控制RT-AG外置声卡的PC应用程序的实现

Nenad Pekez, Nives Kaprocki, J. Kovacevic
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引用次数: 2

摘要

在过去的四十年里,数字音频系统得到了迅速而显著的发展。从能够以32kHz/13位分辨率处理一个音频通道的系统,到今天能够以192kHz/32位分辨率再现超过15个音频通道的AV接收器和条形音箱。音频工程师在这些系统的开发和测试阶段面临的问题是将高质量的多通道信号从PC传输到音频系统,反之亦然-以高采样率记录15通道输出。PC的声卡通常既不能传送也不能记录这类音频信号。在实践中,音频工程师使用外接声卡,使他们能够播放和录制如此复杂的音频。RT-RK研发机构为此开发了一款名为RT-AG (RT-Audio Grabber)的外部声卡。在本文中,我们描述了用于控制该声卡的PC应用程序的实现。由于PC和RT-AG可以通过以太网或USB互连,因此重点放在应用程序的以太网部分的实现上。该研究延续了在2017年ETRAN会议上发表的论文“RT-AG数字采集/播放设备软件架构的技术解决方案”。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of PC Application for Controlling RT-AG External Sound Card
Digital audio systems have developed rapidly and significantly over the last four decades. Beginning with systems that could process one audio channel at 32kHz/13-bit resolution to today's systems such as AV receivers and sound bars which are capable of reproducing more than 15 audio channels at 192kHz/32-bit resolutions. Problems that audio engineers are facing during development and testing phases of these systems are delivering high quality multi-channel signals from PC to audio systems and vice versa - recording 15-channel outputs at high sample rates. PC's sound card is most often not capable of neither delivering nor recording these kind of audio signals. In practice, audio engineers use external sound cards with features that enable them to play and record such complex audio. RT-RK R&D Institute has developed an external sound card for these purposes named RT-AG (RT-Audio Grabber). In this paper, we represent the implementation of PC application that is used for controlling this sound card. Since PC and RT-AG can be interconnected by either Ethernet or USB, the focus is on implementation of Ethernet part of application. This study continues to a paper “The technical solution of the software architecture of RT-AG digital grabber/player device” published at ETRAN 2017 conference.
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