A radar apparatus in which an interpolated sweep between adjacent real sweeps is formed irrespective of an interval between the real sweeps, and image data corresponding to one cycle of sweeping can be certainly updated. A sweep azimuth generator (12) generates and outputs an azimuth of sweep interp
A radar apparatus in which an interpolated sweep between adjacent real sweeps is formed irrespective of an interval between the real sweeps, and image data corresponding to one cycle of sweeping can be certainly updated. A sweep azimuth generator (12) generates and outputs an azimuth of sweep interpolated between a current and previous real sweep azimuth based on the current and previous real sweep azimuths, to a draw address generator (7). A sweep data generator (11) performs linear interpolation based on solitariness removed data of current real sweep data read from a sweep memory (4), and the previous solitariness removed real sweep data stored therein to generate and output interpolated sweep data to an image memory (8). The image memory (8) stores the solitariness removed real sweep data or the interpolated sweep data based on the real and interpolated sweep azimuths from the draw address generator (7), and outputs them to a display (9).
대표청구항▼
The invention claimed is: 1. A radar apparatus for forming detection data from real sweep data successively formed based on a detection signal received by an antenna, and interpolated sweep data that is interpolated between adjacent pieces of the real sweep data in an azimuth direction, the device
The invention claimed is: 1. A radar apparatus for forming detection data from real sweep data successively formed based on a detection signal received by an antenna, and interpolated sweep data that is interpolated between adjacent pieces of the real sweep data in an azimuth direction, the device comprising: interpolated sweep azimuth calculator for calculating a sweep azimuth of an interpolated sweep formed between a current real sweep and the previous real sweep based on a sweep azimuth of the current real sweep and a sweep azimuth of the previous real sweep, and sweep data former for calculating interpolated sweep data between current real sweep data and the previous real sweep data based on the current real sweep data and the previous real sweep data, wherein sweep data is formed based on the calculated interpolated sweep data and the real sweep data. 2. The radar apparatus according to claim 1, wherein the interpolated sweep data is composed of a linearly interpolated value between the previous real sweep data and the current real sweep data present on the same position in a sweep distance direction. 3. The radar apparatus according to claim 1 or 2, wherein the sweep data former comprises: corrected real sweep data former for, when, among a plurality of pieces of data of the real sweep data arranged in a distance direction, solitary data having a value larger than or equal to a predetermined threshold value is present in a predetermined range, converting the solitary data into corrected real sweep data, and corrected interpolated sweep data calculator for calculating corrected interpolated sweep data based on the corrected real sweep data formed by the corrected real sweep data former, and forms the sweep data based on the corrected real sweep data and the corrected interpolated sweep data. 4. A radar apparatus for forming detection image data from real sweep data successively formed based on a detection signal received by an antenna, and interpolated sweep data that is interpolated between adjacent pieces of the real sweep data in an azimuth direction, the device comprising: corrected real sweep data former for, when, among a plurality of pieces of data of the real sweep data arranged in a distance direction, solitary data having a value larger than or equal to a predetermined threshold value is present in a predetermined range, converting the solitary data into corrected real sweep data, and corrected interpolated sweep data calculator for calculating corrected interpolated sweep data based on the corrected real sweep data formed by the corrected real sweep data former, wherein sweep data is formed based on the corrected real sweep data and the corrected interpolated sweep data. 5. A sweep data forming method for a radar apparatus which forms detection data from real sweep data successively formed based on a detection signal received by an antenna, and interpolated sweep data that is interpolated between adjacent pieces of the real sweep data in an azimuth direction, the method comprising the steps of: calculating a sweep azimuth of an interpolated sweep formed between a current real sweep and the previous real sweep based on a sweep azimuth of the current real sweep and a sweep azimuth of the previous real sweep, calculating interpolated sweep data between current real sweep data and the previous real sweep data based on the current real sweep data and the previous real sweep data, and forming the sweep data based on the calculated interpolated sweep data, the real sweep data, and the sweep azimuth. 6. A sweep data forming method for a radar apparatus which forms detection data from real sweep data successively formed based on a detection signal received by an antenna, and interpolated sweep data that is interpolated between adjacent pieces of the real sweep data in an azimuth direction, the method comprising the steps of, when, among a plurality of pieces of data of the real sweep data arranged in a distance direction, solitary data having a value larger than or equal to a predetermined threshold value is present in a predetermined range: converting the solitary data into corrected real sweep data, calculating corrected interpolated sweep data based on the corrected real sweep data, and forming the sweep data based on the corrected real sweep data and the corrected interpolated sweep data.
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이 특허에 인용된 특허 (17)
Nitadori Kazuhiko (Tokyo JPX), Digital scan converter.
Henri Jean-Claude (Boulogne Billancourt FRX) Andrieu Jean-Pierre (Paris FRX), Method and a device for extending the range of radar recurrence frequencies acceptable by a digital image converter.
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