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Spectral and temporal gating mechanisms enhance the clutter rejection in the echolocating bat, Rhinolophus rouxi

机译:光谱和时间门控机制加强在echolocating蝙蝠的杂波抑制,菊头蝠柔皙

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摘要

Doppler shift compensation behaviour in horseshoe bats, Rhinolophus rouxi, was used to test the interference of pure tones and narrow band noise with compensation performance. The distortions in Doppler shift compensation to sinusoidally frequency shifted echoes (modulation frequency: 0.1 Hz, maximum frequency shift: 3 kHz) consisted of a reduced compensation amplitude and/or a shift of the emitted frequency to lower frequencies (Fig. 1).Pure tones at frequencies between 200 and 900 Hz above the bat's resting frequency (RF) disturbed the Doppler shift compensation, with a maximum of intererence between 400 and 550 Hz (Fig. 2). Minimum duration of pure tones for interference was 20 ms and durations above 40 ms were most effective (Fig. 3). Interfering pure tones arriving later than about 10 ms after the onset of the echolocation call showed markedly reduced interference (Fig. 4). Doppler shift compensation was affected by pure tones at the optimum interfering frequency with sound pressure levels down to –48 dB rel the intensity level of the emitted call (Figs. 5, 6).Narrow bandwidth noise (bandwidth from ± 100 Hz to ± 800 Hz) disturbed Doppler shift compensation at carrier frequencies between –250 Hz below and 800 Hz above RF with a maximum of interference between 250 and 500 Hz above resting frequency (Fig. 7). The duration and delay of the noise had similar influences on interference with Doppler shift compensation as did pure tones (Figs. 8, 9). Intensity dependence for noise interference was more variable than for pure tones (-32 dB to -45 dB rel emitted sound pressure level, Fig. 10).The temporal and spectral gating in Doppler shift compensation behaviour is discussed as an effective mechanism for clutter rejection by improving the processing of frequency and amplitude transients in the echoes of horseshoe bats.
机译:利用马蹄蝙蝠(Rhinolophus rouxi)的多普勒频移补偿行为来测试具有补偿性能的纯音和窄带噪声的干扰。多普勒频移补偿对正弦频移回波(调制频率:0.1 Hz,最大频移:3 kHz)的失真由减小的补偿幅度和/或发射频率向较低频率的偏移组成(图1)。高于蝙蝠的静止频率(RF)200至900 Hz之间的频率的音调会干扰多普勒频移补偿,最大干扰在400至550 Hz之间(图2)。纯音的最小干扰持续时间为20 ms,而40 ms以上的持续时间最有效(图3)。在回声定位呼叫开始后约10 ms以后才到达的纯音干扰显示出明显降低的干扰(图4)。多普勒频移补偿在最佳干扰频率下受到纯音的影响,相对于发出呼叫的强度,声压级低至–48 dB(图5、6)。窄带宽噪声(带宽从±100 Hz到±800) Hz)在低于–250 Hz和高于RF 800 Hz之间的载波频率上干扰了多普勒频移补偿,而在高于静止频率的250至500 Hz之间的干扰最大(图7)。噪声的持续时间和延迟与纯音对干扰多普勒频移补偿的影响类似(图8、9)。与纯音相比,噪声干扰的强度依赖性变化更大(-32 dB至-45 dB相对发射声压级,图10)。讨论了多普勒频移补偿行为中的时间和频谱门控是抑制杂波的有效机制通过改善马蹄蝙蝠回声中频率和幅度瞬变的处理。

著录项

  • 作者

    Neumann Ingrid; Schuller Gerd;

  • 作者单位
  • 年度 1991
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-31 16:47:34

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