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2022-03-13
摘要翻译:
先进的人机交互的工业应用,如支持维修工程的增强现实或操作生产设备的移动控制面板,对底层的无线连接提出了很高的要求。本文在802.11标准的基础上,提出了一种能够满足这些要求的新系统的概念。为了提高可靠性,可以使用灵活的三频段(2.4GHz、5 GHz和60 GHz)通信系统。为了处理延迟和确定性信道接入,研究了物理层和MAC技术,如新波形或混合MAC方案。精确定位的集成为安全关键应用程序引入了新的可能性。
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英文标题:
《Reliable Low Latency Wireless Communication Enabling Industrial Mobile
  Control and Safety Applications》
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作者:
Sergiy Melnyk, Abraham Gebru Tesfay, Khurshid Alam, Hans D. Schotten,
  Vladica Sark, Nebojsa Maletic, Mohammed Ramadan, Marcus Ehrig, Thomas
  Augustin, Norman Franch, Gerhard Fettweis
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最新提交年份:
2018
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分类信息:

一级分类:Electrical Engineering and Systems Science        电气工程与系统科学
二级分类:Signal Processing        信号处理
分类描述:Theory, algorithms, performance analysis and applications of signal and data analysis, including physical modeling, processing, detection and parameter estimation, learning, mining, retrieval, and information extraction. The term "signal" includes speech, audio, sonar, radar, geophysical, physiological, (bio-) medical, image, video, and multimodal natural and man-made signals, including communication signals and data. Topics of interest include: statistical signal processing, spectral estimation and system identification; filter design, adaptive filtering / stochastic learning; (compressive) sampling, sensing, and transform-domain methods including fast algorithms; signal processing for machine learning and machine learning for signal processing applications; in-network and graph signal processing; convex and nonconvex optimization methods for signal processing applications; radar, sonar, and sensor array beamforming and direction finding; communications signal processing; low power, multi-core and system-on-chip signal processing; sensing, communication, analysis and optimization for cyber-physical systems such as power grids and the Internet of Things.
信号和数据分析的理论、算法、性能分析和应用,包括物理建模、处理、检测和参数估计、学习、挖掘、检索和信息提取。“信号”一词包括语音、音频、声纳、雷达、地球物理、生理、(生物)医学、图像、视频和多模态自然和人为信号,包括通信信号和数据。感兴趣的主题包括:统计信号处理、谱估计和系统辨识;滤波器设计;自适应滤波/随机学习;(压缩)采样、传感和变换域方法,包括快速算法;用于机器学习的信号处理和用于信号处理应用的机器学习;网络与图形信号处理;信号处理中的凸和非凸优化方法;雷达、声纳和传感器阵列波束形成和测向;通信信号处理;低功耗、多核、片上系统信号处理;信息物理系统的传感、通信、分析和优化,如电网和物联网。
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英文摘要:
  Advanced industrial applications for human-machine interaction such as augmented reality support for maintenance works or mobile control panels for operating production facility set high demands on underlying wireless connectivity so- lution. Based on 802.11 standard, this paper proposes a concept of a new system, which is capable of those requirements. For increasing reliability, an agile triple-band (2.4 GHz, 5 GHz and 60 GHz) communication system can be used. In order to deal with latency and deterministic channel access, PHY and MAC techniques such as new waveforms or hybrid MAC schemes are investigated. Integration of precise localization introduces new possibilities for safety-critical applications.
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PDF链接:
https://arxiv.org/pdf/1804.07553
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