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Economic environmental unit commitment for integrated CCHP- thermal-heat only system with considerations for valve-point effect based on a heuristic optimization algorithm

机译:基于启发式优化算法的考虑阀点效应的集成CCHP-仅热-热系统的经济环境单位承诺

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摘要

For the purposes of lowering environmental emission and total cost, energy efficient combined cooling, heat, and power (CCHP) units can be integrated with conventional separate cooling, heat, and power production units to meet demands. The goal of this study is to develop and examine a heuristic and deterministic optimization algorithm for solving the unit commitment problem for integrated CCHP-thermal-heat only system for (i) satisfying demands for cooling, heat, and power, (ii) providing spinning reserve for power, (iii) reducing environmental emission, and (iv) accounting for valve-point effects for steam turbines of thermal units. When environmental emission cost and valve-point effects are considered, the utilization of CCHP units in an integrated CCHP-thermal-heat only system results in environmental emission and total cost reduction by and 38.37 and 0.03%, respectively, as compared with those resulting from operating thermal and heat only units separately. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了降低环境排放和总成本,可以将节能高效的冷却,热和动力(CCHP)单元与常规的单独冷却,热和动力生产单元集成在一起,以满足需求。本研究的目的是开发和检验启发式和确定性优化算法,以解决CCHP-仅热-热集成系统的机组承诺问题,以(i)满足冷却,热和功率的需求,(ii)提供旋转储备电力;(iii)减少环境排放,以及(iv)考虑热力单元蒸汽轮机的阀点效应。当考虑环境排放成本和阀点效应时,与仅通过以下方式产生的排放相比,在集成的CCHP-仅热-热系统中使用CCHP装置可使环境排放和总成本分别降低38.37%和0.03%。分别操作热单元和热单元。 (C)2018 Elsevier Ltd.保留所有权利。

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