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Study on the capacity-operation collaborative optimization for multi-source complementary cogeneration system

delete2021-12-01
delete16
PRE
AI
Z
Zeyu Ding
侯红娟 cover
侯红娟 (Hongjuan Hou) *
L
Liqiang Duan
G
Guido Francesco Frate
张楠 cover
张楠 (Nan Zhang)
U
Umberto Desideri
DOI:10.1016/j.enconman.2021.114920delete
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Abstract

Abstract

En 中文
Combining renewable energy with fossil fuel-based energy systems is a promising way to develop renewable energy power generation and decrease CO2 emissions with lower capital investment. In this paper, a multi-source complementary cogeneration (MCC) system is investigated in which the wind farm and solar aided combined heat and power (SA-CHP) system are integrated at the power grid level. A bi-level capacity-operation collaborative optimization model for this MCC system has been established to simultaneously optimize main components capacities and system annual load dispatch. In the proposed model, the upper level is a multi-objective optimization searching for the optimal trade-off between economy and CO2 emissions. At the same time, the lower level aims to obtain the optimal load dispatch of the MCC system for the whole year to maximize the annual operating income. The linear model of the SA-CHP system is built to simplify the lower-level problem -solution process. The bi-level optimization model is handled with a nested approach that combines non dominated Sorting Genetic algorithm-II and linear programming. The proposed bi-level model is applied in a study case to simultaneously optimize thermal energy storage capacity, solar field size, wind farm capacity, as well as annual power and heat load dispatch of an MCC system located in Zhangbei, China. Besides, the influences of capacity parameters on the performances of the MCC system are analyzed.
Keywords:
Multi-source complementary cogeneration
Capacity-operation collaborative optimization
Bi-level programming
Multi-objective optimization
Sensitive analysis

Journal

Energy Conversion and Management cover
Energy Conversion and Management
IF:
10.9
Papers:
2.0W
Citations:
11.3W

Organization

N
north china electric power university
Scholars:
2.5W
Papers: 1.7W
Citations: 16
U
University of Pisa
Scholars:
3.1W
Papers: 2.4W
Citations: 2.4W
Cited Papers

Cited Papers

Simulation study on a novel solar aided combined heat and power system for heat-power decoupling
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SOD-MTGAN: Small Object Detection via Multi-Task Generative Adversarial Network
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errYancheng Bai; Yongqiang Zhang; Mingli Ding; Bernard Ghanem
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Evaluation methods of solar contribution in solar aided coal-fired power generation system
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errZhu, Yong; Zhai, Rongrong; Zhao, Miaomiao; Yang, Yongping; Yan, Qin
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Performance analysis of a wind-solar hybrid power generation system
err2019-02-01
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errDing, Zeyu; Hou, Hongjuan; Yu, Gang; Hu, Eric; Duan, Liqiang; Zhao, Jin
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Heat-power decoupling technologies for coal-fired CHP plants: Operation flexibility and thermodynamic performance
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IF9.4
err2019-12-01
err111
PREAI
errLiu, Ming; Wang, Shan; Zhao, Yongliang; Tang, Haiyu; Yan, Junjie
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