DocumentCode
3749189
Title
Quantum Walk based genetic algorithm for 0?1 quadratic knapsack problem
Author
Arish Pitchai;A. V. Reddy;Nickolas Savarimuthu
Author_Institution
Dept. of Computer Applications, National Institute of Technology, Trichy, India
fYear
2015
Firstpage
283
Lastpage
287
Abstract
This paper proposes a genetic quantum algorithm based on discrete time quantum walk (QWGA) to solve 0-1 quadratic knapsack problem. Genetic Quantum Algorithms makes use of the qubit representation and superposition phenomenon which are the counter-intuitive characteristics of quantum mechanics. Discrete Quantum Walk (DQW) on a hypercube is used in the place of genetic operators like mutation, crossover, etc. Achievement of rapid convergence and avoidance of local optima with the help of the quantum principles is explained in this paper. The possibilities of extending the proposed algorithm to various combinatorial optimization problems is discussed in detail. Superiority of the proposed algorithm over genetic quantum algorithm based on rotation operators is evident from the results.
Keywords
"Hypercubes","Genetics","Genetic algorithms","Quantum computing","Optimization","Quantum mechanics","Algorithm design and analysis"
Publisher
ieee
Conference_Titel
Computing and Network Communications (CoCoNet), 2015 International Conference on
Type
conf
DOI
10.1109/CoCoNet.2015.7411199
Filename
7411199
Link To Document