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  2. Radar beacon - Wikipedia

    en.wikipedia.org/wiki/Radar_beacon

    Modern racons are frequency-agile; they have a wide-band receiver that detects the incoming radar pulse, tunes the transmitter and responds with a 25 microsecond long signal within 700 nanoseconds . Older racons operate in a slow sweep mode, in which the transponder sweeps across the X-band over 1 or 2 minutes.

  3. Frequency response - Wikipedia

    en.wikipedia.org/wiki/Frequency_response

    The frequency response is characterized by the magnitude, typically in decibels (dB) or as a generic amplitude of the dependent variable, and the phase, in radians or degrees, measured against frequency, in radian/s, Hertz (Hz) or as a fraction of the sampling frequency.

  4. Identification friend or foe - Wikipedia

    en.wikipedia.org/wiki/Identification_friend_or_foe

    When an FuG 25a responded on its 168 MHz frequency, the signal was received by the antenna system from an AI Mk. IV radar , which originally operated at 212 MHz. By comparing the strength of the signal on different antennas the direction to the target could be determined.

  5. Antiresonance - Wikipedia

    en.wikipedia.org/wiki/Antiresonance

    In the physics of coupled oscillators, antiresonance, by analogy with resonance, is a pronounced minimum in the amplitude of an oscillator at a particular frequency, accompanied by a large, abrupt shift in its oscillation phase. Such frequencies are known as the system 's antiresonant frequencies, and at these frequencies the oscillation ...

  6. Head-related transfer function - Wikipedia

    en.wikipedia.org/wiki/Head-related_transfer_function

    Generally speaking, the HRTF boosts frequencies from 2–5 kHz with a primary resonance of +17 dB at 2,700 Hz. But the response curve is more complex than a single bump, affects a broad frequency spectrum, and varies significantly from person to person.

  7. Audio system measurements - Wikipedia

    en.wikipedia.org/wiki/Audio_system_measurements

    Frequency response (FR) This measurement tells you over what frequency range output level for an audio component will remain reasonably constant (either within a specified decibel range, or no more than a certain number of dB from the amplitude at 1kHz).

  8. Duffing equation - Wikipedia

    en.wikipedia.org/wiki/Duffing_equation

    Anyway, using the homotopy analysis method or harmonic balance, one can derive a frequency response equation in the following form: [ ( ω 2 − α − 3 4 β z 2 ) 2 + ( δ ω ) 2 ] z 2 = γ 2 . {\displaystyle \left[\left(\omega ^{2}-\alpha -{\tfrac {3}{4}}\beta z^{2}\right)^{2}+\left(\delta \omega \right)^{2}\right]\,z^{2}=\gamma ^{2}.}

  9. Bartlett's method - Wikipedia

    en.wikipedia.org/wiki/Bartlett's_method

    In time series analysis, Bartlett's method (also known as the method of averaged periodograms [1] ), is used for estimating power spectra. It provides a way to reduce the variance of the periodogram in exchange for a reduction of resolution, compared to standard periodograms.

  10. Bode plot - Wikipedia

    en.wikipedia.org/wiki/Bode_plot

    In electrical engineering and control theory, a Bode plot / ˈ b oʊ d i / is a graph of the frequency response of a system. It is usually a combination of a Bode magnitude plot, expressing the magnitude (usually in decibels) of the frequency response, and a Bode phase plot, expressing the phase shift.

  11. Cascaded integrator–comb filter - Wikipedia

    en.wikipedia.org/wiki/Cascaded_integrator–comb...

    In digital signal processing, a cascaded integrator–comb (CIC) is a computationally efficient class of low-pass finite impulse response (FIR) filter that chains N number of integrator and comb filter pairs (where N is the filter's order) to form a decimator or interpolator.