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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 45  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
ICTSSL, CAS 2024-01-26
09:30
Kanagawa
(Primary: On-site, Secondary: Online)
Development of a remote monitoring system for lithium-ion batteries by using IoT and real-time processing
Kosuke Shibuya, Masahiro Fukui (Ritsumeikan Univ.) CAS2023-97 ICTSSL2023-50
In the context of the rapid proliferation of electric vehicles and challenges such as shortages and price increases in r... [more] CAS2023-97 ICTSSL2023-50
pp.70-75
EE, CPM, OME 2023-12-08
10:30
Tokyo Kikai-Shinko-Kaikan Bldg.
(Primary: On-site, Secondary: Online)
Highly Expandable Modular Selective Voltage Equalizer for Large-Scale Energy Storage Systems
Wangcheng Dai, Masatoshi Uno (Ibaraki Univ.) EE2023-25 CPM2023-81 OME2023-52
Large-scale energy storage systems consisting of multiple lithium-ion battery modules require modular voltage equalizer ... [more] EE2023-25 CPM2023-81 OME2023-52
pp.6-11
EE, CPM, OME 2023-12-08
11:20
Tokyo Kikai-Shinko-Kaikan Bldg.
(Primary: On-site, Secondary: Online)
Driving Methods to Improve RMS Value of Heating Current in DAB Converter with Internal AC Heating Capability for EV Batteries and Its Study
Hyoga Hiranuma, Masatoshi Uno (IU) EE2023-27 CPM2023-83 OME2023-54
Internal ac heating techniques utiling sinusoidal-wave current have attracted significant research attention as an effic... [more] EE2023-27 CPM2023-83 OME2023-54
pp.18-23
NLP, MICT, MBE, NC
(Joint) [detail]
2022-01-21
16:25
Online Online Lithium-ion Battery Internal Impedance Estimation and Evaluation of Deterioration Analysis Using Machine Learning
Nishimura Yuichiro, Ito Hideaki, Fukui Masahiro (Ritsumeikan Univ) NLP2021-90 MICT2021-65 MBE2021-51
Electrochemical Impedance Spectroscopy analysis is known to be effective as a conventional state analysis technique for ... [more] NLP2021-90 MICT2021-65 MBE2021-51
pp.71-76
NLP, MICT, MBE, NC
(Joint) [detail]
2022-01-21
16:50
Online Online Open circuit voltage estimation and evaluation of lithium-ion batteries using machine learning models
Hideaki Ito, Shohei Irikuchi, Yuuichiro Nishimura, Masahiro Fukui (Ritsumeikan Univ) NLP2021-91 MICT2021-66 MBE2021-52
The open circuit voltage (OCV) of a lithium-ion battery is a necessary parameter for calculating the degradation state a... [more] NLP2021-91 MICT2021-66 MBE2021-52
pp.77-82
EE, OME, CPM 2021-11-18
09:45
Online Online DAB Converter with Trapezoidal Wave Heating Capability to Shorten Heating Time for Lithium-Ion Battery of Electric Vehicles
Yuta Sasama, Masatoshi Uno (Ibaraki Univ.) EE2021-19 CPM2021-37 OME2021-13
(To be available after the conference date) [more] EE2021-19 CPM2021-37 OME2021-13
pp.6-11
CAS, NLP 2021-10-14
10:00
Online Online Study on Improvement of Accuracy of Lithium-ion Battery Charge Rate Estimation Using Kalman filter
Keiichirou Suzuki, Syuusei Ota, Takahiro Siohara, Masahiro Fukui (Ritsumeikan Univ.) CAS2021-17 NLP2021-15
In recent years, decarbonization has been promoted due to environmental concerns. Therefore, the demand for lithium-ion ... [more] CAS2021-17 NLP2021-15
pp.1-6
EE, WPT
(Joint)
2021-10-06
09:55
Online Online Experimental Verification of Cell Voltage Equalizer with AC Heating Capability for Lithium-ion Batteries in Electric Vehicles
Reona Sugaya, Masatoshi Uno (Ibaraki Univ.) EE2021-16
A cell voltage equalizer is indispensable for lithium-ion batteries (LIB) in electric vehicles to mitigate a cell voltag... [more] EE2021-16
pp.23-28
CAS, ICTSSL 2021-01-29
15:15
Online Online A Study of Initial Value Setting Strategy for Adaptive Extended Kalman Filter
Kento Tsuneda, Takahiro Shiohara, Masahiro Fukui (Rits Univ) CAS2020-68 ICTSSL2020-53
With the spread of Lithium-ion Batteries, battery management systems that protect and manage batteries have become impor... [more] CAS2020-68 ICTSSL2020-53
pp.152-157
EE 2020-01-15
15:30
Kagoshima HOUZAN HALL Modular Equalization System Using Dual Phase-Shift-Controlled Capacitively-Isolated DAB Converter to Equalize Cells and Modules Voltage of Lithium-Ion Batteries
Koji Yoshino, Masatoshi Uno (Ibaraki Univ.) EE2019-59
