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Combining Market-Based Control with Distribution Grid Constraints when Coordinating Electric Vehicle Charging 被引量:1
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作者 Geert Deconinck Klaas De Craemer Bert Claessens 《Engineering》 SCIE EI 2015年第4期453-465,共13页
The charging of electric vehicles(EVs) impacts the distribution grid, and its cost depends on the price of electricity when charging. An aggregator that is responsible for a large fleet of EVs can use a market-based c... The charging of electric vehicles(EVs) impacts the distribution grid, and its cost depends on the price of electricity when charging. An aggregator that is responsible for a large fleet of EVs can use a market-based control algorithm to coordinate the charging of these vehicles, in order to minimize the costs. In such an optimization, the operational parameters of the distribution grid, to which the EVs are connected, are not considered. This can lead to violations of the technical constraints of the grid(e.g., undervoltage, phase unbalances); for example, because many vehicles start charging simultaneously when the price is low. An optimization that simultaneously takes the economic and technical aspects into account is complex, because it has to combine time-driven control at the market level with eventdriven control at the operational level. Diff erent case studies investigate under which circumstances the market-based control, which coordinates EV charging, conflicts with the operational constraints of the distribution grid. Especially in weak grids, phase unbalance and voltage issues arise with a high share of EVs. A low-level voltage droop controller at the charging point of the EV can be used to avoid many grid constraint violations, by reducing the charge power if the local voltage is too low. While this action implies a deviation from the cost-optimal operating point, it is shown that this has a very limited impact on the business case of an aggregator, and is able to comply with the technical distribution grid constraints, even in weak distribution grids with many EVs. 展开更多
关键词 electric vehicle charging distribution grid combining technical and economic objectives distributed control
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基于GRA和AHP的煤矿一般事故防控研究 被引量:1
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作者 任志成 孔德中 +2 位作者 宋高峰 许鹏飞 李淋 《矿业研究与开发》 CAS 北大核心 2023年第12期131-137,共7页
为研究近几年我国煤矿一般事故的规律特点,以2019—2021年的煤矿一般事故统计为研究对象,通过轨迹交叉模型分析了一般事故的规律特点。构建了煤矿一般事故影响因素分析模型,通过灰色关联分析法研究了一般事故的影响因素,利用层次分析法... 为研究近几年我国煤矿一般事故的规律特点,以2019—2021年的煤矿一般事故统计为研究对象,通过轨迹交叉模型分析了一般事故的规律特点。构建了煤矿一般事故影响因素分析模型,通过灰色关联分析法研究了一般事故的影响因素,利用层次分析法研究了一般事故防控的重点和方法。结果表明:一般事故发生与安全管理密不可分,且与煤炭企业数量、从业人员数量关联度较大,需进一步提高煤炭企业效率、减少作业人员。一般事故防控受辅助运输装备智能化、取消绞车和团队互相监督等影响较大,需在“三违”控制、职工风险意识、智能化建设、制度建设、制度考核等方面同时发力,提高煤矿一般事故防控能力。 展开更多
关键词 一般事故 事故预防 灰色关联 层次分析 控制“三违”
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