default search action
Michihiro Kawanishi
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j10]Wen-Chieh Chen, Michihiro Kawanishi, Chian-Yu Lu, Syu-You Ciou, Chun-Liang Lin, Cheng-Hsin Hsu:
Cooperative Load Transportation of Multi-Drones Based on Disturbance Observer and Formation Control. IEEE Access 12: 77393-77405 (2024) - 2021
- [j9]Binh-Minh Nguyen, João Pedro Fernandes Trovão, Minh C. Ta, Michihiro Kawanishi:
Longitudinal Motion Control of Electric Vehicles: Glocal Model and Design Using Passivity. IEEE Veh. Technol. Mag. 16(3): 75-86 (2021) - [c38]Binh-Minh Nguyen, Michihiro Kawanishi, Shinji Hara, Hung Nguyen-Van, Minh C. Ta, João Pedro F. Trovão, Tatsuo Narikiyo:
Passivity Based Hierarchically Decentralized Range Extension Control of In-wheel-motor Vehicles. ICM 2021: 1-6 - [c37]Binh-Minh Nguyen, Michihiro Kawanishi, Daichi Hasegawa, Kento Ohara, Tatsuo Narikiyo:
Disturbance Observer Based Glocal Control of Mechatronics Systems: A Passivity Approach. ICM 2021: 1-6 - [c36]Binh-Minh Nguyen, Michihiro Kawanishi, Tetsuya Kobayashi, Kazuhiro Sekitani, Tatsuo Narikiyo:
Absolute Stability of Disturbance Observer Based Altitude Control for Multirotor Flying Vehicles. ISIE 2021: 1-6 - 2020
- [i4]Binh-Minh Nguyen, Ngoc Tran-Huynh, Michihiro Kawanishi, Tatsuo Narikiyo:
A Discussion on Stabilization of Frequency Control for Power Systems. CoRR abs/2010.05389 (2020)
2010 – 2019
- 2019
- [j8]Hamed Jabbari Asl, Tatsuo Narikiyo, Michihiro Kawanishi:
RISE-based prescribed performance control of Euler-Lagrange systems. J. Frankl. Inst. 356(13): 7144-7163 (2019) - [j7]Somar Boubou, Hamed Jabbari Asl, Tatsuo Narikiyo, Michihiro Kawanishi:
Real-time Recognition and Pursuit in Robots Based on 3D Depth Data. J. Intell. Robotic Syst. 93(3-4): 587-600 (2019) - [j6]Hamed Jabbari Asl, Tatsuo Narikiyo, Michihiro Kawanishi:
Saturated input consensus algorithms for perturbed double-integrator systems without velocity measurements. Syst. Control. Lett. 133 (2019) - [c35]Somar Boubou, Tatsuo Narikiyo, Michihiro Kawanishi:
A Hierarchical Segmentation Approach with Convolution-Recursive Deep Learning for 3D Multi-Object Recognition under Partial Occlusion Conditions. MVA 2019: 1-6 - 2018
- [j5]Dinh Hoa Nguyen, Tatsuo Narikiyo, Michihiro Kawanishi:
Robust Consensus Analysis and Design Under Relative State Constraints or Uncertainties. IEEE Trans. Autom. Control. 63(6): 1694-1700 (2018) - [j4]Dinh Hoa Nguyen, Tatsuo Narikiyo, Michihiro Kawanishi:
Optimal Demand Response and Real-Time Pricing by a Sequential Distributed Consensus-Based ADMM Approach. IEEE Trans. Smart Grid 9(5): 4964-4974 (2018) - [c34]Hamed Jabbari Asl, Tatsuo Narikiyo, Michihiro Kawanishi:
An Assist-as-Needed Velocity Field Control Scheme for Rehabilitation Robots. IROS 2018: 3322-3327 - 2017
- [c33]Somar Boubou, Tatsuo Narikiyo, Michihiro Kawanishi:
Adaptive filter for denoising 3D data captured by depth sensors. 3DTV-Conference 2017: 1-4 - [c32]Somar Boubou, Tatsuo Narikiyo, Michihiro Kawanishi:
Object recognition from 3D depth data with Extreme Learning Machine and Local Receptive Field. AIM 2017: 394-399 - [c31]Hamed Jabbari Asl, Tatsuo Narikiyo, Michihiro Kawanishi:
Neural network velocity field control of robotic exoskeletons with bounded input. AIM 2017: 1363-1368 - [c30]Hamed Jabbari Asl, Tatsuo Narikiyo, Michihiro Kawanishi:
