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K-MD2-RFB-01F-01 数据表(PDF) 11 Page - RFbeam Microwave GmbH |
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K-MD2-RFB-01F-01 数据表(HTML) 11 Page - RFbeam Microwave GmbH |
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11 / 23 page ![]() © RFbeam Microwave GmbH | Schuppisstrasse 7 | CH-9016 St. Gallen | www.rfbeam.ch | K-MD2 Engineering Sample | data sheet 07/2018 – Revision A | Page 11/23 Tracking With a set of parameters the number of tracked targets can be influenced. On each frame the range, speed and direction of every track is updated. An al- pha-beta-gamma tracker is used, whereby the speed is updated with the current acceleration estimate, and the range is updated with the current speed estimate. Track Life (PSBL, PSTL) The list of detected peaks is compared with the updated list of known tracks. If a peak matches an existing track, it is marked as associated and the life of the track is increased. If no peak is found for the track, the life of the track is decreased. If there is no existing track for the peak a new track is created. Once the life of a track reaches a minimum threshold it is reported as a confirmed track. The life of a track is limited, in that it will be lost if no detections are as- sociated with it for the maximum track life. Note that the track will no longer be reported once the track life reaches the minimum threshold. Range and Speed Jitter (PSRJ, PSSJ) Every new detected target is compared to the known tracks. If the range and the speed of the new target are within the jitter values around the track’s speed and range the target is assigned to the track and the track is updated. Assume Constant Speed (PSCS) When assuming constant speed is on, the tracking al- gorithm allows only small changes in speed between each measurement. This is useful when objects are moving slowly or are moving towards or away from the radar at high speed (e.g. looking along a road). It can result in tracks being lost if the speed chan- ges quickly. When assuming constant speed is off, the tracking algorithm allows large changes in speed. This is useful when objects are moving across the field of view such that their speed towards the radar changes rapidly as they pass the radar (e.g. looking across a road). It can result in tracks being split if the speed information is noisy. Direction Threshold The ‘ direction_error_threshold’ is used when comparing new detections to existing tracks. The track will follow the detection that most closely matches the predicted range, speed and direction of the track. If all of the detections have a difference in direction greater than the ‘ direction_error_th- reshold’, the strongest detection with a matching range and speed is used. The value should be set to zero if no multiple object with a similar range and speed are expected, so the strongest signal (within the jitter thresholds) is always tracked. If multiple objects with the same range and speed are expected (e.g. when looking along a multi-lane road) the value can be: – set small (e.g. 5 degrees) so that the direction is only used if it matches the track reasonably well, otherwise the strongest signal is used; or – set high (e.g. 45 degrees) so that the detection with the closest match in direction is always used (even if there is a big difference). Using smaller values can result in tracks being merged. Using larger values can result in tracks being split. |
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