← 返回
储能系统技术 储能系统 ★ 4.0

确定寒冷气候下电动汽车最佳电池预热截止温度的系统性方法

A systematic approach for determining the optimal battery preheating cut-off temperature for electric vehicles operating in cold climates

作者 Zhenyi Tao · Cheng Lin · Yu Tian · Peng Xi · Huimin Liu · Hong Zhang
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 383 卷
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★ 4.0 / 5.0
关键词 The effect of preheating cut-off temperature on battery available energy is investigated.
语言:

中文摘要

摘要 在寒冷气候下,由于电池在低温条件下性能下降而引发的续航焦虑,严重阻碍了电动汽车(EV)的广泛普及。电池预热被视为解决这一问题的有效手段。然而,由于需要在不同环境条件、电池状态和车辆功率需求之间权衡预热能耗与电池性能恢复效果,确定合理的预热截止温度仍具挑战性。本研究探讨了预热截止温度对电池可用能量的影响,并提出了一种用于确定最佳电池预热截止温度的系统性方法。同时,本文还设计了一种加热策略,旨在最大化电池可利用能量并满足电动汽车冷启动时的功率需求。结果表明,无论采用何种加热系统,所提出的策略均能显著提升电动汽车在低温环境下的行驶里程。具体而言,在相同驾驶条件下,应用该策略可在−20 °C时将续航里程保持率从68.6%提高至79.5%。该框架有助于加速针对不同类型电动汽车电池预热系统的最优加热策略的开发。

English Abstract

Abstract Range anxiety in cold climates, stemming from batteries' diminished performance at low temperatures, poses a significant barrier to the widespread adoption of electric vehicles (EVs). Battery preheating is regarded as an effective solution to address this issue. However, determining a reasonable preheating cut-off temperature is challenging due to the need to balance heating energy consumption and battery performance recovery across various environments, battery states, and vehicle power demands. This study investigates the effect of preheating cut-off temperature on battery available energy and introduces a systematic approach for determining the optimal battery preheating cut-off temperature. It also proposes a heating strategy aimed at maximizing battery energy and meeting the cold-start power needs of EVs. The results indicate that, regardless of the heating system used, the proposed strategy significantly improves EVs' driving range in low temperatures. Specifically, under the same driving conditions, implementing the proposed strategy can increase the driving range retention rate from 68.6 % to 79.5 % at −20 °C. This framework can facilitate the rapid development of optimal heating strategies for different EV battery preheating systems.
S

SunView 深度解读

该研究对阳光电源储能系统及充电桩产品具有重要价值。电池预热优化策略可直接应用于ST系列PCS的热管理算法,通过精确控制预热截止温度,在PowerTitan等大型储能系统中平衡加热能耗与性能恢复,提升低温环境下的能量利用率。对充电站业务,可开发智能预热功能,结合iSolarCloud平台实现环境自适应的充电策略,优化冬季充电体验。该方法论为阳光电源开发寒冷地区储能及充电解决方案提供了系统化技术路径,可显著提升产品在高纬度市场的竞争力。