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  2. Merrill Skolnik - Wikipedia

    en.wikipedia.org/wiki/Merrill_Skolnik

    Merrill Skolnik (November 6, 1927 – January 27, 2022) was an American researcher in the area of radar systems and the author or editor of a number of standard texts in the field. He is best known for his introductory text "Introduction to Radar Systems" and for editing the "Radar Handbook".

  3. Radar engineering - Wikipedia

    en.wikipedia.org/wiki/Radar_engineering

    Pulse-Doppler radar sensors are therefore more suited for long-range detection, while FMCW radar sensors are more suited for short-range detection. Monopulse : A monopulse feed network, as shown in Fig. 2, increases the angular accuracy to a fraction of the beamwidth by comparing echoes, which originate from a single radiated pulse and which ...

  4. Radar - Wikipedia

    en.wikipedia.org/wiki/Radar

    Radar is a system that uses radio waves to determine the distance (), direction (azimuth and elevation angles), and radial velocity of objects relative to the site. It is a radiodetermination method [1] used to detect and track aircraft, ships, spacecraft, guided missiles, motor vehicles, map weather formations, and terrain.

  5. David K. Barton - Wikipedia

    en.wikipedia.org/wiki/David_K._Barton

    David Knox Barton (September 21, 1927 – February 11, 2023) was an American radar systems engineer who made significant contributions to air defense, missile guidance, monopulse radar, low-altitude tracking, air traffic control, and early warning radar. At age 30, he was the first winner of the David Sarnoff Award in Engineering, for his ...

  6. Robert Buderi - Wikipedia

    en.wikipedia.org/wiki/Robert_Buderi

    The book covers the development of radar technology in the United States during World War II and details how this technology determined the outcome of important battles. [ 7 ] [ 8 ] It argues that radar technology changed the course of the war and eventually led to Allied victory.

  7. Radar signal characteristics - Wikipedia

    en.wikipedia.org/wiki/Radar_signal_characteristics

    A simple calculation reveals that a radar echo will take approximately 10.8 μs to return from a target 1 statute mile away (counting from the leading edge of the transmitter pulse (T 0), (sometimes known as transmitter main bang)). For convenience, these figures may also be expressed as 1 nautical mile in 12.4 μs or 1 kilometre in 6.7 μs.

  8. Pulse compression - Wikipedia

    en.wikipedia.org/wiki/Pulse_compression

    The basic principle is the following: a signal is transmitted, with a long enough length so that the energy budget is correct this signal is designed so that after matched filtering, the width of the intercorrelated signals is smaller than the width obtained by the standard sinusoidal pulse, as explained above (hence the name of the technique ...

  9. History of radar - Wikipedia

    en.wikipedia.org/wiki/History_of_radar

    The secondary radar antenna array rides atop the primary radar dish at the radar site, with both rotating at approximately 12 revolutions per minute. The Digital Airport Surveillance Radar (DASR) is a newer TRACON radar system, replacing the old analog systems with digital technology.