Ünlü [4] has developed a chance-constrained programming method which is in short called CCP-W-DPC. Ünlü [6] has applied it to an optimal linear system design which satisfies some chance-constraints. Now the author is studying a new applicational problem by inspiration from his earlier works. In the problem: a detectable object O is assumed to exist in the sky. On the earth a radar, R, is located at location Q1 and a detector, D, located at another location Q2, <Q1OQ2 + <OQ1Q2 + <OQ2Q1 = 180°. The aim of this research is to find an optimal radar signal according to the amplification, by sending signals to O from Q1 and detecting them by D at Q2. © 1984
This correspondence considers the problem of robust waveform design in the presence of colored Gauss...
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
In this paper, we deal with the problem of constrained code optimization for radar Space-Time Adapti...
In a typical radar system, the same hypothesis testing problem is periodically repeated to constantl...
This paper considers the problem of radar waveform design in the presence of colored Gaussian distur...
In this paper, we deal with the problem of constrained code optimization for radar space-time adapti...
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
For a ying military vehicle, avoiding detection can be a key objective. To achieve this, ying the le...
We derive the optimal Neyman-Pearson (NP) detector and its performance, and then present a methodolo...
This paper considers the problem of radar waveform design in the presence of colored Gaussian distur...
Dual functional radar communication (DFRC) is a promising approach that provides a viable solution f...
Mission planners for aircraft operating under threat of detection from ground-based radar systems ar...
Technological advancement in battlefield and surveillance applications switch the radar investigator...
This paper presents a low probability of interception (LPI) radar waveform design method with a fixe...
This correspondence considers the problem of robust waveform design in the presence of colored Gauss...
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
In this paper, we deal with the problem of constrained code optimization for radar Space-Time Adapti...
In a typical radar system, the same hypothesis testing problem is periodically repeated to constantl...
This paper considers the problem of radar waveform design in the presence of colored Gaussian distur...
In this paper, we deal with the problem of constrained code optimization for radar space-time adapti...
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
For a ying military vehicle, avoiding detection can be a key objective. To achieve this, ying the le...
We derive the optimal Neyman-Pearson (NP) detector and its performance, and then present a methodolo...
This paper considers the problem of radar waveform design in the presence of colored Gaussian distur...
Dual functional radar communication (DFRC) is a promising approach that provides a viable solution f...
Mission planners for aircraft operating under threat of detection from ground-based radar systems ar...
Technological advancement in battlefield and surveillance applications switch the radar investigator...
This paper presents a low probability of interception (LPI) radar waveform design method with a fixe...
This correspondence considers the problem of robust waveform design in the presence of colored Gauss...
This paper deals with the design of coded waveforms which optimize radar performances in the presenc...
In this paper, we deal with the problem of constrained code optimization for radar Space-Time Adapti...