自动封皮检测系统毕业论文外文翻译.doc
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1、自动封皮检测系统Automatic envelope measuring systemABSTRACTA system for automatically measuring a clearance envelope about a path of travel in a specific embodiment includes a laser and a rotating reflector mounted on a moving vehicle for radially scanning the region around the path of travel in a direction
2、 generally perpendicular to the path of travel. A television camera is mounted on the vehicle and is responsive to light from the laser that has been reflected by objects located within the viewing field of the camera. The television camera is radially scanned and provides analog video signals repre
3、sentative of the radial distances between the reflector and the scanned objects. An analog video tape recorder is utilized to record on video tape the distance representative video signals together with binary codes or identification numbers identifying the camera radial scanning information. The vi
4、deo tape may be played at a central or home office where the distance representative analog video signals may be converted to digital computer compatible binary form for suitable processing and storing by the computer.AUTOMATIC ENVELOPE MEASURING SYSTEMBACKGROUND OF THE INVENTIONA. Field of the Inve
5、ntionThe present invention generally relates to measuring systems and, more particularly, to systems for determining an envelope, such as a clearance or maximum cargo envelope, about a path of travel, for example, a section of railroad tracks.B. Description of the Prior ArtA need exists for railroad
6、s to determine the maximum cargo size that may be transported on a railroad car along a section of railroad track or along a specific railroad route. This need particularly exists when it is desired to transport an oversize load on a railroad car. The clearance or maximum cargo envelope about the ra
7、ilroad track over a particular section or along an entire route must be known before an oversize load can be shipped without fear of damage.In the past, efficient, inexpensive and rapid systems have not been available for determining clearance or maximum cargo envelopes about sections of railroad tr
8、acks. Two prior art devices or systems are described in U.S. Pat. Nos. 3,168,023 (Harmony and 3,705,772: (Andreas). The device described in the Harmon patent utilizes a high pressure arc lamp mounted on a railroad vehicle for projecting a plane of light radially along the path of travel of the vehic
9、le. A photographic camera having a wide angle lens is utilized periodically to photograph and record on a photographic film medium the obstacles along the path of travel illuminated by the plane of light. The resulting photographs may then be viewed on a calibrated viewing screen to determine the cl
10、earance envelope at the point where each photograph was taken.The device described in the Andreas patent utilizes a mobile computer controlled scanning system utilizing a light emitting diode and a rotating mirror to provide a radially directed rotating beam for illuminating objects along the path o
11、f travel. The computer controlled system collects the reflected light beam and ultimately generates binary data representative of the radial distances on a number of points along a preselected portion of each 360 sweep of the beam. The data for each sweep is compared by the mobile computer with the
12、data obtained from successive sweeps. Normally, only the data representing the smallest distance along any radial line is stored by the remote computer and periodically placed on a suitable output medium for further processing by a centrally located computer.While these systems provide a way to dete
13、rmine clearance or maximum cargo envelopes about a path of travel, the photographic system requires each photograph to be individually viewed and the clearance envelope information provided by each photograph to be tabulated. Furthermore, obstacles located between the photographed areas will not be
14、detected. These undetected obstacles can cause damage to a railroad cargo.The computer controlled system provides a more convenient way of collecting and tabulating the results of the radial distance measurements; however, the system is relatively complex and requires the use of a mobile computer to
15、 control the system and to process the data. Such mobile computers are relatively expensive and are subject to damage by the shock and vibrations often encountered on a railroad vehicle. Furthermore, the computer controlled system only stores and output sselected data, such as periodically determine
16、d minimum radial distance data, thereby limiting the flexibility of the system and precluding subsequent error checking of the data by comparing the results of successive scans.SUMMARY OF THE INVENTIONAn object of the present invention is to provide a new and improved envelope measuring system.Anoth
17、er object of the present invention is to provide a new and improved system for automatically measuring a clearance or maximum cargo envelope along a path of travel, such as a section of railroad tracks.Another object of the present invention is to provide a new and improved video system for measurin
18、g a clearance or maximum cargo envelope along a path of travel that provides an analog video tape record of the envelope suitable for subsequent processing by a centrally located digital computer.Another object of the present invention is to provide a new and improved video system for measuring a cl
19、earance or maximum cargo envelope along a path of travel that provides a complete record of all data obtamed.Another object of the present invention is to provide a relatively simple and inexpensive system for automatically measuring a clearance or maximum cargo envelope along a path of travel that
20、does not require the use of a mobile computer.Briefly, in accordance with a preferred embodiment of the present invention, a source of coherent light is mounted on a railroad car and radially scans objects in the proximity of the road bed or tracks. The radially scanned light source is generated by
21、a laser beam that emits a coherent infrared light beam along the direction of travel of the railroad car. The emitted light beam is radially deflected by a rotating mirror or other suitable reflector aligned with the emitted light beam for radially reflecting the emitted light beam in a direction pe
22、rpendicular to the direction of travel of the railroad car to provide a helical scan of the region about the road bed or railroad tracks.A television camera is mounted on the railroad car in close proximity to the laser and receives light from the laser that has been reflected back to the camera by
23、objects in the scanned area. The television camera is radially scanned and generates an analog video signal representative of the shape of the clearance envelope around the road bed. The clearance envelope may be displayed on a radially scanned monitor and is recorded on video tape for subsequent pr
24、ocessing by a remote or centrally located digital computer. A binary code is assigned to each radial scanning line and recorded together with the analog video signal information to indicate the scanning direction corresponding to each line of recorded video information.A centrally located digital co
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