Modeling and Optimization of Integrated Renewable Energy System for a Rural Site

被引:0
|
作者
Bansal, Mohit [1 ]
Khatod, D. K. [1 ]
Saini, R. P. [1 ]
机构
[1] Indian Inst Technol, Alternate Hydro Energy Ctr, Roorkee 247667, UK, India
来源
PROCEEDINGS OF THE 2014 INTERNATIONAL CONFERENCE ON RELIABILTY, OPTIMIZATION, & INFORMATION TECHNOLOGY (ICROIT 2014) | 2014年
关键词
Green Energy Sources; Hybrid renewable energy system; Modeling; Optimization; HOMER;
D O I
暂无
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Nowadays, the increasing energy demand and the limited reserves of the conventional sources have raised the concerns of the researchers all around the globe to look for alternative resources. In addition to the rising demand concerns, the environmental concerns have led to the emergence of green power technologies in energy sector. Green power technologies include the power generation from clean and inexhaustible sources like solar energy, wind energy, hydro, biomass, etc. Hybrid renewable energy systems comprising of two or more renewable energy sources have been proposed to overcome the limitations of individual energy sources and make the system more reliable and less costly. The main point of consideration, while designing the hybrid system, is the sizing of different components. In this paper, a PVlWind/Biomass hybrid system has been considered for supplying an electrical load in a remote area. An optimal configuration of different renewable energy system has been obtained. The optimal configuration has been determined by taking the total cost as the objective function. The optimization is then done through optimization software of Hybrid Optimization Model for Electric Renewable (HOMER). The results obtained
引用
收藏
页码:25 / 28
页数:4
相关论文
共 50 条
  • [21] Optimization of an off-grid integrated hybrid renewable energy system with different battery technologies for rural electrification in India
    Kumar, Polamarasetty P.
    Saini, Rajeshwer Prasad
    JOURNAL OF ENERGY STORAGE, 2020, 32
  • [22] Thermal energy demand fulfillment of Kolhapur through modeling and optimization of integrated renewable energy systems
    Wagh, M. M.
    Kulkarni, V. V.
    RENEWABLE ENERGY FOCUS, 2019, 29 : 114 - 122
  • [23] Design and optimization of building integrated renewable energy system based on virtual energy storage
    Zhao, Jun
    Jin, Yu
    Li, Hao
    Wang, Jiachen
    Li, Wenjia
    Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2021, 42 (05): : 91 - 97
  • [24] Optimization of PV-Wind Hybrid Renewable Energy system for Rural Electrification
    Fulzele, Jyoti B.
    Daigavane, M. B.
    2015 7TH INTERNATIONAL CONFERENCE ON EMERGING TRENDS IN ENGINEERING & TECHNOLOGY (ICETET), 2015, : 101 - 105
  • [25] Modeling and Optimization of Integrated Energy System Based on Energy Circuit Theory
    Li, Ming
    Wang, Zhe
    IEEJ TRANSACTIONS ON ELECTRICAL AND ELECTRONIC ENGINEERING, 2021, 16 (05) : 704 - 714
  • [26] Modelling of integrated renewable energy system
    Akella, A. K.
    Saini, R. P.
    Sharma, M. P.
    RENEWABLE ENERGY FOR SUSTAINABLE DEVELOPMENT IN THE ASIA PACIFIC REGION, 2007, 941 : 194 - +
  • [27] Multi-objective optimization of Smart Integrated Renewable Energy System (SIRES)
    Maheshwari, Zeel
    2022 IEEE KANSAS POWER AND ENERGY CONFERENCE (KPEC 2022), 2022,
  • [28] An integrated system for the energy production and accumulation from renewable sources: a rural tower prototype
    Di Francesco, Silvia
    Petrozzi, Alessandro
    Montesarchio, Valeria
    EUROPEAN GEOSCIENCES UNION GENERAL ASSEMBLY 2014, EGU DIVISION ENERGY, RESOURCES & THE ENVIRONMENT (ERE), 2014, 59 : 205 - 212
  • [29] Discrete harmony search based size optimization of Integrated Renewable Energy System for remote rural areas of Uttarakhand state in India
    Chauhan, Anurag
    Saini, R. P.
    RENEWABLE ENERGY, 2016, 94 : 587 - 604
  • [30] Unified modeling of regionally integrated energy system and application to optimization
    Li, Jiyong
    Li, Duanxiang
    Zheng, Yifei
    Yao, Yipeng
    Tang, Yishen
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2022, 134