电池(电)
环境科学
汽车工程
营业成本
航程(航空)
调度(生产过程)
可靠性(半导体)
能源消耗
整数规划
还原(数学)
降低成本
计算机科学
电气工程
工程类
运营管理
功率(物理)
废物管理
数学
航空航天工程
物理
几何学
算法
量子力学
管理
经济
作者
Yuan Cong,Heqi Wang,Yiming Bie,Jiabin Wu
标识
DOI:10.1016/j.tre.2023.103362
摘要
Managing the energy supply of electric buses (EBs) is critical to balance operational reliability and cost reduction. However, ambient temperature significantly affects energy consumption, posing challenges in providing adequate energy supply, especially in cold regions. In this study, we propose a double-battery configuration approach for EBs operating in cold regions with substantial temperature variations between seasons. The method involves utilizing a higher-capacity battery during winter months and a lower-capacity battery for summer operations. To determine the optimal fleet size, battery capacities, and EB scheduling plans in both winter and summer seasons, we formulate an integer programming model, focusing on minimizing the fleet's average annual operating costs (OC) and carbon emissions (CE). The model is solved using the branch and bound method. A case study is conducted, examining EB routes in 11 cold cities. Results reveal that the double-battery configuration method effectively reduces the fleet's average annual OC and CE. Specifically, the reduction ratio range for OC is from 3.34% to 5.18%, while the reduction ratio for CE ranges from 4.06% to 5.16%.
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