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.1. Field of the Invention
The present invention relates generally to a wind turbine system. More particularly, the present invention relates to a method and apparatus for diagnosing wind turbine system noise for wind turbine systems having redundant wind turbine systems.
2. Description of the Prior Art
A wind turbine is a machine that converts the kinetic energy of wind into mechanical energy such as electrical energy. Basically, a wind turbine includes a rotor having a number of rotor blades. The rotor is typically powered by the wind such that the rotor rotates and generates the mechanical energy. In some embodiments, the rotor may also rotate a generator and thus produce electricity. The generator may be configured as an alternating current generator (AC generator) that outputs electricity as AC waveforms. The generator may also be configured as a direct current generator (DC generator) that outputs electricity as DC waveforms.
Wind turbine systems are used in generation of electricity, supplying power to end users and backup power for uses such as the delivery of electricity to local areas or facilities, particularly in remote areas where land-based or water-based generation systems are not practical or economical or are not available.
Wind turbine systems have certain components, including the turbine components, electrical components, including a generator, a control system and a communication system. For example, the control system may control the frequency and voltage supplied to the generator. Some wind turbine systems are available with two or more generators in order to ensure that the wind turbine system is capable of supplying power at certain power levels.
Wind turbine systems including both a primary and a secondary or backup system to provide electricity may have a communication system to allow the system to communicate to one another to coordinate operation of the systems and thus increase overall availability of the systems. For example, a wind turbine system having two or more generators may include a communication system to allow each generator to communicate to the others so that the generators can compensate for one another in supplying power. Also, different wind turbine systems may utilize different system architectures to convey power from the wind turbine to end users. For example, a wind turbine system may have one or more AC generators and a DC generator.
However, the noise from one or more wind turbine systems may be transmitted to the other wind

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