Doppler measurement method for solving target migration through range cell
A technology of distance unit walking and measurement methods, which is applied in the field of measurement applications, can solve problems such as detection performance degradation and signal-to-noise ratio loss, and achieve the effects of improving measurement accuracy, reducing signal-to-noise ratio loss, and improving energy use efficiency
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Embodiment 1
[0043] Such as figure 1As shown, select a target with a velocity of 400m / s, and perform 512-order filtering on it. Step A, determine the minimum velocity v1 and maximum velocity v2 in the radial direction of the target detected by the radar; step B, radar sampling rate fs, distance resolution Rmin is fs*c / 2, where c is the speed of light. Step C, the radar repetition period is T, the slowest target cross-distance unit needs t1=Rmin / v1, the fastest target cross-distance unit needs t2=Rmin / v2, n1=t1 / T, n2=t2 / T; in step D N 1 is the largest integer power of 2 not greater than n1, N m is the largest integer power not greater than n2. Step E, at N 1 and N m There are a total of m integer powers of 2 (N1, N2...Nm), considering that N m It may be very large, and m is also very large. At this time, choose an appropriate number of filter banks m 1 , if m is small, take m 1 =m. Step F, sort and align the sampled echoes in order of time, and the number of accumulated pulses is N...
Embodiment 2
[0045] Such as figure 2 As shown, select a target with a speed of 400m / s, and perform 1024-order filtering on it. Step A, determine the minimum speed v1 and maximum speed v2 in the radial direction of the radar detection target; Step B, radar sampling rate fs, distance resolution Rmin is fs*c / 2, where c is the speed of light. Step C, the radar repetition period is T, the slowest target cross-distance unit needs t1=Rmin / v1, the fastest target cross-distance unit needs t2=Rmin / v2, n1=t1 / T, n2=t2 / T; in step D N 1 is the largest integer power of 2 not greater than n1, N m is the largest integer power not greater than n2. Step E, at N 1 and N m There are a total of m integer powers of 2 (N1, N2...Nm), considering that N m It may be very large, and m is also very large. At this time, choose an appropriate number of filter banks m 1 , if m is small, take m 1 = m. Step F, sort and align the sampled echoes in order of time, and the number of accumulated pulses is Nm1, and m1 ...
Embodiment 3
[0047] Such as image 3 As shown, select a target with a velocity of 400m / s, and perform 2048-order filtering on it. Step A, determine the minimum velocity v1 and maximum velocity v2 in the radial direction of the target detected by the radar; step B, radar sampling rate fs, distance resolution Rmin is fs*c / 2, where c is the speed of light. Step C, the radar repetition period is T, the slowest target cross-distance unit needs t1=Rmin / v1, the fastest target cross-distance unit needs t2=Rmin / v2, n1=t1 / T, n2=t2 / T; in step D N 1 is the largest integer power of 2 not greater than n1, N m is the largest integer power not greater than n2. Step E, at N 1 and N m There are a total of m integer powers of 2 (N1, N2...Nm), considering that N m It may be very large, and m is also very large. At this time, choose an appropriate number of filter banks m 1 , if m is small, take m 1 =m. Step F, sort and align the sampled echoes in order of time, and the number of accumulated pulses is...
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