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相关概念视频

Perceiving Loudness, Pitch, and Location01:21

Perceiving Loudness, Pitch, and Location

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The human brain perceives pitch through two primary mechanisms reflected in place theory and frequency theory. Each mechanism describes how sound waves are interpreted as specific pitches by the brain, offering insights into the intricate processes of auditory perception.
Place theory, or place coding, suggests that different pitches are heard because various sound waves activate specific locations along the cochlea's basilar membrane. The brain determines the pitch of a sound by...
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Auditory Perception01:17

Auditory Perception

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The auditory system is essential for sound perception, utilizing various critical structures. When sound waves enter the outer ear, they travel through the ear canal and cause the eardrum to vibrate. These vibrations are then transmitted to the middle ear, where three tiny bones – the malleus, incus, and stapes – amplify the sound. This amplification is crucial, as it ensures that the sound vibrations are strong enough to be conveyed to the inner ear. These vibrations then reach the...
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Perception of Sound Waves01:01

Perception of Sound Waves

5.4K
The human ear is not equally sensitive to all frequencies in the audible range. It may perceive sound waves with the same pressure but different frequencies as having different loudness. Moreover, the perception of sound waves depends on the health of an individual's ears, which decays with age. The health of one's ears may also be affected by regular exposure to loud noises.
The pitch of a sound depends on the frequency and the pressure amplitude of the source. Two sounds of the same...
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Design Example: Identifying the Locations of Monuments in the Field Using Global Positioning System Device01:30

Design Example: Identifying the Locations of Monuments in the Field Using Global Positioning System Device

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Surveyors use Global Positioning System (GPS) technology to measure the precise location and elevation of points on Earth. In a recent survey, GPS receivers were used to determine the coordinates and elevations of two park monuments. The process involved careful mission planning, data collection, and correction to ensure accuracy. The survey began with mission planning to identify optimal satellite visibility and minimize Position Dilution of Precision (PDOP). A geodetic control point...
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Auditory Pathway01:15

Auditory Pathway

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Auditory pathways constitute the complex neural circuits responsible for transmitting and interpreting auditory information from the peripheral auditory system to the brain. Sound waves are initially captured by the outer ear, funneled through the ear canal, and reach the tympanic membrane (eardrum). These vibrations are transmitted via the middle ear's ossicles to the inner ear's cochlea.
When viewed cross-sectionally, the cochlea reveals the scala vestibuli and scala tympani flanking...
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Hearing01:31

Hearing

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When we hear a sound, our nervous system is detecting sound waves—pressure waves of mechanical energy traveling through a medium. The frequency of the wave is perceived as pitch, while the amplitude is perceived as loudness.
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相关实验视频

Updated: Jan 10, 2026

Sound Source Localization Testing in Single-sided Deafness Following Bone Conduction Intervention
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一种听觉视觉合作感知方法,用于敲响汽车定位的喇.

Fei Yuan1, Junxi Kang2, Jiao Yin3

  • 1School of Automation, Guangdong Polytechnic Normal University, Guangzhou, Guangdong, China.

PloS one
|November 21, 2025
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概括

一种新的听觉视觉合作感知 (AVCP) 方法准确地定位喇的车辆. 这种方法克服了传统声音定位的局限性,为交通噪声控制提供了更好的抗噪能力和检测范围.

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科学领域:

  • 声学 声学 在声学方面
  • 计算机视觉 计算机视觉
  • 人工智能的人工智能

背景情况:

  • 由于多路径效应和噪声,对号车辆的传统声音源定位不准确.
  • 环境噪音和有限的检测范围阻碍了对任意喇的有效控制.

研究的目的:

  • 提出和评估一种听觉视觉合作感知 (AVCP) 方法,用于准确地定位喇车辆.
  • 为了提高呼车辆识别系统的检测范围和抗噪能力.

主要方法:

  • 在时间延迟神经网络 (ECAPA-TDNN) 中利用强调的频道注意力,传播和聚合,用于基于音频的车辆模型识别.
  • 采用YOLO v9用于从摄像头料中视觉检测车辆和模型识别.
  • 集成的音频和视觉数据通过匹配识别的模型来识别喇的车辆.

主要成果:

  • 该AVCP方法在识别和定位号车辆方面表现出卓越的性能.
  • 实验结果显示,与传统方法相比,对环境噪声的敏感性降低了.
  • 通过AVCP方法,从更远的距离实现了更准确的车辆定位.

结论:

  • 拟议的AVCP方法提供了一个强大的解决方案,用于敲响车辆定位.
  • 这种方法显著改进了传统的声音源本地化技术.
  • 通过AVCP,提高了交通噪音控制,使呼车辆的识别更加精确和可靠.