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Profit-based unit commitment of integrated CHP-thermal-heat only units in energy and spinning reserve markets with considerations for environmental CO2 emission cost and valve-point effects

机译:考虑到环境CO2排放成本和阀点影响的能源和纺丝储备市场中仅热电联产的一体化热电联产装置的基于利润的单位承诺

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摘要

For the purposes of lowering environmental emission cost and increasing economic profit, energy efficient combined heat and power (CHP) units can be integrated with conventional separate heat and power production units to meet heat and power demands. The goal of this study is to develop and examine a novel heuristic and deterministic optimization algorithm for solving the profit-based unit commitment (PBUC) problem for a generation company with integrated CHP-thermal-heat only system for (i) satisfying demands for heat and power, (ii) selling spinning reserve for power, (iii) reducing environmental CO2 emission cost, and (iv) accounting for valve-point effects for steam turbines. For validation, the developed optimization algorithm is applied to power systems examined in other studies for a 24 h operation period, where reduction of 2.54-5.86% in environmental CO2 emission and improvements of 2.91-5.67% in economic profit are achieved. When environmental CO2 emission cost and valve-point effects are considered, the utilization of CHP units in an integrated CHP-thermal-heat only system results in environmental CO2 emission reduction and economic profit improvement by and 29.45 and 15.41%, respectively, as compared with those resulting from operating thermal and heat only units separately. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了降低环境排放成本和增加经济效益,可以将节能高效的热电联产(CHP)单元与常规的独立热电生产单元集成在一起,以满足热电需求。这项研究的目的是开发和检验一种新颖的启发式和确定性优化算法,以解决带有集成CHP-仅热-热系统的发电公司的基于利润的单位承诺(PBUC)问题,以(i)满足热量需求电力;(ii)出售电力的纺丝储备;(iii)减少环境二氧化碳的排放成本;(iv)考虑汽轮机的阀点效应。为了进行验证,将开发的优化算法应用于其他研究中研究的电力系统,持续运行24小时,在此期间,环境CO2排放减少了2.54-5.86%,经济利润提高了2.91-5.67%。考虑到环境CO2的排放成本和阀点效应,在热电联产综合系统中使用CHP装置可使环境CO2的排放量减少和经济利润分别提高29.45%和15.41%。分别由单独运行热量和热量单元产生的热量。 (C)2017 Elsevier Ltd.保留所有权利。

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