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Unit commitment in a smart grid with plug-in hybrid electric vehicles — A cost-emission optimization

机译:单位承诺在智能电网中采用插​​入式混合动力电动汽车 - 一种成本排放优化

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The evolution in transportation has been boosting the growth of societies and industry. The power plant and transportation sector are our planet's main sources of greenhouse gas emissions. The main aim of this article, can reduce emissions from the power and transportation sector. Vehicles are essential in daily transportation, and an increasing effort is being done to replace the pollutant combustion engines by plug-in hybrid electric vehicles (PHEVs). Better utilization of such potential depends on the optimal scheduling of charging and discharging PHEVs. Therefore, charging and discharging of PHEVs must be scheduled intelligently to prevent overloading of the network at peak hours, take advantages of off peak charging benefits and delaying any load shedding. In this paper presents a novel approach for solve the unit commitment problem of thermal units integrated with PHEVs in an electrical power system. An IEEE 10-unit test system is employed to investigate the impacts of PHEVs on generation scheduling and cost-emission. The results obtained from simulation analysis show a significant techno-economic saving.
机译:运输的演变一直在推动社会和行业的增长。电厂和运输部门是我们星球的主要温室气体排放来源。本文的主要目标,可以减少电力和运输部门的排放。车辆在日常运输方面是必不可少的,正在进行越来越努力,通过插入式混合动力电动车(PHEV)更换污染物燃烧发动机。更好地利用这种潜力取决于充电和放电PHEV的最佳调度。因此,必须智能地调度PHEV的充电和放电,以防止在高峰时段的网络过度,从而实现峰值充电益处和延迟任何负载脱落的优点。本文提出了一种新颖的方法,用于解决电力系统中PHEV集成的热单元的单位承诺问题。采用IEEE 10单元测试系统来研究PHEV对发电调度和成本排放的影响。从仿真分析中获得的结果表明了显着的技术经济储蓄。

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