Energy storage systems comprising series-connected lithium-ion battery modules need not only cell equalizers but also mo... [more] EE2019-59
pp.61-66
EE, OME, CPM 2019-11-26
14:50
Tokyo Japan Society for the Promotiton of Machine Industry Electrical Power Demand Prediction for Optimizing Balance of Power Demand and Supply in Radio Base Station
Difei Miyao, Masaki Nakamura, Masayuki Terada, Kazuhiko Takeno (NTT Docomo) EE2019-45 CPM2019-87 OME2019-31
In recent years, the adjustment of power supply and demand is a big issue from the separation of electrical power produc... [more] EE2019-45 CPM2019-87 OME2019-31
pp.53-55
WPT, EE
(Joint)
2019-10-09
10:35
Shiga Ryukoku Extension Center, Ryukoku University Bi-directional Multiport Converter for Utilizing Green Base Stations
Masaki Nakamura, Kazuhiko Takeno (NTT DOCOMO, Inc.), Ryota Hisamitsu, Masahito Shoyama (Kyushu Univ.) EE2019-29
In recent years, virtual power plant mechanisms that contribute to adjusting the power supply and demand by integrating ... [more] EE2019-29
pp.19-21
EE, IEE-HCA 2019-05-17
14:00
Tokyo Kikai-Shinko-Kaikan Bldg. Cell Voltage Equalizer with Embedded Switch Module for Lithium-Ion Batteries -- Circuit Simplification by Halving Switch Count --
Teruhisa Ueno, Koji Yoshino, Masatoshi Uno (Ibaraki Univ.) EE2019-14
Cell voltage equalizers using an isolated converter and cell selection switch module have been used for lithium-ion batt... [more] EE2019-14
pp.89-94
MSS, CAS, IPSJ-AL [detail] 2018-11-13
13:50
Shizuoka   A Study of Degradation Diagnosis of Lithium-ion Battery Using Neural Networks
Masahito Arima, Lei Lin, Masahiro Fukui (Ritsumeikan Univ.) CAS2018-73 MSS2018-49
The battery aggregation of lithium-ion battery is studied in order to solve the problem of output fluctuation and time m... [more] CAS2018-73 MSS2018-49
pp.111-114
CAS, SIP, MSS, VLD 2018-06-15
14:20
Hokkaido Hokkaido Univ. (Frontier Research in Applied Sciences Build.) A Method of the Degradation Diagnosis by the Using State of Lithium-ion Battery Modules.
Masahito Arima, Lei Lin, Masahiro Fukui (Ritsumeikan Univ.) CAS2018-27 VLD2018-30 SIP2018-47 MSS2018-27
The battery aggregation is studied for effective use of energy by operating the distributed lithium-ion batteries. Becau... [more] CAS2018-27 VLD2018-30 SIP2018-47 MSS2018-27
pp.137-142
EE, IEE-HCA 2017-05-26
15:40
Tokyo The Kikai Shinko Kaikan building Cooperative Control Assuming Power Interchange for Green Base Stations
Masaki Nakamura, Kazuaki Kimura, Kazuhiko Takeno (NTT DOCOMO, Inc.) EE2017-8
Recent years have seen a full-scale rollout of green base stations applying environmentally friendly equipmentsuch as so... [more] EE2017-8
pp.75-79
EE 2017-01-26
09:30
Nagasaki Nagasaki University Weathercast-linked Control of Lithium-Ion Battery in Green Base Stations
Masaki Nakamura, Kazuaki Kimura, Kazuhiko Takeno (NTT DOCOMO, Inc.) EE2016-49
Recent years have seen a full-scale rollout of green base stations applying environmentally friendly equipment such as s... [more] EE2016-49
pp.7-8
EE, WPT
(Joint)
2016-10-06
11:05
Kyoto   An efficiency control technology of the magnetic field resonance type WPT system which optimizes storage battery charge
Yuto Honda, Yoshiki Tsuchida, Masahiro Fukui (Ritsumeikan Univ.) WPT2016-20
This paper describes the optimum magnetic field resonance type wireless power transmission system to the charging of the... [more] WPT2016-20
pp.1-6
EE 2016-02-26
14:20
Tokyo Kikai-Shinko-Kaikan Bldg. A study and evaluation for optimal wireless power transfer to battery charge
Yuto Honda, Lei Lin, Masahiro Fukui (Ritsumeikan Univ.) EE2015-32
In this paper we describe the evaluation and consideration of the optimal wireless power feeding system for the storage ... [more] EE2015-32
pp.13-18
EE 2016-02-26
15:25
Tokyo Kikai-Shinko-Kaikan Bldg. Study on power control system for Green-BTS
Masaki Nakamura, Kazuaki Kimura, Kazuhiko Takeno (NTT DOCOMO, Inc.) EE2015-34
Reducing environmental impact by base stations is an urgent requirement. We envision “Green BTS” which is a base station... [more] EE2015-34
pp.25-29
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