Academia Sinica · Research Lithium sulfur battery (LSB) has been considered as a promising candidate for next-generation energy storage systems, due to its high theoretical specific capacity
O. Erdinc, B. Vural, and M. Uzunoglu, ''A dynamic lithium-ion battery model considering the effects of temperature and capacity fading'', in 2009 International Conference on Clean Electrical Power, 2009, pp. 383–386. K. A. Smith, C. D. Rahn, and C.-Y. Wang, ''Control oriented 1D electrochemical model of lithium ion battery'', Energy Convers.
IEEE/CAA Journal of Automatica Sinica, 2023. Any fault of a battery system that is not handled timely can cause catastrophic consequences. Therefore, it is significant to diagnose battery faults early and accurately. An Intelligent Fault Diagnosis Method for Lithium Battery Systems Based on Grid Search Support Vector Machine. Energy 2021
2023 Career Development Award, Academia Sinica; 2019 Scholarship for Postdoctoral Fellow, National Science and Technology Council; 2018 Outstanding Award, Chinese Chemical Society; 2018 Yan''s Award of Thesis, National
Academia Sinica 跳到主要內容區塊. Close. 搜尋 Therefore, innovative battery chemistry that goes beyond lithium-ion is needed, as well as the discovery and design of new materials that can be domestically produced to make safe, sustainable, fast-charging batteries at terawatt scale. In this seminar, I will begin with an overview of
Scholars Hub of the Academia Sinica; Microstructural intra-granular cracking in Cu2ZnSnS4@C thin-film anode enhanced the electrochemical performance in lithium-ion battery applications: Authors: Venugopal, Boya Shown, Indrajit Samireddi, Satyanarayana Syum, Zeru Krishnamoorthy, Vimal Wu, Heng-Liang Chu, Chih-Wei
IEEE/CAA Journal of Automatica Sinica, 2016, 3(3): 281-287. download Download free PDF View PDF chevron_right. Improved state of charge estimation for Li-ion batteries using fractional order extended Kalman filter. Lithium-ion
Lithium-ion batteries stand at the forefront of energy storage technologies, facilitating the transition towards sustainable and electrified systems. Academia Sinica, Taipei 115, Taiwan E-mail: febri_baskoro@yahoo .id Although inorganic materials have been dominant in the current lithium-ion battery cathodes, the widely utilized
Strategic Structural Design of a Gel Polymer Electrolyte toward a High Efficiency Lithium-Ion Battery. febri baskoro. 2019, ACS Applied Energy Materials. Academia Biology, 2023. Introduction: Sesamum alatum is a herb, sometimes considered a weed, common in African and Asian countries. It is used as a food and medicine but receives little
Downloadable! The specific capacity of commercially available cathode carbon-coated lithium iron phosphate is typically 120–160 mAh g−1, which is lower than the theoretical value 170 mAh g−1. Here we report that the carbon-coated lithium iron phosphate, surface-modified with 2 wt% of the electrochemically exfoliated graphene layers, is able to reach 208 mAh g−1 in specific capacity.
Scholars Hub of the Academia Sinica; Title: A green recyclable Li3VO4-pectin electrode exhibiting pseudocapacitive effect as an advanced anode for lithium-ion battery: Authors: Su, Yu-Hsuan Chung, Chin-Yi Chen, Yan-Ruei Wu, Feng-Yu Lin, Ya-Huei Chi, Po-Wei Wu, Phillip M. Paul, Tanmoy Lin, Hwai-En Chang-Liao, Kuei-Shu Wang, Sea-Fue Wu, Maw
This paper aims at presenting a critical review of the state-of-the-art AIbased manufacturing and management strategies towards long lifetime battery. First, AI-based battery manufacturing and smart battery to benefit battery health are
Lithium ion battery (LIB) has been in existence since more than four decades and was largely established by John Goodenough, Stanley Whittingham and Akira Yoshino for which they won
Lithium sulfur battery (LSB) has been considered as a promising candidate for next-generation energy storage systems, due to its high theoretical specific capacity (1675mAh/g).
This paper presents a new battery state-ofcharge (SOC) estimation method for lithium-ion batteries (LIBs) based on a nonlinear fractional model with incommensurate differentiation orders.
