An adaptive chaotic differential evolution for the short-term hydrothermal generation scheduling problem
نویسندگان
چکیده
0196-8904/$ see front matter 2010 Elsevier Ltd. A doi:10.1016/j.enconman.2010.02.006 * Corresponding author. Tel.: +86 02787543127. E-mail address: [email protected] (J. Zhou). The short-term hydrothermal generation scheduling (SHGS) is a complicated nonlinear optimization problem with a set of operational and hydraulic constraints. A new approach is presented in this paper for solving the short-term hydrothermal generation scheduling problem by using an adaptive chaotic differential evolution algorithm (ACDE). In the proposed method, an adaptive dynamic parameter adjusting strategy is adopted to obtain the parameter settings in differential evolution algorithm (DE), and a chaotic local search (CLS) operation is integrated with DE to avoid premature convergence effectively. Moreover, new heuristic constraint handling methods without any penalty factor settings are proposed in this paper for the proposed ACDE to deal with the complicated constraints effectively. The feasibility and effectiveness of the proposed ACDE method is demonstrated for two test hydrothermal power systems. The simulation results reveal that, compared with other established methods like PSO and DE, the proposed ACDE appears to be the best in terms of convergence property, computational efficiency and solution accuracy. 2010 Elsevier Ltd. All rights reserved.
منابع مشابه
A SIMPLIFIED LAGRANGIAN MULTIPLIER APPROACH FOR FIXED HEAD SHORT-TERM HYDROTHERMAL SCHEDULING
This paper presents a simplifiedlagrangian multiplier based algorithm to solve the fixed head hydrothermalscheduling problem. In fixed head hydrothermal scheduling problem, waterdischarge rate is modeled as quadratic function of hydropower generation andfuel cost is modeled as quadratic function of thermal power generation. Thepower output of each hydro unit varies with the rate of water discha...
متن کاملMulti-objective Differential Evolution for the Flow shop Scheduling Problem with a Modified Learning Effect
This paper proposes an effective multi-objective differential evolution algorithm (MDES) to solve a permutation flow shop scheduling problem (PFSSP) with modified Dejong's learning effect. The proposed algorithm combines the basic differential evolution (DE) with local search and borrows the selection operator from NSGA-II to improve the general performance. First the problem is encoded with a...
متن کاملQuadratic approximation based differential evolution with valuable trade off approach for bi-objective short-term hydrothermal scheduling
Short-term combined economic emission hydrothermal scheduling (CEES) is a bi-objective problem: (i) minimizing fuel cost and (ii) minimizing pollutant emission. In this paper, quadratic approximation based differential evolution with valuable trade off approach (QADEVT) has been developed to solve the bi-objective hydrothermal scheduling problem. The practical hydrothermal system possesses vari...
متن کاملOptimal Scheduling of Cascaded Hydrothermal Systems Using a New Improved Particle Swarm Optimization Technique
Optimum scheduling of hydrothermal plants generation is of great importance to electric utilities. Many evolutionary techniques such as particle swarm optimization, differential evolution have been applied to solve these problems and found to perform in a better way in comparison with conventional optimization methods. But often these methods converge to a sub-optimal solution prematurely. This...
متن کاملShort-term Price-based Unit Commitment of Hydrothermal GenCos: A Pre-emptive Goal Programming Approach
The solution of single-objective unit commitment problems for generation companies participating in deregulated markets may not directly be implementable mainly because of neglecting some conflicting secondary objectives arising from policy-making at internal/external environment. Benefiting an efficient multi-objective approach to improve the applicability of price-based unit commitment soluti...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2010