DuboisJHûGPoggiP, et al.
Safety cost of a large-scale hydrogen system for photovoltaic energy regulation. Int J Hydr Energ2013;
38: 8108–8116.
2.
ArifujjamanM.A comprehensive power loss, efficiency, reliability and cost calculation of a 1MW/500kWh battery-based energy storage system for frequency regulation application. Renew Ener2015;
74: 158–169.
3.
ZhangTChenSXGooiHB, et al.
A hierarchical EMS for aggregated BESSs in energy and performance-based regulation markets. IEEE Trans Power Syst2017;
32: 1751–1760.
4.
GoswamiASadhuPGoswamiU, et al. Floating solar power plant for sustainable development: a techno‐economic analysis. Environ Prog Sustain Energ2019; 38: e13268.
5.
HeB-J.Towards the next generation of green building for urban heat island mitigation: zero UHI impact building. Sustain Cit Soc2019;
50: 101647.
6.
CuiYYangZYanG, et al.
Capacity configuration of thermal energy storage within CSP to reduce the cost of peak load regulation. Zhong Dian Gongch Xueb/Proc Chin Soc Electr Eng2018;
38: 1605–1611.
7.
BerradaALoudiyiKZorkaniI.Valuation of energy storage in energy and regulation markets. Energy2016;
115: 1109–1118.
8.
YanGLiuD, LJMuG.A cost accounting method of the Li-ion battery energy storage system for frequency regulation considering the effect of life degradation. Protect Control Mod Power Syst2018;
3: 4.
9.
JúniorEFMRütherR.The influence of the solar radiation database and the photovoltaic simulator on the sizing and economics of photovoltaic-diesel generators. Ener Conver Manag2020;
210: 112737.
10.
LiuJGengTWangX, et al.
A perspective from the globalizing world. Energ2020;
13: 3786.
11.
WangZFengC.The impact and economic cost of environmental regulation on energy utilization in China. Appl Econ2014;
46: 3362–3376.
12.
WangDZhiY-QJiaH-J, et al.
Optimal scheduling strategy of district integrated heat and power system with wind power and multiple energy stations considering thermal inertia of buildings under different heating regulation modes. Appl Energ2019;
240: 341–358.
13.
LeeC-YAhnJ.Stochastic modeling of the levelized cost of electricity for solar PV. Energy2020;
13: 3017.
14.
DawoodFShafiullahGMAndaM.Stand-alone microgrid with 100% renewable energy: a case study with hybrid solar PV battery-hydrogen. Sustainable2020;
12: 2047.
15.
LinLTianXCaiX.Gas unit deep peak regulation and power system energy efficiency in consideration of conditional cost. Dian Xit Zidon/Automat Electr Power Syst2018;
42: 16–23.
16.
GoswamiASadhuPSadhuPK.Development of a grid connected solar-wind hybrid system with reduction in levelized tariff for a remote island in India. J Sol Energ Eng2020;
142: 04450.
17.
ЛобановИЕ.Solution of the problem of the theoretical profile of non-dimensional speed on the thickness of the boundary layer at the turbulent flow in the boundary layer based on the solution of the differential equation of Abel of the second generation with the app. World Ecol J2018;
8: 43–51.
18.
QiangWNiuSLiuX, et al.
Analysis of generation cost changes during China’s energy transition. Energ Environ2018;
29: 456–472.
19.
SharmaVGidwaniL.Frequency regulation of electric grid with wind power using energy storage system. IJGDC2015;
8: 267–274.
20.
ZhangHZhangQGongT, et al.
Peak load regulation and cost optimization for microgrids by installing a heat storage tank and a portable energy system. Appl Sci (Switz)2018;
8: 567.