A Novel Frame Structure for Cloud-Based Audio-Visual Speech Enhancement in Multimodal Hearing-aids

A. Bishnu, Ankit Gupta, M. Gogate, K. Dashtipour, Ahsan Adeel, Amir Hussain, M. Sellathurai, T. Ratnarajah
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引用次数: 2

Abstract

In this paper, we design a first of its kind transceiver (PHY layer) prototype for cloud-based audio-visual (AV) speech enhancement (SE) complying with high data rate and low latency requirements of future multimodal hearing assistive technology. The innovative design needs to meet multiple challenging constraints including up/down link communications, delay of transmission and signal processing, and real-time AV SE models processing. The transceiver includes device detection, frame detection, frequency offset estimation, and channel estimation capabilities. We develop both uplink (hearing aid to the cloud) and downlink (cloud to hearing aid) frame structures based on the data rate and latency requirements. Due to the varying nature of uplink information (audio and lip-reading), the uplink channel supports multiple data rate frame structure, while the downlink channel has a fixed data rate frame structure. In addition, we evaluate the latency of different PHY layer blocks of the transceiver for developed frame structures using LabVIEW NXG. This can be used with software defined radio (such as Universal Software Radio Peripheral) for real-time demonstration scenarios.
一种基于云的多模态助听器视听语音增强框架结构
在本文中,我们设计了一个基于云的视听(AV)语音增强(SE)的首个收发器(物理层)原型,以满足未来多模态助听技术的高数据速率和低延迟要求。创新的设计需要满足多种具有挑战性的约束,包括上行/下行链路通信、传输延迟和信号处理,以及实时AV SE模型处理。收发器包括设备检测、帧检测、频率偏移估计和信道估计功能。我们根据数据速率和延迟要求开发上行链路(助听器到云)和下行链路(云到助听器)帧结构。由于上行信息(音频和唇读)的多变性,上行通道支持多数据速率帧结构,下行通道采用固定数据速率帧结构。此外,我们利用LabVIEW NXG对开发的帧结构的收发器的不同物理层块的延迟进行了评估。这可以与软件定义的无线电(如通用软件无线电外围设备)一起用于实时演示场景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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