Showing 101 - 120 results of 225 for search '"Batteries Not Included"', query time: 0.73s Refine Results
  1. 101

    Thermodynamics of multi-sublattice battery active materials: from an extended regular solution theory to a phase-field model of LiMnyFe1-yPO4 by Ombrini, Pierfrancesco, Bazant, Martin Z, Wagemaker, Marnix, Vasileiadis, Alexandros

    Published 2024
    “…Phase separation during the lithiation of redox-active materials is a critical factor affecting battery performance, including energy density, charging rates, and cycle life. …”
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    Article
  2. 102
  3. 103

    Estimate e-Golf Battery State Using Diagnostic Data and a Digital Twin by Lukas Merkle, Michael Pöthig, Florian Schmid

    Published 2021-02-01
    “…In this work, we set up a data pipeline and digital battery twin to track the battery state, including State of charge (SOC) and State of Health (SOH). …”
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    Article
  4. 104

    Comprehensive behavioural analysis of Long Evans and Sprague-Dawley rats reveals differential effects of housing conditions on tests relevant to neuropsychiatric disorders. by Karly M Turner, Thomas H J Burne

    Published 2014-01-01
    “…Rats were assessed using a comprehensive behavioural test battery and included well-established tests frequently employed to examine animal models of neuropsychiatric diseases, measuring aspects of anxiety, exploration, sensorimotor gating and cognition. …”
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    Article
  5. 105

    Contralateral Cochlear Labyrinthine Concussion without Temporal Bone Fracture: Unusual Posttraumatic Consequence by I. M. Villarreal, D. Méndez, J. M. Duque Silva, P. Ortega del Álamo

    Published 2016-01-01
    “…The temporal bone trauma requires a complete diagnostic battery which includes a neurotologic examination and a high resolution computed tomography scan in the first place. …”
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    Article
  6. 106

    The parametric, psychological, neuropsychological, and neuroanatomical properties of self and world evaluation. by Alan N Simmons, Rachel E Thayer, Andrea D Spadoni, Scott C Matthews, Irina A Strigo, Susan F Tapert

    Published 2012-01-01
    “…A factor analysis was performed on the SWEET and the resultant factors were correlated with psychological, neuropsychological, and neuroanatomical battery that included both T1-wieghted and diffusion tensor magnetic resonance imaging scans.WE DERIVED FOUR FACTORS: Self, Social-Emotional, Financial-Intellectual, and Spirituality. …”
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    Article
  7. 107

    Evaluating Energy Storage Technologies for Electric Vehicles: A Comparative Analysis and Battery Management System Overview by Mishra Heena, Tripathi Abhishek Kumar, Sharma Ayush Kumar, Laxshmi G. Sree

    Published 2024-01-01
    “…The study then conducts a meticulous analysis of key battery attributes, including energy density, power density, capacity, charge/discharge rates, life cycles, and cost per kWh. …”
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    Article
  8. 108

    A Low-Cost Hardware Architecture for EV Battery Cell Characterization Using an IoT-Based Platform by Rafael Martínez-Sánchez, Ángel Molina-García, Alfonso P. Ramallo-González, Juan Sánchez-Valverde, Benito Úbeda-Miñarro

    Published 2023-01-01
    “…For this reason, and with the aim of extending the life of the batteries, even including a second life within electric vehicle applications, this paper describes and evaluates a low-cost system to characterize individual cells of commercial electric vehicle batteries by identifying such abnormally performing cells that are out of use, minimizing regeneration costs in a more sustainable manner. …”
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    Article
  9. 109

    State-of-Charge Balancing Control of a Modular Multilevel Converter with an Integrated Battery Energy Storage by Hui Liang, Long Guo, Junhong Song, Yong Yang, Weige Zhang, Hongfeng Qi

    Published 2018-04-01
    “…By analyzing the power flow characteristics among all sources within the MMC-BESS, a three-level SOC equilibrium control strategy aiming to battery capacity inconsistency is proposed to balance the energy of batteries, which includes SOC balance among three-phase legs, SOC balance between the upper and lower arms of each phase, and SOC balance of submodules within each arm. …”
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    Article
  10. 110

    Data-Driven Modeling and Open-Circuit Voltage Estimation of Lithium-Ion Batteries by Edgar D. Silva-Vera, Jesus E. Valdez-Resendiz, Gerardo Escobar, Daniel Guillen, Julio C. Rosas-Caro, Jose M. Sosa

    Published 2024-09-01
    “…This article presents a data-driven methodology for modeling lithium-ion batteries, which includes the estimation of the open-circuit voltage and state of charge. …”
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    Article
  11. 111

    Enhancing Car Battery Energy Efficiency with Phase Change Material Nanocomposites: A Concise Review by Mohamad Shafagati, Aziz Babapoor, MohammadAli Bamdezh

    Published 2024-01-01
    “…The objective is to comprehensively understand why researchers employ different types of phase change materials (PCMs) in this field and how these materials can influence battery cooling, including factors such as the thermal conductivity of PCMs. …”
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    Article
  12. 112

    Integrated Approach Based on Dual Extended Kalman Filter and Multivariate Autoregressive Model for Predicting Battery Capacity Using Health Indicator and SOC/SOH by Jinhyeong Park, Munsu Lee, Gunwoo Kim, Seongyun Park, Jonghoon Kim

