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Economic and ecological optimization of electric bus charging considering variable electricity prices and CO_(2eq) intensities

机译:考虑可变电价和CO_(2EQ)强度的电动巴士充电经济与生态优化

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In many cities, diesel buses are being replaced by electric buses with the aim of reducing local emissions and thus improving air quality. The protection of the environment and the health of the population is the highest priority of our society. For the transport companies that operate these buses, not only ecological issues but also economic issues are of great importance. Due to the high purchase costs of electric buses compared to conventional buses, operators are forced to use electric vehicles in a targeted manner in order to ensure amortization over the service life of the vehicles. A compromise between ecology and economy must be found in order to both protect the environment and ensure economical operation of the buses.In this study, we present a new methodology for optimizing the vehicles' charging time as a function of the parameters CO2eq emissions and electricity costs. Based on recorded driving profiles in daily bus operation, the energy demands of conventional and electric buses are calculated for the passenger transportation in the city of Aachen in 2017. Different charging scenarios are defined to analyze the influence of the temporal variability of CO2eq intensity and electricity price on the environmental impact and economy of the bus. For every individual day of a year, charging periods with the lowest and highest costs and emissions are identified and recommendations for daily bus operation are made. To enable both the ecological and economical operation of the bus, the parameters of electricity price and CO2 are weighted differently, and several charging periods are proposed, taking into account the priorities previously set. A sensitivity analysis is carried out to evaluate the influence of selected parameters and to derive recommendations for improving the ecological and economic balance of the battery-powered electric vehicle.In all scenarios, the optimization of the charging period results in energy cost savings of a maximum of13.6% compared to charging at a fixed electricity price. The savings potential of CO2eq emissions is similar, at 14.9%. From an economic point of view, charging between 2 a.m. and 4 a.m. results in the lowest energy costs on average. The CO2eq intensity is also low in this period, but midday charging leads to the largest savings in CO2eq emissions. From a life cycle perspective, the electric bus is not economically competitive with the conventional bus. However, from an ecological point of view, the electric bus saves on average 37.5% CO2eq emissions over its service life compared to the diesel bus. The reduction potential is maximized if the electric vehicle exclusively consumes electricity from solar and wind power.
机译:在许多城市中,柴油总线被电动公交车所取代,目的是减少当地排放,从而提高空气质量。保护环境和人口的健康是我们社会的最高优先事项。对于运营这些公共汽车的运输公司,不仅是生态问题,而且经济问题也具有重要意义。由于电动巴士的高购买成本与传统的公共汽车相比,操作员被迫以目标方式使用电动车辆,以确保在车辆的使用寿命上摊销。必须找到生态和经济之间的妥协,以保护环境并确保公共汽车的经济运行。本研究,我们提出了一种新的方法,以优化车辆的充电时间作为参数CO2EQ排放和电力的函数成本。基于日常总线运营中的录制驾驶型材,在2017年亚琛市的乘客运输计算了传统和电动公交车的能源需求。定义了不同的充电情景,以分析CO2EQ强度和电力的时间变异性的影响公交车环境影响和经济性的价格。对于每年的每一天,确定具有最低和最高成本和排放的充电期,并进行了日常公交车操作的建议。为了实现总线的生态和经济操作,电价和CO2的参数是不同的加权,提出了几个充电期,考虑到先前设置的优先级。进行了灵敏度分析,以评估所选参数的影响以及推导提高电池供电电动车的生态和经济平衡的建议。在所有情况下,充电期的优化导致最大能耗节省与固定电价充电相比,13.6%。 CO2EQ排放的储蓄潜力相似,占14.9%。从经济的角度来看,在上午2点至下午4点之间充电。平均能源成本最低。在此期间,CO2EQ强度也很低,但午间充电导致CO2EQ排放中最大的节省。从生命周期的角度来看,电动总线对传统总线具有经济竞争力。然而,从生态角度来看,与柴油总线相比,电动总线平均储蓄超过其使用寿命的37.5%的CO2EQ排放。如果电动车辆专门从太阳能和风力发电消耗电力,则减小电位最大化。

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