地下矿井中通过双向 BPL-PLC 语音通信系统传输语音的质量评估

IF 0.6 4区 物理与天体物理 Q4 ACOUSTICS
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引用次数: 0

摘要

为了设计一个稳定可靠的语音通信系统,必须了解传输优质内容需要多少资源。这些参数可能包括客观的服务质量(QoS)指标,如:可用带宽、误码率(BER)、延迟、延时以及与用户期望相关的主观体验质量(QoE)。QoE 表现为语音的清晰度和解释语音命令的能力,以及适当的平均意见分数 (MOS) 等级。本文介绍了在运行中的地下矿井中,通过电力线带宽-电力线通信(BPL-PLC)技术对双向语音传输系统进行的质量评估研究。我们研究了可用有线介质的不同特性如何影响最终用户质量。所描述的研究结果包括:两种耦合类型(电容式和电感式)、两种传输模式(模式 1 和模式 11)以及以三种不同比特率(8、16 和 24 kbps)编码的四种语言语音样本集(美式英语、英式英语、德语和波兰语)。我们的发现对从事低比特率编码和压缩、信号处理和语音感知的研究人员以及活跃在采矿和石油行业的专业人员都有帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quality Evaluation of Speech Transmission via Two-way BPL-PLC Voice Communication System in an Underground Mine
In order to design a stable and reliable voice communication system, it is essential to know how many resources are necessary for conveying quality content. These parameters may include objective quality of service (QoS) metrics, such as: available bandwidth, bit error rate (BER), delay, latency as well as subjective quality of experience (QoE) related to user expectations. QoE is expressed as clarity of speech and the ability to interpret voice commands with adequate mean opinion score (MOS) grades. This paper describes a quality evaluation study of a two-way speech transmission system via bandwidth over power line – power line communication (BPL-PLC) technology in an operating underground mine. We investigate how different features of the available wired medium can affect end-user quality. The results of the described study include: two types of coupling (capacitive and inductive), two transmission modes (mode 1 and 11), and four language sets of speech samples (American English, British English, German, and Polish) encoded at three different bit rates (8, 16, and 24 kbps). Our findings can aid both researchers working on low-bit rate coding and compression, signal processing and speech perception, as well as professionals active in the mining and oil industry.
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来源期刊
Archives of Acoustics
Archives of Acoustics 物理-声学
CiteScore
1.80
自引率
11.10%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Archives of Acoustics, the peer-reviewed quarterly journal publishes original research papers from all areas of acoustics like: acoustical measurements and instrumentation, acoustics of musics, acousto-optics, architectural, building and environmental acoustics, bioacoustics, electroacoustics, linear and nonlinear acoustics, noise and vibration, physical and chemical effects of sound, physiological acoustics, psychoacoustics, quantum acoustics, speech processing and communication systems, speech production and perception, transducers, ultrasonics, underwater acoustics.
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