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The Role of High Performance Computing and Communication for Real-Time Biofeedback in Sport

机译:高性能计算和通信在运动中实时生物反馈中的作用

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摘要

This paper studies the main technological challenges of real-time biofeedback in sport. We identified communication and processing as two main possible obstacles for high performance real-time biofeedback systems. We give special attention to the role of high performance computing with some details on possible usage of DataFlow computing paradigm. Motion tracking systems, in connection with the biomechanical biofeedback, help in accelerating motor learning. Requirements about various parameters important in real-time biofeedback applications are discussed. Inertial sensor tracking system accuracy is tested in comparison with a high performance optical tracking system. Special focus is given on feedback loop delays. Real-time sensor signal acquisitions and real-time processing challenges, in connection with biomechanical biofeedback, are presented. Despite the fact that local processing requires less energy consumption than remote processing, many other limitations, most often the insufficient local processing power, can lead to distributed system as the only possible option. A multiuser signal processing in football match is recognised as an example for high performance application that needs high-speed communication and high performance remote computing. DataFlow computing is found as a good choice for real-time biofeedback systems with large data streams.
机译:本文研究了运动中实时生物反馈的主要技术挑战。我们认为通信和处理是高性能实时生物反馈系统的两个主要可能障碍。我们将特别关注高性能计算的作用,并详细介绍DataFlow计算范例的可能用法。运动跟踪系统与生物力学生物反馈相关,有助于加速运动学习。讨论了有关实时生物反馈应用中重要的各种参数的要求。惯性传感器跟踪系统的准确性与高性能光学跟踪系统进行了比较。特别关注反馈环路延迟。提出了与生物力学生物反馈相关的实时传感器信号采集和实时处理挑战。尽管事实上本地处理比远程处理需要更少的能耗,但是许多其他限制(通常是本地处理能力不足)可能导致分布式系统成为唯一的选择。足球比赛中的多用户信号处理被认为是需要高速通信和高性能远程计算的高性能应用的示例。对于具有大数据流的实时生物反馈系统,发现DataFlow计算是一个不错的选择。

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  • 来源
    《Mathematical Problems in Engineering》 |2016年第5期|4829452.1-4829452.11|共11页
  • 作者

    Umek Anton; Kos Anton;

  • 作者单位

    Univ Ljubljana, Fac Elect Engn, Trzaska Cesta 25, Ljubljana 1000, Slovenia;

    Univ Ljubljana, Fac Elect Engn, Trzaska Cesta 25, Ljubljana 1000, Slovenia;

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