2006Unpublished venueRequires access

Development of Surveillance and Tracking Radar

D. M. Vavriv, V. A. Volkov, S. V. Sosnytskiy, A. V. Shevchenko, R. V. Kozhyn, А. Кравцов, M. P. Vasilevskiy, DENYS ZAIKIN

Open publisher page 3 citations

Abstract

A high-resolution surveillance and tracking radar has been recently developed and tested at the Institute of Radio Astronomy. The radar is a monopulse, all-weather radar with mechanical beam steering. It works in a pulse mode, and a coherent FFT-based signal processing is utilized. The radar is equipped with a clutter suppression system and with a Kalman filtering scheme for trajectory calculation and extrapolation. The radar is suitable for long-range surveillance with a small volume-scanning time and for tracking of highly dynamic, low-sized targets. This paper describes the setup of this radar, its main components, and the signal processing technique used

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What this paper is about

A high-resolution surveillance and tracking radar has been recently developed and tested at the Institute of Radio Astronomy. The radar is a monopulse, all-weather radar with mechanical beam steering. It works in a pulse mode, and a coherent FFT-based signal processing is utilized. The radar is equipped with a clutter suppression system and with a Kalman filtering scheme for trajectory calculation and extrapolation. The radar is suitable for long-range surveillance with a small volume-scanning time and for tracking of highly dynamic, low-sized targets. This paper describes the setup of this radar, its main components, and the signal processing technique used

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Available abstract

A high-resolution surveillance and tracking radar has been recently developed and tested at the Institute of Radio Astronomy. The radar is a monopulse, all-weather radar with mechanical beam steering. It works in a pulse mode, and a coherent FFT-based signal processing is utilized. The radar is equipped with a clutter suppression system and with a Kalman filtering scheme for trajectory calculation and extrapolation. The radar is suitable for long-range surveillance with a small volume-scanning time and for tracking of highly dynamic, low-sized targets. This paper describes the setup of this radar, its main components, and the signal processing technique used

Key concepts: Monopulse radar, Radar lock-on, Continuous-wave radar, Fire-control radar, Radar, 3D radar, Radar tracker, Low probability of intercept radar

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