| Literature DB >> 33286950 |
Yu Xiao1,2, Zhenghong Deng1, Tao Wu3.
Abstract
This study investigates the information-theoretic waveform design problem to improve radar performance in the presence of signal-dependent clutter environments. The goal was to study the waveform energy allocation strategies and provide guidance for radar waveform design through the trade-off relationship between the information theory criterion and the signal-to-interference-plus-noise ratio (SINR) criterion. To this end, a model of the constraint relationship among the mutual information (MI), the Kullback-Leibler divergence (KLD), and the SINR is established in the frequency domain. The effects of the SINR value range on maximizing the MI and KLD under the energy constraint are derived. Under the constraints of energy and the SINR, the optimal radar waveform method based on maximizing the MI is proposed for radar estimation, with another method based on maximizing the KLD proposed for radar detection. The maximum MI value range is bounded by SINR and the maximum KLD value range is between 0 and the Jenson-Shannon divergence (J-divergence) value. Simulation results show that under the SINR constraint, the MI-based optimal signal waveform can make full use of the transmitted energy to target information extraction and put the signal energy in the frequency bin where the target spectrum is larger than the clutter spectrum. The KLD-based optimal signal waveform can therefore make full use of the transmitted energy to detect the target and put the signal energy in the frequency bin with the maximum target spectrum.Entities:
Keywords: SINR constraint; energy allocation strategies; frequency domain; information–theoretic; waveform optimization
Year: 2020 PMID: 33286950 PMCID: PMC7597353 DOI: 10.3390/e22101182
Source DB: PubMed Journal: Entropy (Basel) ISSN: 1099-4300 Impact factor: 2.524
Figure 1The maximum mutual information (MI) value versus signal-to-interference-plus-noise ratio (SINR) in the presence or absence of clutter.
Figure 2MI-based radar waveform design.
Figure 3The maximum Kullback–Leibler divergence (KLD) value versus SINR in the presence or absence of clutter.
Figure 4The KLD-based radar waveform design.
Figure 5Detection probability curves corresponding to optimal waveforms and linear frequency modulated (LFM) waveforms.