole, this paper proposes a wind speed based failure rate calculation model for distribution component pole. This model can calculate the failure rate of distribution network components under different wind speeds. The reliability level of the highest wind speed section during typhoon landing of distribution system is calculated by the sequential Monte Carlo simulation method combining existing feeder and load partition theory. In the simulation process, the real time failure rate of the components and the dynamic alternation characteristics of operation-fault-operation are considered. The calculation results provide theoretical basis for reinforcing the distribution network project and some guidance for the differential design and plan of power distribution network in the future. Finally, the IEEE RBTS BUS6 F4 feeder is taken as an example to be calculated using Matlab, and the results show the correctness and effectiveness of the method.
Keywords:distribution network   load   reliability   Monte Carlo simulation   typhoon
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