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Mixed Aleatory-epistemic Uncertainty Modeling of Wind Power Forecast Errors in Operation Reliability Evaluation of Power Systems 被引量:2
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作者 Jinfeng Ding Kaigui Xie +4 位作者 Bo Hu Changzheng Shao Tao Niu Chunyan Li Congcong Pan 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2022年第5期1174-1183,共10页
As the share of wind power in power systems continues to increase, the limited predictability of wind power generation brings serious potential risks to power system reliability. Previous research works have generally... As the share of wind power in power systems continues to increase, the limited predictability of wind power generation brings serious potential risks to power system reliability. Previous research works have generally described the uncertainty of wind power forecast errors(WPFEs) based on normal distribution or other standard distribution models, which only characterize the aleatory uncertainty. In fact, epistemic uncertainty in WPFE modeling due to limited data and knowledge should also be addressed. This paper proposes a multi-source information fusion method(MSIFM) to quantify WPFEs when considering both aleatory and epistemic uncertainties. An extended focal element(EFE) selection method based on the adequacy of historical data is developed to consider the characteristics of WPFEs. Two supplementary expert information sources are modeled to improve the accuracy in the case of insufficient historical data. An operation reliability evaluation technique is also developed considering the proposed WPFE model. Finally,a double-layer Monte Carlo simulation method is introduced to generate a time-series output of the wind power. The effectiveness and accuracy of the proposed MSIFM are demonstrated through simulation results. 展开更多
关键词 Wind power forecast error(WPFE) epistemic uncertainty multi-source information fusion method(MSIFM) operation reliability extended focal element(efe) double-layer Monte Carlo simulation
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以电冰箱制冷系统为例的能量流分析 被引量:1
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作者 邓瀚晖 向东 +2 位作者 王坦 刘宇 高浪 《机械设计与研究》 CSCD 北大核心 2017年第2期113-118,共6页
针对电冰箱制冷系统性能设计以试验为主,缺乏有效的物理分析手段的问题,抓住能量这一影响性能的关键因素,研究系统中能量的传递及流动,提出一套制冷系统能量流仿真分析模型。定义能量流元模型,并根据制冷系统的功能及能量传递关系划分... 针对电冰箱制冷系统性能设计以试验为主,缺乏有效的物理分析手段的问题,抓住能量这一影响性能的关键因素,研究系统中能量的传递及流动,提出一套制冷系统能量流仿真分析模型。定义能量流元模型,并根据制冷系统的功能及能量传递关系划分能量流元,构建制冷系统能量流模型。提出特征能量以表征部件功能。将各部件的特征能量、设计变量及部件间的接口参数关联,构建并求解能量特性方程组,以能量为媒介研究系统各部件的参数设计及匹配关系。建立了制冷系统能量流模型仿真流程,以试验样机的测试结果验证了能量流建模方法的有效性。有助于通过考察能量流动特性支撑耗能机电产品节能降耗和性能优化。 展开更多
关键词 能量流元 特征能量 制冷系统 建模分析
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