Mixed Integer Linear Programming Model for Peak Operation of Gas-Fired Generating Units with Disjoint-Prohibited Operating Zones

Due to booming economic development over the past decades, energy demands in most of China’s provincial power grids have increased sharply, and it has become challenging to guarantee the energy balance at peak periods. In many provincial electric systems of China, gas-fired generators are...

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Main Authors: Zhongkai Feng, Wenjing Niu, Sen Wang, Chuntian Cheng, Zhenguo Song
Format: Article
Language:English
Published: MDPI AG 2019-06-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/12/11/2179
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spelling doaj-cbc4bb45e3a848eea7664bda14042e2c2020-11-25T02:40:48ZengMDPI AGEnergies1996-10732019-06-011211217910.3390/en12112179en12112179Mixed Integer Linear Programming Model for Peak Operation of Gas-Fired Generating Units with Disjoint-Prohibited Operating ZonesZhongkai Feng0Wenjing Niu1Sen Wang2Chuntian Cheng3Zhenguo Song4School of Hydropower and Information Engineering, Huazhong University of Science and Technology, Wuhan 430074, ChinaBureau of Hydrology, ChangJiang Water Resources Commission, Wuhan 430010, ChinaKey Laboratory of the Pearl River Estuarine Dynamics and Associated Process Regulation, Ministry of Water Resources, Guangzhou 510611, ChinaInstitute of Hydropower and Hydroinformatics, Dalian University of Technology, Dalian 116024, ChinaChina Ship Development and Design Center, Wuhan 430064, ChinaDue to booming economic development over the past decades, energy demands in most of China’s provincial power grids have increased sharply, and it has become challenging to guarantee the energy balance at peak periods. In many provincial electric systems of China, gas-fired generators are one of the most important peaking power sources to respond the load change at peak periods. To meet this practical necessity, a novel mixed integer linear programming model is proposed in this paper for the peak operation of gas-fired generating units with disjoint-prohibited operating zones. In the developed model, the objective function is chosen to minimize the peak-valley difference of the remaining load series that is obtained by subtracting the total generation of all the gas-fired units from the original load curve. The real-world simulations in several cases show that the developed model is able to generate satisfying scheduling results by reasonably allocating the power outputs of all the gas-fired generators in the scheduling horizon. Then, the management implications obtained lie in the fact that it is necessary to increase the share of peak power sources in the mid- to long-term planning of an electrical power system; and in the daily operation of the power grid, greater flexibility should be given to the gas-fired units to reduce peak pressure.https://www.mdpi.com/1996-1073/12/11/2179mixed integer linear programmingpeak shaving operationgas-fired generating unitdisjoint prohibited operating zonesprovincial electric system
collection DOAJ
language English
format Article
sources DOAJ
author Zhongkai Feng
Wenjing Niu
Sen Wang
Chuntian Cheng
Zhenguo Song
spellingShingle Zhongkai Feng
Wenjing Niu
Sen Wang
Chuntian Cheng
Zhenguo Song
Mixed Integer Linear Programming Model for Peak Operation of Gas-Fired Generating Units with Disjoint-Prohibited Operating Zones
Energies
mixed integer linear programming
peak shaving operation
gas-fired generating unit
disjoint prohibited operating zones
provincial electric system
author_facet Zhongkai Feng
Wenjing Niu
Sen Wang
Chuntian Cheng
Zhenguo Song
author_sort Zhongkai Feng
title Mixed Integer Linear Programming Model for Peak Operation of Gas-Fired Generating Units with Disjoint-Prohibited Operating Zones
title_short Mixed Integer Linear Programming Model for Peak Operation of Gas-Fired Generating Units with Disjoint-Prohibited Operating Zones
title_full Mixed Integer Linear Programming Model for Peak Operation of Gas-Fired Generating Units with Disjoint-Prohibited Operating Zones
title_fullStr Mixed Integer Linear Programming Model for Peak Operation of Gas-Fired Generating Units with Disjoint-Prohibited Operating Zones
title_full_unstemmed Mixed Integer Linear Programming Model for Peak Operation of Gas-Fired Generating Units with Disjoint-Prohibited Operating Zones
title_sort mixed integer linear programming model for peak operation of gas-fired generating units with disjoint-prohibited operating zones
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2019-06-01
description Due to booming economic development over the past decades, energy demands in most of China’s provincial power grids have increased sharply, and it has become challenging to guarantee the energy balance at peak periods. In many provincial electric systems of China, gas-fired generators are one of the most important peaking power sources to respond the load change at peak periods. To meet this practical necessity, a novel mixed integer linear programming model is proposed in this paper for the peak operation of gas-fired generating units with disjoint-prohibited operating zones. In the developed model, the objective function is chosen to minimize the peak-valley difference of the remaining load series that is obtained by subtracting the total generation of all the gas-fired units from the original load curve. The real-world simulations in several cases show that the developed model is able to generate satisfying scheduling results by reasonably allocating the power outputs of all the gas-fired generators in the scheduling horizon. Then, the management implications obtained lie in the fact that it is necessary to increase the share of peak power sources in the mid- to long-term planning of an electrical power system; and in the daily operation of the power grid, greater flexibility should be given to the gas-fired units to reduce peak pressure.
topic mixed integer linear programming
peak shaving operation
gas-fired generating unit
disjoint prohibited operating zones
provincial electric system
url https://www.mdpi.com/1996-1073/12/11/2179
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