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  2. Acoustic location - Wikipedia

    en.wikipedia.org/wiki/Acoustic_location

    Animal echolocation, animals emitting sound and listening to the echo in order to locate objects or navigate; Echo sounding, listening to the echo of sound pulses to measure the distance to the bottom of the sea, a special case of sonar; Gunfire locator; Human echolocation, the use of echolocation by blind people; Human bycatch

  3. Animal echolocation - Wikipedia

    en.wikipedia.org/wiki/Animal_echolocation

    Another reason for variation in echolocation is habitat. For all sonar systems, the limiting factor deciding whether a returning echo is detected is the echo-to-noise ratio (ENR). The ENR is given by the emitted source level (SL) plus the target strength, minus the two-way transmission loss (absorption and spreading) and the received noise. [79]

  4. Sonar - Wikipedia

    en.wikipedia.org/wiki/Sonar

    [3] "Sonar" can refer to one of two types of technology: passive sonar means listening for the sound made by vessels; active sonar means emitting pulses of sounds and listening for echoes. Sonar may be used as a means of acoustic location and of measurement of the echo characteristics of "targets" in the water. [4]

  5. Echolocation - Wikipedia

    en.wikipedia.org/wiki/Echolocation

    Human echolocation, the use of sound by people to navigate. Sonar (sound navigation and ranging), the use of sound on water or underwater, to navigate or to locate other watercraft, usually by submarines. Echo sounding, listening to the echo of sound pulses to measure the distance to the bottom of the sea, a special case of Sonar.

  6. Fisheries acoustics - Wikipedia

    en.wikipedia.org/wiki/Fisheries_acoustics

    Biomass estimation is a method of detecting and quantifying fish and other marine organisms using sonar technology. [1] An acoustic transducer emits a brief, focused pulse of sound into the water. If the sound encounters objects that are of different density than the surrounding medium, such as fish, they reflect some sound back toward the source.

  7. Bistatic sonar - Wikipedia

    en.wikipedia.org/wiki/Bistatic_sonar

    In monostatic sonar the receiver is listening to the echo which is reflected (scattered) right back from the target. Bistatic sonar can work in two ways: by utilizing either the target backscattering or forward scattering. Backscattering bistatic sonar is the sonar in which the bistatic angle φ is less than 90°.

  8. Marine mammals and sonar - Wikipedia

    en.wikipedia.org/wiki/Marine_mammals_and_sonar

    The interactions between marine mammals and sonar have been a subject of debate since the invention of the technology. Active sonar , the transmission equipment used on some ships to assist with submarine detection, is detrimental to the health and livelihood of some marine animals . [ 1 ]

  9. Bioacoustics - Wikipedia

    en.wikipedia.org/wiki/Bioacoustics

    Biomass estimation is a method of detecting and quantifying fish and other marine organisms using sonar technology. [3] As the sound pulse travels through water it encounters objects that are of different density than the surrounding medium, such as fish, that reflect sound back toward the sound source.