System and method for radar range walk compensation in radar systems
A radar system that uses a range walk compensation algorithm to reduce system losses resulting from moving targets. During the coherent integration of pulse radar systems, the conventional Fast Fourier Transform (FFT) for Doppler processing needs to change the input range bin number in accordance to the velocity of the target. The algorithm allows for configuration of Doppler groups to compute several Dopplers with one FFT. Each Doppler group has a transform Doppler that is close to the center of the group which will dictate the change of range bins for the input data to the FFT. As the range bins are changed, there are two input filter techniques: nearest bin select, and 2-tap filter. After range walk compensation processes all Doppler groups by FFT, the resultant output block has much higher coherent integration as compared to just a conventional FFT.
1 . A radar system comprising:
a plurality of transmitters configured to transmit radio signals;
a plurality of receivers configured to receive radio signals that include radio signals transmitted by the transmitters and reflected from objects in an environment;
wherein at least one of the receivers of the plurality of receivers is operable to perform a range walk compensation for each range bin of a plurality of range bins that enhances coherent integration to reduce system loss by executing a plurality of FFTs for coherent integration of radar pulses for each respective range bin of the plurality of range bins, wherein the at least one of the receivers is operable to perform a separate FFT of the plurality of FFTs on each of a plurality of groups of radar pulses in each range bin of the plurality of range bins.
2 . The radar system of claim 1 , wherein the at least one of the receivers is operable to perform the range walk compensation by creating a plurality of Doppler groups for each range bin coherent integration, wherein the plurality of Doppler groups are the plurality of groups of radar pulses, with one FFT executed per Doppler group using the center group Doppler of each respective Doppler group to predict the change in range bins.
3 . The radar system of claim 2 , wherein the center group Doppler of a Doppler group is defined with respect to upper and lower Doppler boundaries of the Doppler group.
4 . The radar system of claim 1 , wherein the at least one of the receivers is operable to perform the range walk compensation by using a division factor, a fractional walk factor, to create a uniform group of Dopplers across the entire coverage of supported target velocities.
5 . The radar system of claim 1 , wherein the at least one of the receivers is operable to perform the range walk compensation using a nearest bin select or a 2-tap filter to filter the FFT input data as the predicted Doppler affects changes to range bins during a coherent integration time.
6 . A method for controlling a radar system, the method including:
transmitting, with a plurality of transmitters, radio signals;
receiving, with a plurality of receivers, radio signals that include radio signals transmitted by the transmitters and reflected from objects in an environment; and
performing a range walk compensation for each range bin of a plurality of range bins to enhance coherent integration to reduce system loss by executing a plurality of FFTs for coherent integration of radar pulses for each respective range bin of the plurality of range bins, and performing a separate FFT of the plurality of FFTs on each of a plurality of groups of radar pulses in each range bin of the plurality of range bins.
7 . The method of claim 6 , wherein performing the range walk compensation comprises creating a plurality of Doppler groups for each range bin coherent integration, wherein the plurality of Doppler groups are the plurality of groups of radar pulses, with one FFT executed per Doppler group using the center group Doppler of each respective Doppler group to predict the change in range bins.
8 . The method of claim 6 , wherein performing the range walk compensation comprises using a division factor, a fractional walk factor to create a uniform group of Dopplers across the entire coverage of supported target velocities.
9 . The method of claim 6 , wherein performing the range walk compensation comprises using a nearest bin select or a 2-tap filter to filter the FFT input data as the predicted Doppler affects changes to range bins during a coherent integration time.
10 . The radar system of claim 6 , wherein the center group Doppler of a Doppler group is defined with respect to upper and lower Doppler boundaries of the Doppler group.
11 . A radar system comprising:
a transmitter configured to transmit radio signals;
a receiver configured to receive radar signals that include radio signals transmitted by the transmitter and reflected from objects in an environment;
wherein the receiver is operable to perform range walk compensation for each range bin of a plurality of range bins that enhances coherent integration to reduce system loss by executing a plurality of FFTs for coherent integration of radar pulses for each respective range bin of the plurality of range bins, wherein the receiver is operable to perform a separate FFT of the plurality of FFTs on each of a plurality of groups of radar pulses in each range bin of the plurality of range bins.
12 . The radar system of claim 11 , wherein the receiver is operable to perform the range walk compensation by creating a plurality of Doppler groups for each range bin coherent integration, wherein the plurality of Doppler groups are the plurality of groups of radar pulses, with one FFT executed per Doppler group using the center group Doppler of each respective Doppler group to predict the change in range bins.
13 . The radar system of claim 12 , wherein the center group Doppler of a Doppler group is defined with respect to upper and lower Doppler boundaries of the Doppler group.
14 . The radar system of claim 11 , wherein the receiver is operable to perform the range walk compensation by using a division factor, a fractional walk factor, to create a uniform group of Dopplers across the entire coverage of supported target velocities.
15 . The radar system of claim 11 , wherein the receiver is operable to perform the range walk compensation using a nearest bin select or a 2-tap filter to filter the FFT input data as the predicted Doppler affects changes to range bins during a coherent integration time.