摘要:
A wind power generation control device which controls a wind power generator using a wind turbine blade having a fixed pitch angle is provided. The wind power generation control device which controls the wind power generator in which an output current value outputted by the wind power generator is detected, an output voltage value outputted by the wind power generator is detected, a rotational speed of the wind turbine blade is detected, and on the basis of the detected output current value at the current time, the detected output voltage value at the current time, and the detected rotational speed at the current time, output power at the rotational speed at the current time is calculated, and on the basis of the calculated output power and blade aerodynamic properties, which are properties inherent to the wind turbine blade, the wind power generator is controlled so that an optimal amount of power corresponding to the wind speed can be efficiently obtained in a relatively low wind speed region and a wind power generation control method for controlling the wind power generator are provided.
摘要:
Provided is a wind power generation apparatus to which general purpose inverters are applicable. An inverter 30 in a constant-voltage mode is used. While a wind power generator 2 is generating electricity, switching circuits 40-1 to 40-3 are turned on and off at a controlled duty cycles to intermittently short-circuit an armature winding 22, boosting the voltage and controlling the rotational speed of a windmill rotating blade 20, with the result that the voltage applied to the inverter 30 is made constant. At the activation, in order to prevent an excessive voltage from being generated while an inverter 30 is changing from the stand-by state to the activated state, ON/OFF control of a switching circuit 31 is performed to switch between the output voltage of a rectifier 23 and the voltage generated at a resistor 32, with the result that the voltage is controlled and maintained at an appropriate value.
摘要:
A windmill, characterized by connecting blade root parts to a hub in the radial direction of a windmill shaft by an undercut fitting structure which is suitable particularly for a small-sized windmill having FRP blades. By this structure, the blades can be connected to the hub at the blade root parts without basically requiring a bolt fastening structure, a reduction in the weight of the blades can be achieved, and the strength, rigidity and installation accuracy of connection parts between the blades and the hub can be satisfactorily maintained.
摘要:
A wind power generation control device which controls a wind power generator using a wind turbine blade having a fixed pitch angle is provided. The wind power generation control device which controls the wind power generator in which an output current value outputted by the wind power generator is detected, an output voltage value outputted by the wind power generator is detected, a rotational speed of the wind turbine blade is detected, and on the basis of the detected output current value at the current time, the detected output voltage value at the current time, and the detected rotational speed at the current time, output power at the rotational speed at the current time is calculated, and on the basis of the calculated output power and blade aerodynamic properties, which are properties inherent to the wind turbine blade, the wind power generator is controlled so that an optimal amount of power corresponding to the wind speed can be efficiently obtained in a relatively low wind speed region and a wind power generation control method for controlling the wind power generator are provided.
摘要:
When a wind velocity sensor detects a wind velocity higher than a predetermined level, a timer device starts a waiting timer function during an operation timer period shorter than the waiting timer period. After the waiting timer period is over, the waiting timer function is switched to an operation timer function, and a switching relay switches a generator to a motor only during an operation timer period. Then, a driving circuit performs a start assisting rotation. After the operation timer period is over, the waiting timer period re-starts. This process is repeated. When during this period, the number of rotations of a rotor monitored by a rotation number measuring device, based on the output voltage V m of a three-phase conduction coil exceeds a predetermined number of rotations, the charging of a battery by a three-phase generator is started.