Simplification and Control of Linear Time Invariant Systems using Evolutionary Techniques
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Abstract
In the present work, the application of the evolutionary techniques have
newlinebeen explored in two engineering fields: first is for order reduction and second is for
newlinecontrol of Linear Time Invariant Systems.
newlineFirstly, present research work concerns with the application of Invasive
newlineWeed Optimization (IWO) in order reduction. It is a new population based,
newlinederivative free numerical stochastic algorithm. It is inspired by biological growth of
newlineweed plants. For order reduction, single-input single- output (SISO) continuous time
newlinesystems have been considered. The objective function to be minimized is taken as
newlineintegral square error (ISE). This error is a difference between the transient responses
newlineof higher dimensional system and lower dimensional system. The fitness function is
newlineminimized to obtain all coefficients of polynomials of optimized system. The time
newlineand frequency responses for step input of system optimized with IWO technique
newlinehave been compared with the response of higher dimensional system and of the
newlinesystems optimized with other pre researched techniques. Also, the superiority of
newlineIWO has been established by comparing parameters in frequency domain, transient
newlineresponse s parameters, performance indices in the form of bar charts and tables. All
newlinethe comparisons show that the IWO algorithm gives comparably best results as
newlinecompared to other previously researched optimizing algorithms.
newline