Makoto OHKI


Nurse Scheduling by Cooperative GA with Effective Mutation Operator
Makoto OHKI 
Publication:   IEICE TRANSACTIONS on Information and Systems
Publication Date: 2012/07/01
Vol. E95-D  No. 7  pp. 1830-1838
Type of Manuscript:  PAPER
Category: Fundamentals of Information Systems
Keyword: 
nurse schedulingcooperative genetic algorithmmutation operatoroptimization speed
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Generation and Optimization of Pulse Pattern for Multiple Concurrently Operated Sonars Using Genetic Algorithm
Nyakoe George NYAUMA Makoto OHKI Suichiro TABUCHI Masaaki OHKITA 
Publication:   IEICE TRANSACTIONS on Fundamentals of Electronics, Communications and Computer Sciences
Publication Date: 2001/07/01
Vol. E84-A  No. 7  pp. 1732-1739
Type of Manuscript:  PAPER
Category: Ultrasonics
Keyword: 
ultrasonic sonarcrosstalkgenetic algorithmpulse modulation
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Analysis of Modified Luneberg Lens Using Exact Solutions
Haruo SAKURAI Makoto OHKI Shogo KOZAKI 
Publication:   IEICE TRANSACTIONS on Electronics
Publication Date: 1999/10/25
Vol. E82-C  No. 10  pp. 1846-1852
Type of Manuscript:  PAPER
Category: Electromagnetic Theory
Keyword: 
modified Luneberg lenselectromagnetic scatteringexact solutionfocal properties
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Self-Tuning of Fuzzy Reasoning by the Steepest Descent Method and Its Application to a Parallel Parking
Hitoshi MIYATA Makoto OHKI Masaaki OHKITA 
Publication:   IEICE TRANSACTIONS on Information and Systems
Publication Date: 1996/05/25
Vol. E79-D  No. 5  pp. 561-569
Type of Manuscript:  PAPER
Category: Algorithm and Computational Complexity
Keyword: 
fuzzy controlsteepest descent methodpiecewise linear membership functiongeneralization capabilityparallel parking
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A New Formulation of Absorbing Boundary Conditions for Finite-Difference Time-Domain Method
Pei-Yuan WANG Shogo KOZAKI Makoto OHKI Takashi YABE 
Publication:   IEICE TRANSACTIONS on Electronics
Publication Date: 1994/11/25
Vol. E77-C  No. 11  pp. 1726-1730
Type of Manuscript:  Special Section PAPER (Special Issue on Electromagnetic Theory)
Category: 
Keyword: 
finite-difference time-domain methodabsorbing boundary conditionselectromagnetic waves
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