首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >On-board telemetry of emitted sounds from free-flying bats: compensation for velocity and distance stabilizes echo frequency and amplitude
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On-board telemetry of emitted sounds from free-flying bats: compensation for velocity and distance stabilizes echo frequency and amplitude

机译:机载遥测蝙蝠发出的声音的遥测:对速度和距离的补偿可稳定回波频率和振幅

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摘要

To understand complex sensory–motor behavior related to object perception by echolocating bats, precise measurements are needed for echoes that bats actually listen to during flight. Recordings of echolocation broadcasts were made from flying bats with a miniature light-weight microphone and radio transmitter (Telemike) set at the position of the bat’s ears and carried during flights to a landing point on a wall. Telemike recordings confirm that flying horseshoe bats (Rhinolophus ferrumequinum nippon) adjust the frequency of their sonar broadcasts to compensate for echo Doppler shifts. Returning constant frequency echoes were maintained at the bat’s reference frequency ±83 Hz during flight, indicating that the bats compensated for frequency changes with an accuracy equivalent to that at rest. The flying bats simultaneously compensate for increases in echo amplitude as target range becomes shorter. Flying bats thus receive echoes with both stabilized frequencies and stabilized amplitudes. Although it is widely understood that Doppler-shift frequency compensation facilitates detection of fluttering insects, approaches to a landing do not involve fluttering objects. Combined frequency and amplitude compensation may instead be for optimization of successive frequency modulated echoes for target range estimation to control approach and landing.
机译:为了通过回声定位蝙蝠来了解与物体感知有关的复杂感觉运动行为,需要精确测量蝙蝠在飞行过程中实际听到的回声。回声定位广播的录音是用蝙蝠的耳朵上的微型天线和无线电发射器(Telemike)在蝙蝠的耳朵位置录制的,并在飞行过程中随身携带到墙壁的着陆点上。 Telemike录音证实飞行的马蹄蝠(Rhinolophus ferrumequinum nippon)会调整其声纳广播的频率,以补偿回声多普勒频移。在飞行过程中,返回的恒定频率回波保持在蝙蝠的参考频率±83 Hz,这表明蝙蝠以与静止时相同的精度补偿了频率变化。随着目标范围变短,飞行蝙蝠会同时补偿回波幅度的增加。因此,飞行蝙蝠会接收到具有稳定频率和稳定振幅的回波。尽管众所周知,多普勒频移补偿有助于检测飞动的昆虫,但是降落的方法并不涉及飞动的物体。组合的频率和幅度补偿可以代替用于连续的调频回波的优化,以用于目标范围估计以控制进近和着陆。

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