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http://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/35277
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Trường DC | Giá trị | Ngôn ngữ |
---|---|---|
dc.contributor.author | Phan Nguyen Vinh | - |
dc.contributor.author | Van-Duc Phan | - |
dc.contributor.author | Bach Hoang Dinh | - |
dc.date.accessioned | 2022-03-28T06:12:20Z | - |
dc.date.available | 2022-03-28T06:12:20Z | - |
dc.date.issued | 2021 | - |
dc.identifier.issn | 2088-8708 | - |
dc.identifier.uri | http://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/35277 | - |
dc.description | 7p. ; 399 KB | vi |
dc.description.abstract | In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). In this paper, the combined wind and thermal power plant systems are operated optimally to reduce the total fossil fuel cost (TFFC) of all thermal power plants and supply enough power energy to loads. The objective of reducing TFFC is implemented by using antlion algorithm (ALA), particle swarm optimization (PSO) and Cuckoo search algorithm (CSA). | vi |
dc.language.iso | en | vi |
dc.publisher | International Journal of Electrical and Computer Engineering | vi |
dc.subject | Cuckoo search algorithm | vi |
dc.subject | Multiple fuel sources | vi |
dc.subject | Thermal power plant | vi |
dc.subject | Total fossil fuel cost | vi |
dc.subject | Wind power plant | vi |
dc.title | Optimal generation for wind-thermal power plant systems with multiple fuel sources | vi |
dc.type | Working Paper | vi |
Bộ sưu tập: | Bài báo khoa học giảng viên |
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Tập tin | Mô tả | Kích thước | Định dạng | |
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BBKH2685_Optimal generation for wind-thermal power plant systems with multiple fuel sources-23351-46508-1-PB.pdf Giới hạn truy cập | Optimal generation for wind-thermal power plant systems with multiple fuel sources | 398.09 kB | Adobe PDF | Xem/Tải về Yêu cầu tài liệu |
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