An optimal capacity allocation of large-scale wind-photovoltaic- (PV-) battery units was proposed. First, an output power model was established according to meteorological conditions. Then, a wind-PV-battery unit was connected to the power grid as a power-generation unit with a rated capacity under a fixed coordinated operation strategy. Second, the utilization rate of renewable energy sources and maximum wind-PV complementation was considered and the objective function of full life cycle-net present cost (NPC) was calculated through hybrid iteration/adaptive hybrid genetic algorithm (HIAGA). The optimal capacity ratio among wind generator, PV array, and battery device also was calculated simultaneously. A simulation was conducted based on ...
In this paper, a power supply optimization model is proposed. The model takes the minimum fossil ene...
In the context of carbon neutrality, renewable energy, especially wind power, solar PV and hydropowe...
In the context of large-scale wind power integration and rapid development of electric vehicles (EVs...
The output of complementary energy is the core of power generation system planning, and researching ...
This paper presents a simple methodology to optimize the size of a hybrid wind generator (WG), photo...
In this paper, size of a PV/wind integrated hybrid energy system with battery storage is optimized u...
© 2018 The Institution of Engineering and Technology. This study aims to propose a methodology for a...
This paper proposes a new method to determine optimal energy storage sizing in photovoltaic and wind...
Harnessing wind energy is one of the fastest-growing areas in the energy industry. However, wind pow...
Due to the fluctuation and randomness of renewable resources, such as solar irradiation resource and...
Solar energy and wind energy are the two most viable renewable energy resources in the world. Good c...
System power reliability under varying weather conditions and the corresponding system cost are the ...
xvi, 200 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P BSE 2008 ZhouSolar and wind...
This paper examines the optimal design of a hybrid photovoltaic-wind generator system with battery s...
WOS: 000265033400008This paper aims to show an optimum sizing procedure of autonomous PV/wind hybrid...
In this paper, a power supply optimization model is proposed. The model takes the minimum fossil ene...
In the context of carbon neutrality, renewable energy, especially wind power, solar PV and hydropowe...
In the context of large-scale wind power integration and rapid development of electric vehicles (EVs...
The output of complementary energy is the core of power generation system planning, and researching ...
This paper presents a simple methodology to optimize the size of a hybrid wind generator (WG), photo...
In this paper, size of a PV/wind integrated hybrid energy system with battery storage is optimized u...
© 2018 The Institution of Engineering and Technology. This study aims to propose a methodology for a...
This paper proposes a new method to determine optimal energy storage sizing in photovoltaic and wind...
Harnessing wind energy is one of the fastest-growing areas in the energy industry. However, wind pow...
Due to the fluctuation and randomness of renewable resources, such as solar irradiation resource and...
Solar energy and wind energy are the two most viable renewable energy resources in the world. Good c...
System power reliability under varying weather conditions and the corresponding system cost are the ...
xvi, 200 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P BSE 2008 ZhouSolar and wind...
This paper examines the optimal design of a hybrid photovoltaic-wind generator system with battery s...
WOS: 000265033400008This paper aims to show an optimum sizing procedure of autonomous PV/wind hybrid...
In this paper, a power supply optimization model is proposed. The model takes the minimum fossil ene...
In the context of carbon neutrality, renewable energy, especially wind power, solar PV and hydropowe...
In the context of large-scale wind power integration and rapid development of electric vehicles (EVs...