1. A data monitoring system comprising
a signal processing block,
at least one output connected to said processing block,
a compressor connected to said output of said processing block, and
a data network connected to said compressor and to at least one monitoring station for receiving an output of said compressor, in order to monitor a status of the signal output from said signal processing block and, in response to an alarm condition, to selectively output the entire signal or time-divided components of the signal to the data network.
2. The data monitoring system of claim 1, wherein signals received by said data network are controlled by compounds transmitted from said data network.
3. A television monitoring system comprising
a television signal processing block,
at least one output connected to said processing block,
a video compressor connected to said output of said processing block, and
a data network connected to said video compressor and to at least one monitoring station for receiving an output of said compressor in order to monitor a status of the signal output from said signal processing block and, in response to an alarm condition, to selectively output the entire signal or time divided components of the signal to the data network.
4. The television monitoring system of claim 3, wherein signals received by said data network are controlled by commands transmitted from said data network.
5. The television monitoring system of claim 3, wherein said signal processing block comprises an analog to digital converter.
6. The television monitoring system of claim 3, wherein said compressor is connected to multiplexing interface, and said data network is connected to said compressor through said multiplexing interface.
7. The television monitoring system of claim 3 further comprising
a plurality of said signal processing blocks, each of said plurality of said signal processing blocks connected to at least one of a plurality of said compressors,
each of said compressors connected to multiplexing interface connected to a bus connected to the data network,
wherein the output from said plurality of signal processing blocks is multiplexed by the multiplexing interfaces and received by said bus and commands from the data network are passed through said bus to said multiplexing interfaces.
8. The television monitoring system of claim 7, wherein said multiplexing interfaces transmit an alarm signal to said data network in response to a change in a condition of a signal input to said signal processing block.
9. The television monitoring system of claim 7, wherein said bus is connected to said data network through a demultiplexing interface.
10. The television monitoring system of claim 9, wherein said demultiplexing interface is connected to said data network through a network interface.
11. The television monitoring system of claim 3, wherein said signal processing block comprises multiple outputs, and further comprising interface connected to the data network for multiplexing the outputs of said signal processing block.
12. The television monitoring system of claim 11, wherein each of a plurality of said signal processing blocks is connected to one of a plurality of said multiplexing interfaces, each of said multiplexing interfaces being connected to a bus connected to said data network.
13. The television monitoring system of claim 3, wherein said signal processing block transmits an alarm signal to said data network in response to a change in a condition of a signal input to the signal processing block.
14. The television monitoring system of claim 3, wherein said signal processing block comprises a plurality of inputs.
15. The television monitoring system of claim 14, wherein said signal processing block comprises at least a video signal input and an audio signal input.
16. The television monitoring system of claim 15, wherein said signal processing block comprises an ancillary data input.
17. The television monitoring system of claim 3, wherein said signal processing block transmits data monitoring information to said data network.
18. The television monitoring system of claim 3, wherein said signal processing block converts a video signal to a serial digital interface output.
19. A television monitoring system comprising
a television signal processing block,
at least one video output connected to said processing block,
a video compressor connected to said video output,
at least one audio output connected to said processing block,
an audio compressor connected to said audio output, and
a data network connected to said video compressor and said audio compressor, and to at least one monitoring station
whereby the data network receives outputs of said video compressor and said audio compressor in order to monitor the status of the signal outputs of said signal processing block.
20. The television monitoring system of claim 19, wherein signals received by said data network are controlled by commands transmitted from said data network.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A gear box for a wind turbine generator which increases a speed of rotation of a wind turbine blade, the gear box comprising:
step-up gears adapted such that the rotation of the wind turbine blade is transmitted thereto, at least one of the step-up gears being rotatably supported at a rotation shaft thereof by at least two bearings; and
at least one of the bearings includes a pre-load applying member adapted to partially press the bearing from outside for increasing a contact pressure between an outer ring supported by a casing of the gear box, an inner ring mounted on the rotation shaft, and a rolling element provided between the outer ring and the inner ring.
2. The gear box for a wind turbine generator according to claim 1, wherein the pre-load applying member is a sleeve which has a non-circular-shaped inside surface and is adapted such that the outer ring in the bearing is fitted therein.
3. The gear box for a wind turbine generator according to claim 2, wherein the sleeve includes two separated members which are separated in a circumferential direction.
4. The gear box for a wind turbine generator according to claim 1, wherein the pre-load applying member is a screw member adapted to be inserted and extracted in a radial direction of the outer ring in the bearing.
5. The gear box for a wind turbine generator according to claim 1, wherein
the pre-load applying member includes a pin adapted to be inserted and extracted in a radial direction of the outer ring in the bearing, and a driving source for driving the pin to insert and extract the pin.
6. The gear box for a wind turbine generator according to claim 5, further comprising
a control portion adapted to cause the driving source to insert and extract the pin according to the rotation speed of the wind turbine.
7. The gear box for a wind turbine generator according to claim 1, wherein
the rotation shaft is provided with a tapered portion having a gradually increasing outer diameter,
the bearing is provided by fitting the inner ring to the tapered portion, and
a pressing screw for pressing the bearing in a direction of the increase of the outer diameter of the tapered portion is provided as the pre-load applying member.
8. The gear box for a wind turbine generator according to claim 1, wherein
the rolling element has a hollow circular-cylindrical shape.
9. The gear box for a wind turbine generator according to claim 1, wherein
the rolling element is made of ceramic.
10. The gear box for a wind turbine generator according to claim 1, wherein
the bearing is adapted to bind the rotation shaft in radial directions and to allow the rotation shaft to be displaced in an axial direction.
11. The gear box for a wind turbine generator according to claim 10, wherein
the bearing is provided slidably in the axial direction of the rotation shaft.
12. A rotation-shaft supporting structure comprising:
at least two bearings adapted to rotatably support a rotation shaft, wherein
at least one of the bearings includes a pre-load applying member adapted to partially press the bearing from outside for increasing a contact pressure between an outer ring in the bearing, an inner ring mounted on the rotation shaft, and a rolling element provided between the outer ring and the inner ring.