Noninvasive Vehicle-to-Load Energy Management Strategy to Prevent Li-Ion Batteries Premature Degradation

Author:

Rodríguez-Licea Martín-Antonio1ORCID,Perez-Pinal Francisco-J.2ORCID,Soriano-Sánchez Allan-Giovanni1ORCID,Vázquez-López José-Antonio2

Affiliation:

1. CONACYT-Instituto Tecnológico de Celaya, Mexico

2. Laboratorio de Innovación en Electrónica Aplicada, Instituto Tecnológico de Celaya, Mexico

Abstract

Today, electric vehicles available in the market aspire to offer different connections to the end user, for instance, Vehicle to Grid (V2G), Vehicle to Building (V2B), Vehicle to Home (V2H), Vehicle to Vehicle (V2V), and Vehicle to Load (V2L), among others. Notwithstanding these versatility options toward the development of a sustainable society, the additional degradation of the energy storage systems once those operate in extra discharge modes is inevitable. Therefore, in this paper, an energy management strategy (EMS) which operates autonomously and noninvasively as an additional layer to the battery management system (BMS) is proposed. The EMS limits the current flow avoiding high and low temperatures, low state of charge (SoC), high deep of discharge (DoD), noncentered DoD around an optimal SoC point, and high charge and discharge rates. The proposed EMS is evaluated by long-term simulations with a Li-Ion battery degradation model and realistic weather conditions, during standard driving cycles including the V2L operation. The effectiveness and simplicity of tuning of the proposed EMS allow estimating and increasing the life expectancy of the Li-Ion battery bank, by limiting the energy used for V2L operation.

Funder

Tecnológico Nacional de México en Celaya

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Construction of state of charge estimation method for automotive ternary batteries;State Estimation Strategies in Lithium-ion Battery Management Systems;2023

2. An overview of bidirectional electric vehicles charging system as a Vehicle to Anything (V2X) under Cyber–Physical Power System (CPPS);Energy Reports;2022-12

3. Impact of Discharge Current Profiles on Li-ion Battery Pack Degradation;2022 IEEE 20th International Power Electronics and Motion Control Conference (PEMC);2022-09-25

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