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Error Correction In Low-Cost Off-Axis Doppler Radar Readings

  • US 20170059700A1
  • Filed: 05/10/2016
  • Published: 03/02/2017
  • Est. Priority Date: 08/28/2015
  • Status: Abandoned Application
First Claim
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1. A method for determining the speed of a projectile using a radar signal acquired by a radar speed detector said detector having an axis of detection and said projectile having a velocity axis, said detector further providing Doppler signal data from said projectile, said method comprising:

  • a. acquire a plurality of Doppler signal data points for a plurality of times as the projectile approaches the radar detector, each data point indicating a measured speed of the projectile,b. truncate the plurality of Doppler signal data points by removing points at the earliest times and the latest times, points removed selected for times before the projectile is detected and for times after the projectile has passed the detector, thereby producing truncated data,c. develop an equation for computing the speed of the projectile requiring at most two independent parameters,d. calculate an estimated value for the first parameter in the equation for the speed of the projectile from the truncated data,e. calculate a plurality of bounding curves said curves being data of speed and time and based upon the estimated value of the first parameter and a plurality of estimates for the value of the second parameter in the equation,f. select two of the bounding curves from the plurality of bounding curves said two curves selected from the plurality of bounding curves as those two that include within their bounds the maximum number of data points of the truncated data and the minimum difference in the estimates of the second parameter,g. estimate the value of the second parameter as the midpoint of the estimated values of the second parameter for the two selected bounding curves,h. estimate a new value for the first parameter based upon the estimated value of the second parameter,i. iteratively estimate the values of the first and second parameters by repeating steps d-h until a converged value is obtained for the estimated speed.

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