期刊文献+

数字技术驱动的音频调制和混合创新应用解构

Deconstruction of Digital Technology Driven Audio Modulation and Hybrid Innovative Applications
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摘要 数字技术驱动的音频调制和混合创新应用利用先进的数字音频处理算法和工具,推动了音频创作和声音设计的发展。音频软件和硬件平台提供了直观的用户界面和工具,使音频工程师和制作人能够以前所未有的方式探索和操作音频信号。音频合成算法和合成器工具的改进,使得创作出新颖和独特的音色和声音效果成为可能。通过准确的音量控制、平衡调整和空间处理,音频工程师和制作人可以创建出丰富、动态和沉浸式的音频。音频软件和硬件平台的互操作性,使得音频项目的传输和共享更加便捷和高效。此外,云计算和分布式处理的发展为音频处理和混合提供了更大的计算能力和存储容量,使得复杂的音频项目能够更好地处理和管理。 Digital technology driven audio modulation and hybrid innovative applications use advanced digital audio processing algorithms and tools to promote the boundaries of audio creation and sound design.Audio software and hardware platforms provide intuitive user interfaces and tools,enabling audio engineers and producers to explore and operate audio signals in unprecedented ways.The improvement of audio synthesis algorithm and synthesizer tools makes it possible to create novel and unique timbre and sound effects.With accurate volume control,balance adjustment and spatial processing,they can create a rich,dynamic and immersive audio experience.The interoperability of audio software and hardware platforms makes the transmission and sharing of audio projects more convenient and efficient.In addition,the development of cloud computing and distributed processing has provided greater computing power and storage capacity for audio processing and mixing,enabling complex audio projects to be better processed and managed.
作者 肖嘉航 XIAO Jiahang(School of Computer Engineering,Jingchu University of Technology,Jingmen 448000,China)
出处 《电声技术》 2023年第4期52-56,共5页 Audio Engineering
关键词 音频调制 音频混合 创新应用 audio modulation audio mixing innovative applications
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  • 1翁泰来.音频技术综述(一)[J].电声技术,2005,29(2):73-75. 被引量:3
  • 2朱晓天.一种全新的声还原技术——波前合成[J].电声技术,2006,30(1):14-17. 被引量:2
  • 3Berkhout A J, De Vries D, Vogel P. Acoustic Control by Wave Field Synthesis[J].Acoust. Soc.Am, 1993, 93: 2764- 2778.
  • 4Start E W, Valstar V G, De Vries D ( 1995 ) . Application of Spatial Bandwidth Reduction in Wave Field Synthesis[C]. 98th AES Convention, 1995.
  • 5Gerzon M A.Ambisonics:Part two:Studio techniques[J].Studio Sound,1975,8(17):24-30.
  • 6Ward D B,Abhayapala T D.Reproduction of a plane-wave sound field using an array of loudspeakers[J].Speech and Audio Processing,IEEE Transactions on,2001,9(6):697-707.
  • 7Bertet S,Daniel J,Moreau S.3D sound field recording with higher order ambisonics-objective measurements and validation of spherical microphone[C]//Audio Engineering Society Convention 120.Paris,France:Audio Engineering Society,2006:1-24.
  • 8Daniel J,Moreau S,Nicol R.Further investigations of high-order ambisonics and wavefield synthesis for holophonic sound imaging[C]//Audio Engineering Society Convention 114.Amsterdam,Nether Lands:Audio Engineering Society,2003:1-18.
  • 9Berkhout A J. A holographic approach to acoustic control[J]. Journal of the Audio Engineering Society, 1988,36(12) :977-995.
  • 10Berkhout A J,de Vries D,Vogel P.Acoustic control by wave field synthesis[J].The Journal of the Acoustical Society of America,1993,93 (5):2764-2778.

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