    Published 2020-04-01
    “…To enhance the efficiency of an energy storage system, it is important to predict and estimate the battery state, including the state of charge (SOC) and state of health (SOH). …”
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    Article
  13. 113

    Numerical activities and information learned at home link to the exact numeracy skills in 5 to 6 years-old children by Silvia eBenavides-Varela, Silvia eBenavides-Varela, Brian eButterworth, Francesca eBurgio, Francesca eBurgio, Giorgio eArcara, Daniela eLucangeli, Carlo eSemenza, Carlo eSemenza, Carlo eSemenza

    Published 2016-02-01
    “…In the present study the mathematical performance of 110 children (mean age 5y11m) was evaluated using a battery that included tests of approximate and exact numerical abilities, as well as everyday numerical problems. …”
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    Article
  14. 114

    Ferroelectric-enhanced batteries for rapid charging and improved long-term performance by Qingping Wang, Zane A. Grady, Chris R. Bowen, James I. Roscow

    Published 2025-05-01
    “…Reported mechanisms of ferroelectric-enhanced battery performance include space charge layer modulation to increase ionic conductivity within electrolytes or reduce interfacial resistance between electrode and electrolyte, improved rate kinetics by promoting reactions within the anode or cathode, improved battery stability, and the mitigation of polysulfide shuttling effects in lithium-sulfur batteries. …”
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    Article
  15. 115

    Implantable Pulse Generators for Deep Brain Stimulation: Challenges, Complications, and Strategies for Practicality and Longevity by Can Sarica, Christian Iorio-Morin, Christian Iorio-Morin, David H. Aguirre-Padilla, David H. Aguirre-Padilla, Ahmed Najjar, Ahmed Najjar, Michelle Paff, Michelle Paff, Anton Fomenko, Kazuaki Yamamoto, Ajmal Zemmar, Ajmal Zemmar, Ajmal Zemmar, Nir Lipsman, George M. Ibrahim, Clement Hamani, Clement Hamani, Mojgan Hodaie, Mojgan Hodaie, Mojgan Hodaie, Andres M. Lozano, Andres M. Lozano, Andres M. Lozano, Renato P. Munhoz, Renato P. Munhoz, Alfonso Fasano, Alfonso Fasano, Alfonso Fasano, Suneil K. Kalia, Suneil K. Kalia, Suneil K. Kalia, Suneil K. Kalia

    Published 2021-08-01
    “…Strategies correlating positively with decreased complications include antibiotic impregnation and co-administration and other surgical considerations during IPG implantation such as the use of tack-up sutures and smaller profile devices.Strategies aimed at maximizing battery longevity include patient-related elements such as reliability of IPG recharging or consistency of nightly device shutoff, and device-specific such as parameter delivery, choice of lead configuration, implantation location, and careful selection of electrode materials to minimize impedance mismatch. …”
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  16. 116

    Economic analysis of lithium-ion battery recycling by Eduardo Enrique Martinez Jorges, António M.N. Quintino, Diogo M.F. Santos

    Published 2023-10-01
    “…This work compares the benefits, economic advantages and disadvantages of battery recycling, including second-life battery applications. …”
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    Article
  17. 117

    A Review of the Applications of Explainable Machine Learning for Lithium–Ion Batteries: From Production to State and Performance Estimation by Mona Faraji Niri, Koorosh Aslansefat, Sajedeh Haghi, Mojgan Hashemian, Rüdiger Daub, James Marco

    Published 2023-09-01
    “…This paper addresses the latest developments in explainable machine learning known as XML and its application to lithium–ion batteries. It includes a critical review of the XML in the manufacturing and production phase, and then later, when the battery is in use, for its state estimation and control. …”
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    Article
  18. 118

    2D Combustion Modeling of Cell Venting Gas in a Lithium-Ion Battery Pack by Yuanying Zhang, Enhua Wang, Cheng Li, Hewu Wang

    Published 2022-07-01
    “…Next, the effects of the initial conditions inside the battery pack, including the pressure, temperature, and excess air coefficient, on the flame propagation process and pressure variation are evaluated. …”
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    Article
  19. 119

    Structural Optimization and Thermal Management with PCM-Honeycomb Combination for Photovoltaic-Battery Integrated System by Xinxi Li, Jiangyun Zhang, Dequan Zhou, Guoqing Zhang, Hongwei Wu, Rensheng Liu

    Published 2022-01-01
    “…Three types of PV battery systems including the general PV–battery integrated system (G–PBIS), honeycomb PV–battery integrated system (H–PBIS), and honeycomb–paraffin PV–battery integrated system (HP–PBIS) have been investigated in detail. …”
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    Article
  20. 120

    Challenges of Fast Charging for Electric Vehicles and the Role of Red Phosphorous as Anode Material: Review by Hong Zhao, Li Wang, Zonghai Chen, Xiangming He

    Published 2019-10-01
    “…Nevertheless, it is a complicated and systematized challenge to realize the fast charging of EVs because it includes the coordinated development of battery cells, including electrode materials, EV battery power systems, charging piles, electric grids, etc. …”
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    Article