New optimized configuration for a hybrid PV/diesel/battery system based on coyote optimization algorithm: A case study for Hotan county

被引:24
|
作者
Sari, Arif [1 ]
Majdi, Ali [2 ]
Opulencia, Maria Jade Catalan [3 ]
Timoshin, Anton [4 ]
Dinh Tran Ngoc Huy [5 ,6 ]
Nguyen Dinh Trung [7 ]
Alsaikhan, Fahad [8 ]
Hammid, Ali Thaeer [9 ]
Akhmedov, Abdulaziz [10 ]
机构
[1] Girne Amer Univ, Dept Management Informat Syst, Via Mersin 10, Kyrenia, North Cyprus, Turkey
[2] Al Mustaqbal Univ Coll, Dept Bldg & Construct Tech, Hilla, Iraq
[3] Ajman Univ, Coll Business Adm, Ajman, U Arab Emirates
[4] Sechenov Univ, IM Sechenov First Moscow State Med Univ, Dept Propaedeut Dent Dis, Moscow, Russia
[5] Banking Univ HCMC Ho Chi Minh City, Ho Chi Minh City, Vietnam
[6] Int Univ Japan, Niigata, Japan
[7] NEU, Hanoi, Vietnam
[8] Prince Sattam Bin Abdulaziz Univ, Clin Pharm, Dept Clin Pharm, Coll Pharm, Alkharj, Saudi Arabia
[9] Imam Jaafar Al Sadiq Univ, Dept Comp Engn, Baghdad, Iraq
[10] Dept Informat & Teaching Methods, Bunyodkor St 27, Tashkent, Uzbekistan
关键词
Hybrid renewable energy system; Multi-objective optimization; Taklamakan desert; epsilon-constraint method; Sensitivity analysis; HOMER; Coyote optimization algorithm; Improved; RENEWABLE ENERGY SYSTEM; CHAOS OPTIMIZATION; BATTERY; DESIGN; COST; PARAMETERS; STATION;
D O I
10.1016/j.egyr.2022.11.059
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The main objective of this study is to present a multi-objective and optimal hybrid PV/diesel generator/battery Renewable Energy System (HRES) to provide this reliability in the Hotan county, placed in Taklamakan Desert. This study uses the epsilon-constraint method along with a developed version of the coyote optimization algorithm to achieve the best values of the component sized to decrease the loss of load probability, CO2 emission value, and the annualized cost of the system. Sensitivity analysis also is performed to show each component's impact on the system. The results demonstrate that the DG backup system improves the yearly cost of the system from 8347.2 $ to 9318.4 $, which shows about 10.42% increasing by increasing the fuel consumption. Here, the LLP increases from 0% to 9.19% and the CO2 emissions improve from 2531.2 kg/yr to 13257 kg/yr. Accordingly, the COE value is reduced from 0.39 $/kWh to 0.24 $/kWh over the PV penetration, reducing from 92.27% to 59.42%. This decreasing indicates that the system fuel cost has more impact than the cost of PV on the COE, which is due to the low cost required of conventional power production than the PV system. The results also indicate a noteworthy upshot on the battery storage unit size such that the size of epsilon(CO2) has been enhanced from 27.4 kWh to 50 kWh in the range from 7000 kg/year to 25 kg/year. The results also are compared with the PSO-based optimal system and HOMER software results to show its excellence toward them. (c) 2022 The Author(s). Published by Elsevier Ltd.
引用
收藏
页码:15480 / 15492
页数:13
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