首页> 外文会议>OCEANS 2011 >Is synthetic aperture an essential tool for echoic shape recognition in dolphins?
【24h】

Is synthetic aperture an essential tool for echoic shape recognition in dolphins?

机译:合成孔径是海豚回声形状识别的必要工具吗?

获取原文

摘要

A dolphin had previously been trained to perform a cross-modal matching-to-sample task. In one version of this task the animal had to investigate a sample object that was concealed in a box through its echolocation sense alone, then select the correct match among up to three alternative objects visually in air. Given the frequency range of a dolphin click and the limited number of sensors that the dolphin receives the sonar returns with, the dolphin should have difficulties resolving the details of the object. We suggested earlier that the dolphin might be using synthetic aperture to gain a higher resolution of the stimulus. To test this hypothesis we proposed to restrict the movement of the dolphin by stationing him on a bite-plate that was fixed in front of the box that contained the sample object. We trained the dolphin to station on the bite-plate while performing the cross-modal task (echolocation to vision) while recording the sound field around the dolphin through a 16-hydrophone array that was placed in a variety of positions and configurations between the object and the dolphin stationed on the bite-plate. The acoustic data were recorded at 500 kHz and later analyzed. To our surprise the dolphin was still able to perform the discrimination task. In this paper, we present the analysis of the data collected and show that the dolphin employs techniques such as beam steering and beam shaping while acoustically interrogating the object. This suggests that while the dolphin might still employ a synthetic aperture when possible, he might not need it to resolve the details of the object. We are planning to extend the range of objects to new and unfamiliar objects to explore whether the dolphin is indeed able to resolve details of the object acoustically without the need for synthetic aperture.
机译:先前已经对海豚进行了培训,以执行跨模式的“匹配样本”任务。在此任务的一个版本中,动物必须调查仅通过其回声定位意义隐藏在盒子中的样本对象,然后在空中视觉上选择多达三个替代对象中的正确匹配项。给定海豚咔哒声的频率范围以及海豚接收声纳的传感器数量有限,海豚应该很难分辨物体的细节。我们早些时候建议,海豚可能正在使用合成孔径来获得更高分辨率的刺激。为了验证这一假设,我们建议通过将海豚放置在固定在装有样本物体的盒子前面的咬板上来限制海豚的活动。我们训练了海豚在执行交叉模式任务(回视到视觉)的同时固定在咬合板上,同时通过16个水听器阵列记录了海豚周围的声场,该阵列放置在物体之间的各种位置和配置中海豚驻扎在咬合板上。声音数据以500 kHz记录下来,然后进行分析。令我们惊讶的是,海豚仍然能够执行歧视任务。在本文中,我们对收集到的数据进行了分析,结果表明,海豚在声学询问对象的同时采用了波束控制和波束成形等技术。这表明尽管海豚在可能的情况下仍可能使用合成孔径,但他可能不需要它来解析物体的细节。我们计划将对象的范围扩展到新的和不熟悉的对象,以探索海豚是否确实能够在不需要合成孔径的情况下以声学方式解析对象的细节。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号