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The combination of wind and solar has the advantage that the two sources complement each other because the peak operating times for each system occur at different times of the day and year. The power generation of such a hybrid system is more constant and fluctuates less than each of the two component subsystems.
The original "Stage 2" remains owned by DP Energy and is proposed to include more solar photovoltaic generation and a grid connected battery. [5] The developer claims that the combination of wind, solar, battery and synchronous condensers combine to create a renewable energy power station. [6] The former Stage 2 is now called Bluebush Solar. [7]
Distributed generation from wind hybrid power systems combines wind power with other DER systems. One such example is the integration of wind turbines into solar hybrid power systems, as wind tends to complement solar because the peak operating times for each system occur at different times of the day and year.
Concentrator systems also often require reliable control systems to accurately track the Sun and to protect the PV cells from damaging over-temperature conditions. However, there are also stationery PVT collector types that use nonimaging reflectors , such as the Compound Parabolic Concentrator (CPC) , and do not have to track the Sun.
When completed, the park will generate 30 gigawatt electricity from both solar panels and wind turbines. It will spread over an area of 72,600 hectares (726 km 2) of waste land. [1] [2] When completed, it will be the biggest hybrid renewable energy park in the world. [1] The 30 GW energy could power 18 million Indian homes. [3]
An example of a wind turbine, this 3 bladed turbine is the classic design of modern wind turbines Wind turbine components : 1-Foundation, 2-Connection to the electric grid, 3-Tower, 4-Access ladder, 5-Wind orientation control (Yaw control), 6-Nacelle, 7-Generator, 8-Anemometer, 9-Electric or Mechanical Brake, 10-Gearbox, 11-Rotor blade, 12-Blade pitch control, 13-Rotor hub