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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 68  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
NC, NLP
(Joint)
2021-01-21
14:50
Online Online A study of segmental transmission line using multi-objective optimization
Hitoshi Kubo, Hideki Asai (Shizuoka Univ.) NLP2020-44
 [more] NLP2020-44
pp.24-27
NLP, NC
(Joint)
2020-01-24
13:10
Okinawa Miyakojima Marine Terminal Optimization of CMOS operational amplifier using MOGA
Hitoshi Kubo (Shizuoka Univ.), Hiroshi Ninomiya (Shonan Inst. of Tech.), Hideki Asai (Shizuoka Univ.) NLP2019-93
Multi-Objective Genetic Algorithm (MOGA) is an extended version of Genetic Algorithm (GA) for problems with multiple obj... [more] NLP2019-93
pp.45-48
NLP, MSS
(Joint)
2019-03-15
14:55
Fukui Bunkyo Camp., Univ. of Fukui On the Influence of Momentum term in quasi-Newton method
Shahrzad Mahboubi (SIT), Indrapriyadarsini s (Shizuoka Univ.), Hiroshi Ninomiya (SIT), Hideki Asai (Shizuoka Univ.) NLP2018-137
The Nesterov's Accelerated quasi-Newton (NAQ) method was derived from the quadratic approximation of the error function ... [more] NLP2018-137
pp.69-74
CS, CAS 2018-03-13
14:05
Fukuoka Nishijin Plaza, Kyushu University Explicit Stabilized Meshless Method for Electromagnetic Analysis
Masahiro Nakamura, Tadatoshi Sekine, Yuta Inoue, Hideki Asai (Shizuoka Univ.) CAS2017-155 CS2017-109
In the meshless method, the computational domain is discretized by nodes, and flexible shapes can be expressed by the no... [more] CAS2017-155 CS2017-109
pp.123-128
CAS, CS 2017-02-24
14:55
Shiga   Fast Electromagnetic Transient Analysis by Stabilized Explicit FETD Method Based on Maxwell's Equations
Yohei Oikawa, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) CAS2016-133 CS2016-94
The finite element time domain (FETD) method using an explicit scheme for time-descretization has to satisfy a stability... [more] CAS2016-133 CS2016-94
pp.105-109
EMCJ, IEE-EMC 2014-12-19
09:35
Shizuoka Shizuoka Univ. Fast Transient Simulation of Non-uniform Distributed Parameter Circuit with Nonlinear Device by Locally Implicit LIM
Shingo Okada, Hideki Asai (Shizuoka Univ.) EMCJ2014-74
Locally Implicit Latency Insertion Method (LILIM) has been proposed as one of the fast transient
simulation methods of ... [more]
EMCJ2014-74
pp.1-6
EMCJ, IEE-EMC 2014-12-19
10:00
Shizuoka Shizuoka Univ. Fast Transient Simulation of the Large Scale Circuit Networks by Using Multi-GPU LIM
Yuta Inoue, Hideki Asai (Shizuoka Univ.) EMCJ2014-75
The latency insertion method (LIM) has been proposed for the fast transient analysis of the large scale network. The LIM... [more] EMCJ2014-75
pp.7-12
EMCJ, IEE-EMC 2014-12-19
16:40
Shizuoka Shizuoka Univ. [Special Talk] SI/PI/EMI Simulation Techniques and Their Exploitation for Chip/Package/Board/Chassis Co-design -- Multi-domain Simulation --
Hideki Asai (Shizuoka Univ.) EMCJ2014-83
With the progress of system integration technology, so-called signal/power integrity (SI/PI) and EMI
(Electromagnetic I... [more]
EMCJ2014-83
p.81
CAS, SIP, MSS, VLD, SIS [detail] 2014-07-10
13:30
Hokkaido Hokkaido University Comparison Between Latency Insertion Method (LIM) and Relaxation Method in Thermal Analysis
Kazuki Sakamoto, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) CAS2014-28 VLD2014-37 SIP2014-49 MSS2014-28 SIS2014-28
This report makes a comparison of effectiveness between the latency insertion method (LIM) and a relaxation method for t... [more] CAS2014-28 VLD2014-37 SIP2014-49 MSS2014-28 SIS2014-28
pp.147-152
CAS, SIP, MSS, VLD, SIS [detail] 2014-07-10
13:50
Hokkaido Hokkaido University Fast Transient Analysis of Non-uniform Distributed Parameter Circuit by Using Stabilized Explicit Method
Kaoru Nakagaki, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) CAS2014-29 VLD2014-38 SIP2014-50 MSS2014-29 SIS2014-29
In general, an explicit method in numerical analysis has a strict stability condition related to a time step size. In th... [more] CAS2014-29 VLD2014-38 SIP2014-50 MSS2014-29 SIS2014-29
pp.153-157
VLD 2014-03-03
13:50
Okinawa Okinawa Seinen Kaikan Fast Simulation of Multilayered Power Distribution Networks by Using Conformal Mesh Model and Block-Type Leapfrog Scheme
Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) VLD2013-136
In this report, we propose an equivalent circuit modeling technique of a multilayered power distribution network based o... [more] VLD2013-136
pp.13-18
VLD 2014-03-04
16:35
Okinawa Okinawa Seinen Kaikan [Memorial Lecture] HIE-Block Latency Insertion Method for Fast Transient Simulation of Nonuniform Multiconductor Transmission Lines
Takahiro Takasaki, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) VLD2013-155
This paper describes a hybrid implicit-explicit block latency insertion method (HIE-block-LIM) for fast simulation of no... [more] VLD2013-155
pp.115-118
EMCJ, WPT
(Joint)
2014-01-30
10:55
Saga Saga Univ. ESD Simulation by LIM/FDTD Hybrid Method
Tsuyoshi Takada, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) EMCJ2013-113
In this paper, we propose the hybrid circuit and full-wave simulation method for electrostatic discharget (ESD) events i... [more] EMCJ2013-113
pp.13-18
CAS, NLP 2013-09-26
12:40
Gifu Satellite Campus, Gifu University Efficient Transient Analysis of 3-D Stacked On-Chip Power Distribution Network with Power/Ground Through Silicon Vias by Using Block Latency Insertion Method
Daisei Nagata, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) CAS2013-36 NLP2013-48
In this report, we apply the block latency insertion method (block-LIM) to the transient analysis of on-chip power distr... [more] CAS2013-36 NLP2013-48
pp.1-6
CAS, NLP 2013-09-26
13:05
Gifu Satellite Campus, Gifu University Multi-Rate Locally Implicit Latency Insertion Method for Fast Transient Analysis of Power Distribution Network
Takaaki Hojo, Shingo Okada, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) CAS2013-37 NLP2013-49
This report describes a multi-rate locally implicit latency insertion method (LILIM) for the fast analysis of power dist... [more] CAS2013-37 NLP2013-49
pp.7-12
EMCJ, IEE-EMC 2013-06-21
13:35
Kyoto Kyoto Univ. A Study of CMRR Measurement System for Power Distribution Interconnection on Printed Circuit Board
Mutsumi Shimazaki (MITSUBISHI ELECTRIC Corp.), Hideki Asai (Shizuoka Univ.) EMCJ2013-19
 [more] EMCJ2013-19
pp.39-44
CAS 2013-01-29
09:00
Oita Beppu International Convention Center Fast Transient Analysis of Lossy Power Distribution Network Based on an Approximate Implicit Method
Yuuki Nakashima, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) CAS2012-79
This report describes the approximate implicit method (AIM) for the fast transient analysis of power distribution networ... [more] CAS2012-79
pp.77-82
CAS 2013-01-29
09:25
Oita Beppu International Convention Center A Study of Electromagnetic Simulation for Fine Structures Based on Constrained Interpolation Profile (CIP) Method
Yuta Sekiguchi, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) CAS2012-80
In this report, we perform electromagnetic simulations with and without fine structures by using the constrained interpo... [more] CAS2012-80
pp.83-88
VLD, DC, IPSJ-SLDM, CPSY, RECONF, ICD, CPM
(Joint) [detail]
2012-11-28
10:55
Fukuoka Centennial Hall Kyushu University School of Medicine Rational Function Approximation Using Vector Fitting and Equivalent Circuit Synthesis of Transmission Line Characteristics
Daisuke Honda, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) VLD2012-92 DC2012-58
This report describes the way how to approximate the frequency response of a transmission line by using a rational funct... [more] VLD2012-92 DC2012-58
pp.189-194
VLD, DC, IPSJ-SLDM, CPSY, RECONF, ICD, CPM
(Joint) [detail]
2012-11-28
13:00
Fukuoka Centennial Hall Kyushu University School of Medicine The Fast Transient Analysis of The Power Distribution Network Modeled by Unstructured Meshes by Using Locally Implicit Latency Insertion Method (LIM)
Shingo Okada, Tadatoshi Sekine, Hideki Asai (Shizuoka Univ.) VLD2012-96 DC2012-62
This paper describes a locally implicit latency insertion method (LILIM), which is suitable for the fast simulation of a... [more] VLD2012-96 DC2012-62
pp.213-218
 Results 1 - 20 of 68  /  [Next]  
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