An assist-as-needed control scheme for robot-assisted rehabilitation. ACC 2017: 198-203 - [c29]Dinh Hoa Nguyen, Huynh Ngoc Tran, Tatsuo Narikiyo, Michihiro Kawanishi:
A Lyapunov approach for transient stability analysis of droop inverter-based mesh microgrids using line-based model. CCTA 2017: 1655-1660 - [c28]Hamed Jabbari Asl, Tatsuo Narikiyo, Michihiro Kawanishi:
Prescribed performance velocity field control of robotic exoskeletons with neural network. ROBIO 2017: 2704-2709 - 2016
- [j3]Aneesh N. Chand, Michihiro Kawanishi, Tatsuo Narikiyo:
Adaptive pole placement pitch angle control of a flapping-wing flying robot. Adv. Robotics 30(16): 1039-1049 (2016) - [c27]Dinh Hoa Nguyen, Tatsuo Narikiyo, Michihiro Kawanishi:
Multi-agent system consensus under input and state constraints. ECC 2016: 537-542 - [c26]Somar Boubou, Tatsuo Narikiyo, Michihiro Kawanishi:
Differential Histogram of Normal Vectors for Object Recognition with Depth Sensors. ICARSC 2016: 162-167 - [c25]Aneesh N. Chand, Michihiro Kawanishi, Tatsuo Narikiyo:
Non-linear model-free control of flapping wing flying robot using iPID. ICRA 2016: 2930-2937 - [i3]Dinh Hoa Nguyen, Tatsuo Narikiyo, Michihiro Kawanishi:
Robust Consensus Analysis and Design under Relative State Constraints or Uncertainties. CoRR abs/1605.03647 (2016) - [i2]Dinh Hoa Nguyen, Tatsuo Narikiyo, Michihiro Kawanishi:
Robust Consensus of Linear Multi-Agent Systems under Input Constraints or Uncertainties. CoRR abs/1605.03648 (2016) - [i1]Dinh Hoa Nguyen, Tatsuo Narikiyo, Michihiro Kawanishi, Shinji Hara:
Hierarchical Decentralized Robust Optimal Design for Homogeneous Linear Multi-Agent Systems. CoRR abs/1607.01848 (2016) - 2015
- [j2]Yuta Tsuge, Tatsuo Narikiyo, Michihiro Kawanishi:
Controller Design for non-linear Descriptor Systems using Particle Swarm Optimization. Control. Intell. Syst. 43(3) (2015) - [j1]Barkan Ugurlu, Masayoshi Nishimura, Kazuyuki Hyodo, Michihiro Kawanishi, Tatsuo Narikiyo:
Proof of Concept for Robot-Aided Upper Limb Rehabilitation Using Disturbance Observers. IEEE Trans. Hum. Mach. Syst. 45(1): 110-118 (2015) - [c24]Dinh Hoa Nguyen, Tatsuo Narikiyo, Michihiro Kawanishi:
A novel distributed optimal approach to power coordination in wind power plants. CCA 2015: 1008-1013 - [c23]Aneesh N. Chand, Michihiro Kawanishi, Tatsuo Narikiyo:
Parameter estimation for the pitching dynamics of a flapping-wing flying robot. AIM 2015: 1552-1558 - [c22]Dinh Hoa Nguyen, Tatsuo Narikiyo, Michihiro Kawanishi:
Output consensus design for heterogeneous nonlinear multi-agent systems with application to smart grids. CDC 2015: 3627-3632 - [c21]Hang Pham, Michihiro Kawanishi, Tatsuo Narikiyo:
A LLE-HMM-based framework for recognizing human gait movement from EMG. ICRA 2015: 2997-3002 - [c20]Yuto Yoshimura, Tomoaki Kondo, Michihiro Kawanishi, Tatsuo Narikiyo, Akinori Sato:
Model predictive control of EV storage battery with HEMS based on particle swarm optimization. ISGT Asia 2015: 1-5 - 2014
- [c19]Tadasuke Matsuda, Hajime Matsui, Michihiro Kawanishi, Tatsuo Narikiyo:
Computational complexity of robust schur stability analysis by the generalized stability feeler. AuCC 2014: 55-59 - [c18]Masatoshi Kimura, Hang Pham, Michihiro Kawanishi, Tatsuo Narikiyo:
EMG-force-sensorless power assist system control based on Multi-Class Support Vector Machine. ICCA 2014: 284-289 - [c17]Yuta Tsuge, Michihiro Kawanishi, Tatsuo Narikiyo, Tanagorn Jennawasin:
