Solar-Thermal Power Scheduling by Inserting α-Constrained Method to Nonlinear Simplex Method with Mutations

被引:0
|
作者
Kaur, Sunimerjit [1 ]
Brar, Y. S. [2 ]
Dhillon, J. S. [3 ]
机构
[1] IK Gujral Punjab Tech Univ, Kapurthala, India
[2] IK Gujral Punjab Tech Univ, Dept Elect Engn, Kapurthala, India
[3] St Longowal Inst Engn & Technol, Dept Elect & Instrumentat Engn, Sangrur, India
来源
2020 8TH INTERNATIONAL CONFERENCE ON SMART GRID AND CLEAN ENERGY TECHNOLOGIES (ICSGCE 2020) | 2020年
关键词
topographical location; integrated system; economic-environmental; uncertainty cost; mutations; WIND; SYSTEM; MODEL;
D O I
暂无
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Sun is the biggest source of renewable energy, which is sustainable, inexhaustible, readily available, free of cost, non-polluting and most abundant. Earth and its atmosphere are continuously accepting about 1.7 X 10(17) W solar radiations. If only one percent of these radiations can be transformed into electrical energy with 10 percent efficiency, then all the energy needs of the whole world can be fulfilled. A few years ago, it wasn't used more frequently as an electrical power source because of its unreliability. Now modern technology has changed the picture to a great extent. Solar PV has become the most competitive choice for power generation in increasing number of sites for residential and commercial purposes. Many countries have inducted ample solar power into their electrical grids to reduce their dependence on fossil fuels. In this paper, economic- environmental, solar-thermal power scheduling problem of an integrated system is recommended and it is optimized by using alpha- constrained simplex method, which is composed after inserting alpha -constrained method to nonlinear simplex method along with mutations. Justifiability of the presented method has been tested on five test systems.
引用
收藏
页码:27 / 34
页数:8
相关论文
共 50 条
  • [31] System performance of a solar-thermal power station with thermochemical energy storage
    Wierse, M
    Groll, M
    HYDROGEN ENERGY PROGRESS XI, VOLS 1-3, 1996, : 1997 - 2003
  • [32] Advancing high temperature materials and manufacturing for concentrating solar-thermal power
    Shultz, Avi
    Advanced Materials and Processes, 2021, 179 (04): : 15 - 21
  • [33] Physics-Informed machine learning for solar-thermal power systems
    Osorio, Julian D.
    De Florio, Mario
    Hovsapian, Rob
    Chryssostomidis, Chrys
    Karniadakis, George Em
    ENERGY CONVERSION AND MANAGEMENT, 2025, 327
  • [34] New Fitness Test for Materials and Modules in solar-thermal Power Stations
    不详
    PRAKTISCHE METALLOGRAPHIE-PRACTICAL METALLOGRAPHY, 2013, 50 (10): : 721 - 721
  • [35] Optimal power flow model incorporating wind, solar, and bundled solar-thermal power in the restructured Indian power system
    Kathiravan, Renganathan
    Devi, Raguru Pandu Kumudini
    INTERNATIONAL JOURNAL OF GREEN ENERGY, 2017, 14 (11) : 934 - 950
  • [36] A constrained optimization algorithm based on the simplex search method
    Mehta, Vivek Kumar
    Dasgupta, Bhaskar
    ENGINEERING OPTIMIZATION, 2012, 44 (05) : 537 - 550
  • [37] Application of a nonlinear system identification method to thermal power plants
    Toyoda, Y
    Wada, K
    ELECTRICAL ENGINEERING IN JAPAN, 2001, 137 (02) : 26 - 35
  • [38] FEASIBILITY OF LARGE-SCALE ORBITAL SOLAR-THERMAL POWER-GENERATION
    PATHA, JT
    WOODCOCK, GR
    JOURNAL OF SPACECRAFT AND ROCKETS, 1974, 11 (06) : 409 - 417
  • [39] A finite-time thermodynamic framework for optimizing solar-thermal power plants
    McMahan, A.
    Klein, S. A.
    Reindl, D. T.
    JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 2007, 129 (04): : 355 - 362
  • [40] Analysis on the Factors Restricting the Development of Solar-thermal Power Generation Industry in China
    Gao, ZiHan
    Qiao, Jing
    Huang, YuRong
    Hou, YuanYuan
    Wei, XiaoChuan
    PROCEEDINGS OF THE FIRST INTERNATIONAL CONFERENCE ON INFORMATION SCIENCE AND ELECTRONIC TECHNOLOGY, 2015, 3 : 53 - 55