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首页> 外文期刊>European Journal of Operational Research >Efficient algorithms for combined heat and power production planning under the deregulated electricity market
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Efficient algorithms for combined heat and power production planning under the deregulated electricity market

机译:电力市场放松管制下热电联产计划的高效算法

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摘要

Combined heat and power (CHP) production is an important energy production technology that can yield much higher total energy efficiency than separate heat and power generation. In CHP production, the heat and power production follows a joint characteristic, which means that the production planning must be done in coordination. Cost-efficient operation of a CHP system can be planned by using an optimization model. A long-term planning model decomposes into thousands of hourly models. Earlier, in the regulated electric power market, the planning problem was symmetrically driven by heat and power demand. The liberalization of the power market has created an asymmetrical planning problem, where heat production responds to the demand and power production to the volatile market price. In this paper, we utilize this asymmetry to develop novel envelope-based dual algorithms for solving the hourly CHP models efficiently. The basic idea is to transform the three-dimensional characteristic operating region for heat and power production of each CHP plant into a two-dimensional envelope by taking the power price as a parameter. Then the envelopes of each plant are used for looking up the optimal solution rapidly. We propose two versions of the algorithm: the on-line envelope construction algorithm (ECON) where the envelopes are constructed for each hour based on the power price and the off-line envelope construction algorithm (ECOFF) where envelopes are pre-computed for all different power price ranges. We derive the theoretical time complexity of the two algorithms and compare their performance empirically with realistic test models against the ILOG CPLEX solver and the Power Simplex (PS) algorithm. PS is an extremely efficient specialized primal algorithm developed for the symmetrical CHP planning problem under the regulated market. On average, when reusing previous basic solutions, ECON is 603 times faster than CPLEX and 1.3 times faster than PS. ECOFF is 1860 times faster than CPLEX and four times faster than PS. (c) 2005 Elsevier B.V. All rights reserved.
机译:热电联产是一种重要的能源生产技术,与单独的热电联产相比,可产生更高的总能效。在热电联产生产中,热电联产具有共同特征,这意味着必须协调进行生产计划。通过使用优化模型,可以计划CHP系统的经济高效运行。长期计划模型分解为成千上万的小时模型。早些时候,在受监管的电力市场中,热能和电力需求对称地驱动了规划问题。电力市场的自由化带来了一个不对称的计划问题,即热量生产对需求做出反应,而电力生产则对波动的市场价格做出反应。在本文中,我们利用这种不对称性来开发新颖的基于包络的双重算法,以有效地解决小时CHP模型。基本思想是通过以电价为参数,将每个热电联产厂的供热和发电的三维特征工作区域转换为二维包络线。然后,使用每个工厂的信封快速查找最佳解决方案。我们提出了该算法的两种版本:在线信封构造算法(ECON),其中根据电价每小时对信封进行构造;以及离线信封构造算法(ECOFF),其中针对所有时间预先计算信封不同的电价范围。我们推导出这两种算法的理论时间复杂度,并针对ILOG CPLEX求解器和Power Simplex(PS)算法,将它们的性能与实际测试模型进行经验比较。 PS是针对受监管市场下的对称CHP规划问题而开发的一种非常有效的专业原始算法。平均而言,重用以前的基本解决方案时,ECON比CPLEX快603倍,比PS快1.3倍。 ECOFF比CPLEX快1860倍,比PS快四倍。 (c)2005 Elsevier B.V.保留所有权利。

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