Hamdi, M. N. M. and Sha'Ameri, A. Z. (2018) Time-frequency represetation of radar signals using Doppler-lag block searching Wigner-Ville distribution. Advances in Electrical and Electronic Engineering, 6 (3). pp. 318-313. ISSN 1336-1376
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Official URL: http://dx.doi.org/10.15598/aeee.v16i3.2633
Abstract
Radar signals are time-varying signals where the signal parameters change over time. For these signals, Quadratic Time-Frequency Distribution (QTFD) offers advantages over classical spectrum estimation in terms of frequency and time resolution but it suffers heavily from cross-terms. In generating accurate Time-Frequency Representation (TFR), a kernel function must be able to suppress crossterms while maintaining auto-terms energy especially in a non-cooperative environment where the parameters of the actual signal are unknown. Thus, a new signaldependent QTFD is proposed that adaptively estimates the kernel parameters for a wide class of radar signals. The adaptive procedure, Doppler-Lag Block Searching (DLBS) kernel estimation was developed to serve this purpose. Accurate TFRs produced for all simulated radar signals with Instantaneous Frequency (IF) estimation performance are verified using Monte Carlo simulation meeting the requirements of the Cramer-Rao Lower Bound (CRLB) at SNR > 6 dB.
Item Type: | Article |
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Uncontrolled Keywords: | Adaptive procedure, Auto-terms, Cramer-Rao lower bound, Cross-terms, Kernel function, Quadratic time-frequency distribution |
Subjects: | T Technology > TK Electrical engineering. Electronics Nuclear engineering |
Divisions: | Electrical Engineering |
ID Code: | 79881 |
Deposited By: | Narimah Nawil |
Deposited On: | 28 Jan 2019 06:58 |
Last Modified: | 28 Jan 2019 06:58 |
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