论文标题

考虑到环境温度的合作固定和移动能源存储的最佳配置:冬季奥运会的一个案例

Optimal configuration of cooperative stationary and mobile energy storage considering ambient temperature: A case for Winter Olympic Game

论文作者

Meng, He, Jia, Hongjie, Xu, Tao, Wei, Wei, Wu, Yuhan, Liang, Lemeng, Cai, Shuqi, Liu, Zuozheng, Wang, Rujing

论文摘要

国际大型赛事,例如冬季奥运会,被认为是全球最碳密集型活动之一。由于可再生能源的随机性,在确保极高可靠性的同时,完全可再生能源适应和利用的承诺在系统操作上带来了重大挑战。可以利用由固定能源存储系统(SES)和共享移动能源存储系统(MYS)组成的电池储能系统(BESS)来满足大型赛车期间重要负载的短期负载潮,可再生住宿和紧急电源的要求。贝斯可以继续为场地的电力消耗服务,以满足事件发生后的碳中立性。另一方面,冬季奥林匹克游戏的较低环境温度对BESS的退化和性能产生了重大影响,这需要将其集成到Bess的充电和排放模型中。为此,考虑到SESS和MESS的环境温度的联合两阶段最佳配置方法已开发出来,以支持大型事实的碳中立性,以减少冗余的BESS能力分配并改善系统生命周期成本效果。模拟结果表明,在各种情况下,SESS和混乱的协作操作的合理性和有效性。

The international mega-event, such as the Winter Olympic Game, has been considered as one of the most carbon intensive activities worldwide. The commitment of fully renewable energy accommodation and utilization while ensuring the extreme high reliability has brought significant challenges on system operation due to the stochastic nature of the renewables. The battery energy storage system (BESS) composed of stationary energy storage system (SESS) and shared mobile energy storage system (MESS) can be utilized to meet the requirements of short-term load surges, renewable accommodation and emergency power supply for important loads during the mega-event. The BESS can continue to serve the venues electricity consumption to satisfy the carbon neutrality after the event. On the other hand, the low ambient temperature of Winter Olympic game has significant impact on BESSs degradation and performance which need to be integrated to the charging and discharging model of BESS. To this end, a joint two-stage optimal configuration method considering the ambient temperature of SESS and MESS has been developed to support the mega-event carbon neutrality, to reduce redundant BESS capacity allocation and improve the system life cycle cost-benefit. Simulation results have demonstrated the rationality and effectiveness of the collaborative operation of SESS and the MESS under various scenarios.

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