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Comparative analysis of compressive sensing approaches for recovery of missing samples in implantable wireless Doppler device

机译:用于植入式无线多普勒设备中丢失样本的压缩感测方法的比较分析

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An implantable wireless Doppler device used in microsurgical free flap surgeries can suffer from lost data points. To recover the lost samples, the authors considered the approaches based on a recently proposed compressive sensing. In this paper, they performed a comparative analysis of several different approaches by using synthetic and real signals obtained during blood flow monitoring in four pigs. They considered three different bases functions: Fourier bases, discrete prolate spheroidal sequences and modulated discrete prolate spheroidal sequences, respectively. To avoid the computational burden, they considered the approaches based on the l1 minimisation for all the three bases. To understand the trade-off between the computational complexity and the accuracy, they also used a recovery process based on a matching pursuit and modulated discrete prolate spheroidal sequences bases. For both the synthetic and the real signals, the matching approach with modulated discrete prolate spheroidal sequences provided the most accurate results. Future studies should focus on the optimisation of the modulated discrete prolate spheroidal sequences in order to further decrease the computational complexity and increase the accuracy.
机译:用于免费显微皮瓣手术的植入式无线多普勒设备可能会丢失数据点。为了恢复丢失的样本,作者考虑了基于最近提出的压缩感测的方法。在本文中,他们使用在四头猪的血流监测期间获得的合成信号和真实信号,对几种不同方法进行了比较分析。他们考虑了三种不同的基函数:傅立叶基,离散扁长球体序列和调制离散扁长球体序列。为了避免计算负担,他们考虑了基于l 1 最小化的所有三个方法。为了理解计算复杂度和准确性之间的权衡,他们还使用了基于匹配追踪和调制离散球状椭球序列基数的恢复过程。对于合成信号和实信号,具有调制离散扁球体序列的匹配方法可提供最准确的结果。未来的研究应集中在调制离散扁长球体序列的优化上,以进一步降低计算复杂度并提高准确性。

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