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Radar System Fundamentals Flashcards

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  1. What does the term 'antenna gain' mean in the context of a marine radar antenna?

    Answer: The ratio of the antenna's radiated intensity in its principal direction to that of an isotropic radiator

    Antenna gain (in dBi) expresses how much more power the antenna concentrates in its main beam direction compared to a hypothetical isotropic radiator; higher gain means a narrower, more focused beam.

  2. In a marine radar system, what is the purpose of the automatic frequency control (AFC) circuit?

    Answer: Lock the local oscillator frequency to maintain a constant IF despite magnetron frequency drift

    The magnetron's frequency can drift with temperature and aging; AFC continuously compares the IF to the desired value and adjusts the local oscillator to keep the difference (IF) constant.

  3. What is the 'radar equation' fundamental relationship between detection range and transmitter peak power?

    Answer: Range is proportional to the fourth root of peak power (R ∝ P^0.25)

    The radar range equation shows R_max ∝ (P_t)^(1/4); to double detection range, peak power must increase by a factor of 16, making power a relatively inefficient way to extend range.

  4. Which IMO regulation requires most SOLAS vessels to carry a marine radar capable of operating on the 9 GHz band?

    Answer: SOLAS Chapter V (Safety of Navigation), Regulation 19

    SOLAS Chapter V, Regulation 19 specifies navigational equipment requirements by vessel size and trade area, mandating radar (9 GHz X-band) for vessels above specified tonnage thresholds.

  5. What is 'target glint' and how does it affect radar measurements?

    Answer: Rapid fluctuation of a target's echo amplitude and apparent position due to interference from multiple reflection points on the target

    Glint occurs when a target with multiple scattering centers produces a composite echo whose amplitude and apparent angle of arrival fluctuate rapidly, introducing bearing and range measurement errors.

  6. What is the typical function of a radar transponder (RACON) when interrogated by a vessel's radar?

    Answer: Respond with a coded signal that appears as a distinctive Morse-code dash extending from the transponder's position on the radar display

    A RACON (radar beacon) receives the interrogating radar pulse and transmits a reply swept across the radar frequency, producing a distinctive coded symbol (Morse character dash) that helps mariners identify specific marks or hazards.

  7. What is the significance of the 'noise floor' in a radar receiver for determining minimum detectable signal (MDS)?

    Answer: A target's echo must exceed the noise floor by a sufficient signal-to-noise ratio for reliable detection

    The receiver's thermal noise floor establishes a baseline below which signals cannot be distinguished from noise; for reliable detection a target return must exceed the noise floor by several dB (typically 10–15 dB SNR).

Radar System Fundamentals Flashcards — CMRT Study Cards with Answers