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Wind-thermal systems operation optimization considering emission problem

机译:考虑排放问题的风热系统运行优化

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This paper proposes a hybrid computational framework based on Sequential Quadratic Programming (SQP) and Particle Swarm Optimization (PSO) to address the Combined Unit Commitment and Emission (CUCE) problem. By considering a model which includes both thermal generators and wind farms, the proposed hybrid computational framework can minimize the scheduling cost and greenhouse gases emission cost. The viability of the proposed hybrid technique is demonstrated using a set of numerical case studies. Moreover, comparisons are performed with other optimization algorithms. The simulation results show that our hybrid method is better in terms of the speed and accuracy. The main contribution of this paper is the development of a emission unit commitment model integrating with wind energy and combining the SQP and PSO methods to achieve faster and better performance optimization.
机译:本文提出了一种基于顺序二次规划(SQP)和粒子群优化(PSO)的混合计算框架,以解决组合单元承诺和排放量(CUCE)问题。通过考虑同时包括热力发电机和风电场的模型,所提出的混合计算框架可以使调度成本和温室气体排放成本最小化。提出的混合技术的可行性通过一组数值案例研究得到了证明。此外,使用其他优化算法进行比较。仿真结果表明,我们的混合方法在速度和精度上都更好。本文的主要贡献是开发了与风能相结合的排放单位承诺模型,并结合了SQP和PSO方法来实现更快更好的性能优化。

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