In this paper, we introduce a frequency-based Direction of Arrival (DoA) estimation technique for wideband radar systems employing Linear Frequency Modulated (LFM) signals. Conventional phase-comparison monopulse is subject to estimation ambiguities, especially in the case of a large baseline distance. In contrast, the proposed frequency-comparison monopulse leverages the time-to-frequency mapping property of LFM signals, enabling unambiguous DoA estimation for any antenna spacing. By leveraging a fully digital generation method for LFM signals implemented on the ZCU111 FPGA platform, we carry out a validation test of the frequency-comparison monopulse, demonstrating its effectiveness in addressing the limitations of conventional monopulse.
Radar Frequency-Comparison Monopulse Validation Using FPGA-Generated Wideband Chirp Waveforms
Bongioanni, Carlo;
2025-01-01
Abstract
In this paper, we introduce a frequency-based Direction of Arrival (DoA) estimation technique for wideband radar systems employing Linear Frequency Modulated (LFM) signals. Conventional phase-comparison monopulse is subject to estimation ambiguities, especially in the case of a large baseline distance. In contrast, the proposed frequency-comparison monopulse leverages the time-to-frequency mapping property of LFM signals, enabling unambiguous DoA estimation for any antenna spacing. By leveraging a fully digital generation method for LFM signals implemented on the ZCU111 FPGA platform, we carry out a validation test of the frequency-comparison monopulse, demonstrating its effectiveness in addressing the limitations of conventional monopulse.| File | Dimensione | Formato | |
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Radar_Frequency-Comparison_Monopulse_Validation_Using_FPGA-Generated_Wideband_Chirp_Waveforms.pdf
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