This letter deals with the robust joint design of radar transmit waveform and receive filter bank in a background of range unambiguous signal-dependent clutter. Assuming an unknown Doppler shift for the target, the worst-case Signal-to-Interference-plus-Noise-Ratio (SINR) at the output of the receive filter bank is considered as the figure of merit. The transceiver design is pursued considering a max-min optimization problem with some constraints on the transmit energy, similarity, and signal dynamic range. Hidden convexity is shown and a procedure to derive optimal waveform and filters is given. Simulation results highlight the effectiveness of the devised method
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
We consider the design of radar systems that are capable of using knowledge of their interference en...
In this paper, the problem of joint transmit waveform and receive filter design for dual-function ra...
This letter deals with the robust joint design of radar transmit waveform and receive filter bank in...
In this report, we have formulated a novel optimal radar waveform design problem by combining the si...
AbstractIt is an important problem for radar to transmit different waveforms according to different ...
This correspondence considers the problem of robust waveform design in the presence of colored Gauss...
We focus on the robust joint design of the transmit waveform and filtering structure for polarimetri...
The problem of robust waveform design for multiple-input, multiple-output radars equipped with widel...
Radar waveform design is of great importance for radar system performances and has drawn considerabl...
We focus on the robust joint design of the transmit waveform and filtering structure for Polarimetri...
Modern signal generators offer the capability to synthesize arbitrary wideband waveforms for radar a...
This thesis discusses mathematical optimization techniques for waveform design in cognitive radars. ...
A novel computationally efficient method for jointly designing the space-(slow) time (SST) transmiss...
Modern wideband radar systems with long integration time, equipped with arbitrarily waveform generat...
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
We consider the design of radar systems that are capable of using knowledge of their interference en...
In this paper, the problem of joint transmit waveform and receive filter design for dual-function ra...
This letter deals with the robust joint design of radar transmit waveform and receive filter bank in...
In this report, we have formulated a novel optimal radar waveform design problem by combining the si...
AbstractIt is an important problem for radar to transmit different waveforms according to different ...
This correspondence considers the problem of robust waveform design in the presence of colored Gauss...
We focus on the robust joint design of the transmit waveform and filtering structure for polarimetri...
The problem of robust waveform design for multiple-input, multiple-output radars equipped with widel...
Radar waveform design is of great importance for radar system performances and has drawn considerabl...
We focus on the robust joint design of the transmit waveform and filtering structure for Polarimetri...
Modern signal generators offer the capability to synthesize arbitrary wideband waveforms for radar a...
This thesis discusses mathematical optimization techniques for waveform design in cognitive radars. ...
A novel computationally efficient method for jointly designing the space-(slow) time (SST) transmiss...
Modern wideband radar systems with long integration time, equipped with arbitrarily waveform generat...
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
We consider the design of radar systems that are capable of using knowledge of their interference en...
In this paper, the problem of joint transmit waveform and receive filter design for dual-function ra...