Publication | Closed Access
Seeker optimization algorithm for parameter estimation of time-delay chaotic systems
27
Citations
54
References
2011
Year
Differential EvolutionNonlinear System IdentificationNonlinear ControlFuzzy LogicEngineeringTime Delay SystemChaos TheoryAerospace EngineeringFirefly AlgorithmIntelligent OptimizationTime-delay Chaotic SystemsMathematical Control TheorySystems EngineeringFuzzy OptimizationHybrid Optimization TechniqueParticle Swarm OptimizationSeeker Optimization AlgorithmLocal Minima
Time-delay chaotic systems have some very interesting properties, and their parameter estimation has received increasing interest in the recent years. It is well known that parameter estimation of a chaotic system is a nonlinear, multivariable, and multimodal optimization problem for which global optimization techniques are required in order to avoid local minima. In this work, a seeker-optimization-algorithm (SOA)-based method is proposed to address this issue. In the SOA, search direction is based on the empirical gradients by evaluating the response to the position changes, and step length is based on uncertainty reasoning by using a simple fuzzy rule. The performance of the algorithm is evaluated on two typical test systems. Moreover, two state-of-the-art algorithms (i.e., particle swarm optimization and differential evolution) are also considered for comparison. The simulation results show that the proposed algorithm is better than or at least as good as the other two algorithms and can effectively solve the parameter estimation problem of time-delay chaotic systems.
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