New Energy Management Concepts for Hybrid and Electric Powertrains: Considering the Impact of Lithium Battery and Ultracapacitor Aging

F. Assadian, Kevin Mallon, B. Walker
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引用次数: 1

Abstract

During the lifetime of an energy storage system, its health deteriorates from use due to irreversible internal changes to the system. This degradation results in decreased capacity and efficiency of the battery or capacitor. This chapter reviews empirical aging models for lithium-ion battery and ultracapacitor energy storage systems. It will explore how operating conditions like large currents, high temperature, or deep discharge cycles impact the health of the energy storage system. After reviewing aging models, this chapter will then show how these models can be used in vehicle energy management control systems to reduce energy storage system aging. This includes both aging-aware control and control of hybrid energy storage systems (systems that include both a battery and an ultracapacitor).
混合动力和电动动力系统的新能源管理理念:考虑锂电池和超级电容器老化的影响
在储能系统的使用寿命期间,由于储能系统内部发生了不可逆的变化,储能系统的健康状况会因使用而恶化。这种退化导致电池或电容器的容量和效率下降。本章综述了锂离子电池和超级电容器储能系统的经验老化模型。它将探讨像大电流、高温或深放电循环这样的操作条件是如何影响储能系统的健康的。在回顾了老化模型之后,本章将展示如何将这些模型用于车辆能量管理控制系统以减少储能系统的老化。这包括老化感知控制和混合能量存储系统(包括电池和超级电容器的系统)的控制。
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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