The hysteresis effect can be seen as a path-dependent effect or history-dependent effect on the lithium ion battery. This effect Sinica. In this paper, a state of charge (SOC) estimation approach for lithium-ion battery based on
644 IEEE/CAA JOURNAL OF AUTOMATICA SINICA, VOL. 5, NO. 2, MARCH 2018 Letter to the Editor Re "Fractional Modeling and SOC Estimation of Lithium-ion Battery" Rahat Hasan and Jonathan Scott, Senior Member, IEEE Recent paper by Ma et al., claims to estimate the state of charge of Lithium-ion batteries with a fractionalorder impedance model including a Warburg
Therefore, innovative battery chemistry that goes beyond lithium-ion is needed, as well as the discovery and design of new materials that can be domestically produced to make safe,
Post-doctoral fellow at Academia Sinica · Pursued a long research career with specific interest in battery materials. Hands-on experience in development of anode, surface modification of cathode, ceramic and polymer solid electrolyte for both liquid and solid as well as lithium and sodium systems. · 工作經歷:Academia Sinica · 教育背景:National Chung Hsing University · 地點
Nano Science and Technology Program, Taiwan International Graduate Program, Academia Sinica, 128, Section 2, Academia Road, Taipei 11529, Taiwan. Department of Engineering and System Science, National Tsing Hua University In order to assess the potential of pectin polymers for use in lithium-ion battery electrodes,
ACTA PHYSICO-CHIMICA SINICA. This mathematical model, validated by the experimental data,36 can reproduce realistic microstructures of lithium-ion battery anodes, which can be used in other models related for simulation of percolative transport of intercalant. A detailed description of the model and simulation algorithm can be found in Refs
This letter presents battery full life cycle management and health prognosis based on cloud service and broad learning. Specifically, a cloud-based framework for battery full life cycle management is presented. Then, the broad learning method is
A stable silicon/graphene composite using solvent exchange method as anode material for lithium ion batteries Deniz P. Wong a,c,d, Han-Ping Tseng e, Yit-Tsong Chen b,c, Bing-Joe Hwang e, Li-Chyong Chen a,*, Kuei-Hsien Chen a,b,* a Center for Condensed Matter Sciences, National Taiwan University, No. 1 Sec. 4, Roosevelt Rd., Taipei 10617, Taiwan b Institute of Atomic
Febri Baskoro, Hui Qi Wong, Hung-Ju Yen* Strategic Structural Design of a Gel Polymer Electrolyte toward a High Efficiency Lithium-Ion Battery. ACS APPLIED ENERGY MATERIALS 2019-06-24, 2(6), 3937-3971. Hung-Ju Yen*, Guey
Microstructural intra-granular cracking in Cu 2 ZnSnS 4 @C thin-film anode enhanced the electrochemical performance in lithium-ion battery applications†. Boya Venugopal abc, Indrajit Shown
IEEE/CAA Journal of Automatica Sinica, 2022. Technologies that accelerate the delivery of reliable battery-based energy storage will not only contribute to decarbonization such as transportation electrification, smart grid, but also strengthen the battery supply chain.
Fault detection/diagnosis has become a crucial function of the battery management system (BMS) due to the increasing application of lithium-ion batteries (LIBs) in highly sophisticated and high
Febri is an Academia Sinica postdoctoral research fellow at Academia Sinica, Taiwan. Currently, he works on the development of high-performance functional materials for next-generation organic
Although inorganic materials have been dominant in the current lithium-ion battery cathodes, the widely utilized inorganic cathode materials suffer from drawbacks, such as limited capacity, high energy Academia Sinica Postdoctoral Research Fellow in the Institute of Chemistry, Academia Sinica, Taiwan, under the guidance of Dr
a Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 10617, Taiwan E-mail: indrajit25@gmail Microstructural intra-granular cracking in Cu 2 ZnSnS 4 @C thin-film anode enhanced the electrochemical performance in lithium-ion battery applications
The lithium-ion battery has high energy and power density, long life cycle, low toxicity, low discharge rate, more reliability, and better efficiency compared to other batteries. IEEE/CAA J. Autom. Sinica. IEEE/CAA Journal of Automatica Sinica, 2019. download Download free PDF View PDF chevron_right. Desigualdade, mentalidade autoritária e
The design functions of lithium-ion batteries are tailored to meet the needs of specific applications. It is crucial to obtain an in-depth understanding of the design, preparation/ modification, and characterization of the separator
As the use of Lithium-ion batteries continues to grow, it becomes increasingly important to be able to predict their remaining useful life. This work aims to compare the relative performance of different machine learning algorithms, both traditional Forecasting Lithium-Ion Battery Longevity with Limited Data Availability: Benchmarking
Li-ion batteries are highly advanced as compared to any other commercially available rechargeable batteries due to their gravimetric and volumetric energy. With the rise of the electric vehicle market, battery management systems play a key role in the industry to deliver finer performance and support longer ranges.
This article presents an experimental study for the artificial intelligence (AI)-based data-driven prediction of lithium battery parameters SOC and SOH with the help of deep learning algorithms such as Long Short-Term Memory (LSTM) and bidirectional LSTM (BiLSTM).
Experimental results of short-term charging and long-term ageing disclose that the battery can be charged rapidly without violating the defined physical constraints by using the DDPG policy. Moreover, the Li-ion battery lifetime was extended by 14.8% with an equivalent charging speed, in comparison with the benchmarked 6C charging strategy.
Due to the superiority of high energy density and low selfdischarging rate, lithium-ion (Li-ion) battery has been widely utilized as an efficient energy storage technology in many applications from small electrical devices (i.e., mobile phone, laptop) to large ones (i.e., electrical vehicle (EV), electrical ship, electrical plane) , .
Jiang, C. P. Zhang, J. P. Wen, W. G. Zhang, and S. M. Sharkh, “An optimal charging method for Li-ion batteries using a fuzzy-control approach based on polarization properties,” IEEE Trans. Veh.
The battery degradation model can be established by using SVM to formulate a statespace function covering battery capacity . In summary, SVM presents good performance to cope with small-sample problems, nonlinear characteristics, and highdimensional issues. Therefore, it is an effective choice for estimating battery SOH.
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