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Combined Solar & Wind Farm Project Proposal
INTRODUCTION
The main research direction of this paper is to develop a converter architecture and study the power flow problem in solar and wind power generation. Because the gap between the motors of wind power generation is very large, in order to improve the efficiency of land use, it has become a good method to arrange solar panels between the wind motors. In addition to increasing the capacity of the connector and the converter, this method It can also make better use of land. However, it is necessary to ensure that the constant power generation of solar photovoltaics will not be affected, so an optimized design is designed in this paper to enhance the effectiveness of hybrid solar-wind power plants, where the optimized variables include the number of photovoltaic modules, the wind turbine ’s Height, the number of wind turbines and the diameter of the turbine rotor, and the goal is to minimize the cost [1]. Simply put, we designed a storage to store the energy at the peak of power generation, and then use it as reserve power during the underestimation period [2]. This study aims to contribute to the existing knowledge of the hybrid clean energy power generation model. The juxtaposed solar and wind farms help to increase power generation capacity as well as connectors and converters. Hybrid systems can also ensure better land use and significantly reduce production costs. Combined Solar & Wind Farm Project Proposal
Aims
Design a wind-to-solar converter architecture to complement each other’s energy
Design an electric energy storage device to store the electric energy at the peak and compensate the electric energy at the low peak to achieve constant power
Objectives
Analyze wind data, solar energy intensity, design suitable energy storage
Analyze the characteristics of wind power and solar power, find a most reasonable conversion structure, and verify its rationality
Analyze the economic and technical feasibility of the combination of solar and wind power
Design of hybrid system and its algorithm
Create a model and use conventional CAD tools to modify and process the model
VISION STATEMENT
Co-located generation systems and in this case solar and wind farm has not only being proofed efficient and feasible but also worth of the investment. Changes in demand resulting from the development of more industries and population and hence households in the future point to better optimization of renewable sources of energy. Enough research has been done proofing that hybrid systems are the way to go. Though these innovations come with challenges, both technological hardware and software continue to emerge to solve these problems. Each renewable resource has its challenges and limitations; it is with hybrid systems that we will be able to eliminate the shortcomings of each resource. Wind and solar PV complement each other in such an effective way. The problem, though, remains the storage of energy generated in peak times. Many solutions in terms of storage have been discovered, but more research needs to be done to ensure we can store these generated surpluses for longer than has been achieved to date. Combined Solar & Wind Farm Project Proposal
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