Nonlinear controller design based on polynomial and non-polynomial representation. ICCA 2014: 831-838 - [c16]Tanagorn Jennawasin, Michihiro Kawanishi, Tatsuo Narikiyo, Chun-Liang Lin:
Guaranteed cost synthesis for polynomial systems using rational Lyapunov functions. ICCA 2014: 839-842 - [c15]Ebubekir Avci, Masanori Kenmochi, Michihiro Kawanishi, Tatsuo Narikiyo, Shinji Kawakami, Yumi Saitoh:
Vibration control of 3P(S)4 class parallel mechanisms for high speed applications using Quantitative Feedback Design. IROS 2014: 1710-1715 - [c14]Masanori Kenmochi, Ebubekir Avci, Michihiro Kawanishi, Tatsuo Narikiyo, Shinji Kawakami, Yumi Saitoh:
Robust position control of Delta Parallel mechanisms using dynamic model and QFT. ISIE 2014: 1256-1261 - [c13]Aneesh N. Chand, Michihiro Kawanishi, Tatsuo Narikiyo:
Feed-forward trajectory specification for flapping-wing flying robot. URAI 2014: 246-252 - [c12]Aneesh N. Chand, Michihiro Kawanishi, Tatsuo Narikiyo:
Fast parallel parking for autonomous vehicles using Gompertz curves. URAI 2014: 572-578 - 2013
- [c11]Kana Kotaka, Barkan Ugurlu, Michihiro Kawanishi, Tatsuo Narikiyo:
Prototype development and real-time trot-running implementation of a quadruped robot: RoboCat-1. ICM 2013: 604-609 - 2012
- [c10]Tanagorn Jennawasin, Michihiro Kawanishi, Tatsuo Narikiyo, Chun-Liang Lin:
An improved stabilizing condition for polynomial systems with bounded actuators: An SOS-based approach. ISIC 2012: 258-263 - [c9]Barkan Ugurlu, Masayoshi Nishimura, Kazuyuki Hyodo, Michihiro Kawanishi, Tatsuo Narikiyo:
A framework for sensorless torque estimation and control in wearable exoskeletons. AMC 2012: 1-7 - [c8]Michihiro Kawanishi, Tatsuo Narikiyo, Shi-Jia Pei, Hayato Kubota:
Feedback control for steering support system based on flatness and quantum particle swarm optimization. CDC 2012: 4372-4377 - [c7]Barkan Ugurlu, Takao Kawasaki, Michihiro Kawanishi, Tatsuo Narikiyo:
Continuous and dynamically equilibrated one-legged running experiments: Motion generation and indirect force feedback control. IROS 2012: 1846-1852 - 2011
- [c6]Tanagorn Jennawasin, Michihiro Kawanishi, Tatsuo Narikiyo:
Optimal control of polynomial systems with performance bounds: A convex optimization approach. ACC 2011: 281-286 - 2010
- [c5]Tanagorn Jennawasin, Michihiro Kawanishi, Tatsuo Narikiyo:
Exactness verification of sum-of-squares approximations to robust semidefinite programs with functional variables. ACC 2010: 4095-4100 - [c4]Tadasuke Matsuda, Michihiro Kawanishi, Tatsuo Narikiyo:
Computation method for complete D-stability intervals of a class of matrices based on generalization of the stability feeler. CDC 2010: 1454-1459
2000 – 2009
- 2008
- [c3]Tatsuo Narikiyo, Masanori Sakata, Michihiro Kawanishi:
Attitude control of a flexible planar space robot. CDC 2008: 596-601 - 2007
- [c2]Michihiro Kawanishi, Yoshiya Shibata:
BMI Global Optimization using Parallel Branch and Bound Method with a Novel Branching Method. ACC 2007: 1664-1669 - 2005
- [c1]Michihiro Kawanishi, Yuu Ikuyama:
BMI optimization based on unimodal normal distribution crossover GA with relaxed LMI convex estimation. ACC 2005: 2299-2304
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-06-19 21:04 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint