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含规模化空气源热泵的电网稳定性分析与风险评估
引用本文:丁屹峰,宫成,马龙飞,徐蕙,邵文君. 含规模化空气源热泵的电网稳定性分析与风险评估[J]. 沈阳工业大学学报, 2018, 40(5): 486-491. DOI: 10.7688/j.issn.1000-1646.2018.05.02
作者姓名:丁屹峰  宫成  马龙飞  徐蕙  邵文君
作者单位:国网北京市电力公司 电源中心, 北京 100075
基金项目:国网公司科技计划资助项目(52022316001B)
摘    要:针对大量空气源热泵同时启动时,会对电网造成冲击并影响电网安全稳定运行的问题,提出了一种基于非序贯蒙特卡洛模拟的评估方法.基于对定频空气源热泵和变频直流空气源热泵启动特性的研究,使用非序贯蒙特卡洛方法和风险理论模拟并分析了规模化空气源热泵启动时电网的稳定特性和电网风险.对某村落低压配电网的算例研究结果表明,提出的评估方法能有效评估含规模化空气源热泵启动时电网的稳定性和风险指标,为规模化空气源热泵对电网稳定带来的影响提供了有效的分析手段.

关 键 词:空气源热泵  风险分析  电网  稳定性  非序贯蒙特卡洛  低压配电网  伺服电机  规模化  

Stability analysis and risk assessment of power grid with large scale air source heat pump
DING Yi-feng,GONG Cheng,MA Long-fei,XU Hui,SHAO Wen-jun. Stability analysis and risk assessment of power grid with large scale air source heat pump[J]. Journal of Shenyang University of Technology, 2018, 40(5): 486-491. DOI: 10.7688/j.issn.1000-1646.2018.05.02
Authors:DING Yi-feng  GONG Cheng  MA Long-fei  XU Hui  SHAO Wen-jun
Affiliation:Power Research Center, State Grid Beijing Electric Power Company, Beijing 100075, China
Abstract:In order to solve the problem that when the a large number of air source heat pumps are simultaneously started, the power grid will get impacted and the safe and stable operation of power grid will be affected, an evaluation method based on non-sequential Monte Carlo simulation was proposed. Based on the study on the startup characteristics of both air-source heat pump with fixed frequency and DC air-source heat pump with variable frequency, the non-sequential Monte Carlo method and risk theory were used to simulate and analyze the stability characteristics and power grid risk when the large scale air source heat pumps were started. The research results of low-voltage distribution power grid for a certain village show that the proposed method can effectively assess the stability and risk indexes of power grid when the large scale air source heat pumps get started, which can provide an effective analytical method for the influence of large scale air source heat pump on the stability of power grid.
Keywords:air source heat pump  risk assessment  power grid  stability  non-sequential Monte Carlo  low voltage distribution power grid  servo motor  large scale  
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