Combined heat and power dynamic economic dispatch with emission limitations using hybrid DE-SQP method

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Authors

Elaiw, A.M.
Xia, Xiaohua
Shehata, A.M.

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Hindawi Publishing Corporation

Abstract

Combined heat and power dynamic economic emission dispatch (CHPDEED) problem is a complicated nonlinear constrained multiobjective optimization problem with nonconvex characteristics. CHPDEED determines the optimal heat and power schedule of committed generating units by minimizing both fuel cost and emission simultaneously under ramp rate constraints and other constraints. This paper proposes hybrid differential evolution (DE) and sequential quadratic programming (SQP) to solve the CHPDEED problem with nonsmooth and nonconvex cost function due to valve point effects. DE is used as a global optimizer, and SQP is used as a fine tuning to determine the optimal solution at the final. The proposed hybrid DE-SQP method has been tested and compared to demonstrate its effectiveness.

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Keywords

Combined heat, Emission limitations, Hybrid DE-SQP method, Power dynamic economic emission dispatch (CHPDEED)

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Citation

Elaiw, AM, Xia, X & Shehata, AM 2013, 'Combined heat and power dynamic economic dispatch with emission limitations using hybrid DE-SQP method', Abstract And Applied Analysis, vol. 2013, art. ID. 120849, pp. 1-10.