Activity based models for countrywide electric vehicle power demand calculation

L. Knapen, Bruno Kochan, T. Bellemans, D. Janssens, G. Wets
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引用次数: 31

Abstract

Smart grid design depends on the availability of realistic data. In the near future, energy demand by electric vehicles will be a substantial component of the overall demand and peaks of required power could become critical in some regions. Transportation research has been using micro-simulation based activity-based models for traffic forecasting. The resulting trip length distribution allows to estimate to what extent internal combustion engine vehicles can be substituted by electric vehicles. Second, combining the results emerging from activity based models with assumptions on electric vehicles market share, allows to predict energy and power demand in time and space. Furthermore, smart grid management effects can be investigated using activity based models because generated schedules determine how charging periods can float in time. This paper presents results calculated for the Flanders region.
基于活动的全国电动汽车电力需求计算模型
智能电网的设计依赖于实际数据的可用性。在不久的将来,电动汽车的能源需求将成为总需求的重要组成部分,在某些地区,所需电力的峰值可能变得至关重要。交通研究一直在使用基于微观模拟的基于活动的交通预测模型。由此得出的行程长度分布可以估计内燃机汽车在多大程度上可以被电动汽车取代。其次,将基于活动的模型的结果与电动汽车市场份额的假设相结合,可以在时间和空间上预测能源和电力需求。此外,智能电网管理效果可以使用基于活动的模型进行研究,因为生成的时间表决定了充电周期如何随时间变化。本文给出了法兰德斯地区的计算结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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