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A Semantically-Adaptive Strategy for Energy-Efficiency in Wireless Medical Monitoring Devices

机译:无线医疗监控设备中的能效的语义自适应策略

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We propose a novel strategy for energy-efficient operation of wireless monitoring devices under the premise that medical experts are primarily interested in atypical observations - For epilepsy monitoring, EEG data is most valuable at epileptic activity onset. Or, a gait-stability monitoring application is most interested in unusual footsteps. Observations are atypical if application-specific medical metrics and biosignal features are statistical outliers. Our strategy admits energy-efficient early-detection of such observations, leading to: (i) an increase in medical information quality by sampling aggressively over semantically important behaviors, and (ii) a savings in energy by precluding communication of typical measurements. From experimentally collected plantar pressure datasets, we show that this can yield up to a 62% improvement in gait-stability metric evaluation for atypical footsteps and a 10% energy cost reduction compared to a recently proposed non-adaptive compressive sensing technique.
机译:我们提出了一种新颖的无线监测设备的节能操作策略,医学专家主要对非典型观察感兴趣 - 对于癫痫监测,EEG数据在癫痫活动发病中最有价值。或者,Gait-稳定监测应用对于不寻常的脚步感兴趣。如果特定于应用程序的医学指标和生物功能性功能是统计异常值,则观察是非典型的。我们的策略承认,节能早期检测此类观察,导致:(i)通过在语义上的重要行为上进行积极抽样来增加医疗信息质量,并通过排除典型测量的沟通来节省能源。从实验收集的跖骨压力数据集中,我们认为,与最近提出的非自适应压缩传感技术相比,这可以提高高度达到的步态稳定度评估和10%的能量成本降低的62%。

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