1. A drive train, comprising:
a gearbox including a gearbox housing;
a generator including a generator housing; and
a lubricating oil system including an oil reservoir configured to lubricate toothed contact areas andor bearings arranged within the gearbox housing, said oil reservoir arranged within the generator housing or on an exterior side of the generator housing.
2. The drive train of claim 1, wherein the oil reservoir is arranged at least partially above a static oil level.
3. The drive train of claim 1, wherein the oil reservoir is arranged at least partially below a static oil level.
4. The drive train of claim 1, wherein the generator has a generator shaft defining an axis, said oil reservoir being arranged in concentric relationship to the axis of the generator shaft.
5. The drive train of claim 1, wherein the gearbox includes at least one gearbox stage, said at least one gearbox stage being formed by a planetary gearbox.
6. The drive train of claim 1, wherein the gearbox is configured to have plural gearbox stages, none of said gearbox stages being formed by a helical gearbox.
7. The drive train of claim 1, wherein the gearbox housing and the generator housing are connected to each other.
8. The drive train of claim 1, wherein the gearbox housing and the generator housing are flange-mounted to each other.
9. The drive train of claim 1, wherein the generator comprises a generator cooling circuit, said lubricating oil system being operatively connected to the generator cooling circuit.
10. The drive train of claim 1, wherein the lubricating oil system is configured to lubricate a drive train component arranged outside of the gearbox housing, or lubricate bearings arranged in the generator housing and accommodating a generator shaft of the generator.
11. The drive train of claim 1, further comprising a rotor shaft and rotor mounted on the rotor shaft, said lubricating oil system being configured to lubricate a bearing block provided to support the rotor shaft.
12. The drive train of claim 1, wherein the generator has a generator shaft of hollow configuration to form an oil-conducting pipe of the lubricating oil system.
13. A wind power plant, comprising a drive train, said drive train comprising a gearbox including a gearbox housing, a generator including a generator housing, and a lubricating oil system including an oil reservoir configured to lubricate toothed contact areas andor bearings arranged within the gearbox housing, said oil reservoir arranged within the generator housing or on an exterior side of the generator housing.
14. The wind power plant of claim 13, wherein the oil reservoir is arranged at least partially above a static oil level, or at least partially below a static oil level, or in concentric relationship to a generator shaft of the generator.
15. The wind power plant of claim 13, wherein the gearbox includes at least one gearbox stage, said at least one gearbox stage being formed by a planetary gearbox.
16. The wind power plant of claim 13, wherein the gearbox housing and the generator housing are flange-mounted to each other.
17. The wind power plant of claim 13, wherein the generator comprises a generator cooling circuit, said lubricating oil system being operatively connected to the generator cooling circuit.
18. The wind power plant of claim 13, wherein the lubricating oil system is configured to lubricate a drive train component arranged outside of the gearbox housing, or lubricate bearings arranged in the generator housing and accommodating a generator shaft of the generator.
19. The wind power plant of claim 13, wherein the drive train includes a rotor shaft and rotor mounted on the rotor shaft, said lubricating oil system being configured to lubricate a bearing block provided to support the rotor shaft.
20. The wind power plant of claim 13, wherein the generator has a generator shaft of hollow configuration to form an oil-conducting pipe of the lubricating oil system.
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. An image processing apparatus, comprising:
a communication interface unit configured to receive video content; and
a genre conceiver configured to extract feature information of an arbitrary frame of received video content and to conceive a genre of an updated frame with reference to extracted feature information in response to the arbitrary frame being updated.
2. The image processing apparatus as claimed in claim 1, further comprising a user interface unit configured to set at least one user information for searching for, storing, skipping, and watch-limiting data corresponding to a conceived genre, wherein the genre conceiver processes the video content based on set user information and the conceived genre.
3. The image processing apparatus as claimed in claim 1, wherein the genre conceiver conceives the genre based on at least one feature information of color, texture, motion feature and edge feature of the frame, and textural and object content present in a video frame.
4. The image processing apparatus as claimed in claim 1, wherein the genre conceiver comprises a detector configured to detect whether there is a break between a previous frame and a current frame, and in response to the break occurring as a detection result, stores feature information of the current frame.
5. The image processing apparatus as claimed in claim 4, wherein the genre conceiver stores the feature information of the current frame at a period corresponding to a predetermined interval of time when there is no break between the current frame and the previous frame.
6. The image processing apparatus as claimed in claim 1, further comprising a storage unit, wherein the genre conceiver detects feature information of the updated frame, separates detected feature information, and stores separated feature information in the storage unit.
7. The image processing apparatus as claimed in claim 1, wherein:
the genre conceiver comprises a plurality of feature information detectors configured to respectively detect a plurality of feature information with different features; and
the plurality of feature information detectors comprise a model selected by a training process for searching for a model appropriate for genre detection.
8. The image processing apparatus as claimed in claim 7, wherein the genre conceiver is operated in a training mode for the training process, processes data instances of a video data set of the video content by principle component analysis (PCA) in the training mode, and searches for an appropriate model by using a K-means scheme for representative instances for model training and by clustering the representative instances.
9. The image processing apparatus as claimed in claim 1, further comprising a video processor configured to enhance video of a conceived genre.
10. The image processing apparatus as claimed in claim 1, further comprising a tuner configured to automatically skip a channel until a channel of a conceived genre is retrieved.
11. The image processing apparatus as claimed in claim 1, further comprising a controller configured to one of limit recording and limiting watching an image of a conceived genre.
12. An image processing method, comprising:
receiving video content;
extracting feature information of an arbitrary frame of received video content; and
conceiving a genre of an updated frame with reference to extracted feature information in response to the arbitrary frame being updated.
13. The image processing method as claimed in claim 12, further comprising:
setting at least one user information for searching for, storing, skipping, and watch-limiting data corresponding to a conceived genre; and
processing the video content based on set user information and the conceived genre.
14. The image processing method as claimed in claim 12, wherein the conceiving comprises conceiving the genre based on at least one feature information of color, texture, motion feature and edge feature of the frame, and textural and object content present in a video frame.
15. The image processing method as claimed in claim 12, wherein the conceiving comprises detecting whether there is a break between a previous frame and a current frame, and in response to the break occurring as a detection result, storing feature information of the current frame.
16. The image processing method as claimed in claim 15, wherein the conceiving comprises storing the feature information of the current frame at a period corresponding to a predetermined interval of time when there is no break between the current frame and the previous frame.
17. The image processing method as claimed in claim 12, wherein the conceiving comprises;
detecting feature information of the updated frame; and
separating detected feature information and storing separated feature information in a storage unit.
18. The image processing method as claimed in claim 12, wherein:
the conceiving comprises respectively detecting a plurality of feature information with different features; and
a plurality of detected feature information are detected by embodying a model selected by a training process for searching for a model appropriate for genre detection.
19. The image processing method as claimed in claim 18, wherein:
the conceiving is operated in a training mode for the training process, and comprises processing data instances of a video data set of the video content by principle component analysis (PCA) in the training mode, and using a K-means scheme for representative instances for model training to search for an appropriate model and clustering the representative instances.
20. A non-transitory computer readable recording medium having a program for executing an image processing method, the method comprising:
receiving video content;
extracting feature information of an arbitrary frame of received video content; and
conceiving a genre of an updated frame with reference to extracted feature information in response to the arbitrary frame being updated.