Q1 2026

Battery depletion time prediction based on T-SPM

Tianlin Shao · Yicheng Duan · Yiming Zhao · Liang Wang · Tiantian Tang
10.1186/s44147-026-01101-8 380 المشاهدات 0 الاقتباسات
0
الاقتباسات
380
المشاهدات
الملخص

Abstract
Dynamic changes in power consumption of mobile devices make it difficult for traditional empirical models to provide accurate State of Charge (SOC) predictions under complex load conditions, leading to serious "range anxiety" problems. Establishing a physically driven dynamic battery model is crucial for optimizing battery management systems (BMS). This article develops a thermally coupled single particle model (T-SPM), which uses Padé approximation method to simplify partial differential equation (PDE) of solid-state lithium ion diffusion into an efficient 5-dimensional ordinary differential equation (ODE) system. It integrates a thermoelectric feedback mechanism based on Arrhenius equation, simulation results show that this reduced order model improves computational efficiency by 1000 times while maintaining physical fidelity, Throughout entire battery life cycle, voltage prediction error remains within 5%, providing a reliable mathematical framework for real-time battery status monitoring.

الاستشهاد بهذا المقال (APA)
Tianlin, S., Yicheng, D., Yiming, Z., Liang, W., Tiantian, T. (2026). Battery depletion time prediction based on T-SPM. Journal of Engineering and Applied Science. https://doi.org/10.1186/s44147-026-01101-8
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الرقم الدولي ISSN 1110-1903
الربعية Q1
درجة المؤشر القياس العربي 100
التخصص Engineering & Technology
الناشر Cairo University, Faculty of Engine
الدولة 🇪🇬 Egypt
عرض ملف المجلة →
المؤلفون
تفاصيل النشر
السنة 2026
اللغة English
أُضيف في 24 Aug 2026