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Robot implementation of duty-cycle invariance in cricket calling song preference

机译:板球呼叫歌曲首选项中占空比不变性的机器人实现

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Behavioural experiments with crickets show that female crickets respond only to the male calling songs with a syllable rate within a specific interval, further it has been discovered that their response is independent of the duty-cycle of the song. Previously a neural control model was posed, which was able to explain how the selectivity of songs with syllable rates within a certain bandwidth could be obtained. The model explained why female crickets' response to calling songs was invariant to the duty-cycle of the songs. Here, we propose a new neural model, which is able also to account for the selectivity of a specific syllable rate and is invariant to the song duty-cycle. Implementing it on a small, mobile robot and using an analog electronic model of the peripheral auditory morphology of the female cricket as the sensor test the new model. The robot is placed under the same experimental conditions as the real crickets and it responds with phonotaxis to synthetic calling songs with syllable rates within a certain bandwidth similar to crickets. Further, the robot performs phonotaxis to songs with a syllable rate within the correct bandwidth independently of the duty-cycle of the song.
机译:with的行为实验表明,女性在特定的时间间隔内仅对音节率高的男性主打歌做出反应,此外,人们发现它们的反应与歌曲的占空比无关。以前提出了一个神经控制模型,该模型能够解释如何获得在特定带宽内具有音节速率的歌曲的选择性。该模型解释了为什么女性female对歌曲的反应不会改变歌曲的占空比。在这里,我们提出了一种新的神经模型,该模型也能够说明特定音节速率的选择性,并且对歌曲占空比没有影响。在小型移动机器人上实现该功能,并使用女性板球外围听觉形态的模拟电子模型作为传感器来测试新模型。机器人被放置在与真实相同的实验条件下,并且它会在与rates相似的一定带宽内以音节速率对合成呼叫歌曲做出音调响应。此外,机器人会以正确的带宽内的音节速率对歌曲执行音位对准,而与歌曲的占空比无关。

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