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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Observer-Based Deconvolution of Deterministic Input in Coprime Multichannel Systems With Its Application to Noninvasive Central Blood Pressure Monitoring
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Observer-Based Deconvolution of Deterministic Input in Coprime Multichannel Systems With Its Application to Noninvasive Central Blood Pressure Monitoring

机译:基于观察者的COPRIME多通道系统确定性输入的折折叠,其应用于非侵入中央血压监测

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Estimating central aortic blood pressure (BP) is important for cardiovascular (CV) health and risk prediction purposes. CV system is a multichannel dynamical system that yields multiple BPs at various body sites in response to central aortic BP. This paper concerns the development and analysis of an observer-based approach to deconvolution of unknown input in a class of coprime multichannel systems applicable to noninvasive estimation of central aortic BP. A multichannel system yields multiple outputs in response to a common input. Hence, the relationship between any pair of two outputs constitutes a hypothetical input-output system with unknown input embedded as a state. The central idea underlying our approach is to derive the unknown input by designing an observer for the hypothetical input-output system. In this paper, we developed an unknown input observer (UIO) for input deconvolution in coprime multichannel systems. We provided a universal design algorithm as well as meaningful physical insights and inherent performance limitations associated with the algorithm. The validity and potential of our approach were illustrated using a case study of estimating central aortic BP waveform from two noninvasively acquired peripheral arterial pulse waveforms. The UIO could reduce the root-mean-squared error (RMSE) associated with the central aortic BP by up to 27.5% and 28.8% against conventional inverse filtering (IF) and peripheral arterial pulse scaling techniques.
机译:估计中央主动脉血压(BP)对于心血管(CV)健康和风险预测目的是重要的。 CV系统是一种多通道动态系统,响应于中央主动脉BP,在各种车身部位产生多个BPS。本文涉及一种基于观察者的非识别中央主动脉BP的非侵入性估计的一类共同多通道系统对非侵入性估算的非侵入性估计的观察者对未知意见的解卷积的开发和分析。多声道系统响应于公共输入产生多个输出。因此,任何双输出之间的关系构成一个假设的输入 - 输出系统,其中包含未知的输入作为状态。我们的方法的中心思想是通过设计假设的输入输出系统观察者来得出未知的输入。在本文中,我们开发了一个未知的输入观察者(UIO),用于在CopRime多通道系统中的输入折应。我们提供了一种通用的设计算法,以及与算法相关的有意义的物理见解和固有的性能限制。通过估计来自两个非完全获取的外围动脉脉冲波形的中央主动脉BP波形的案例研究,示出了我们方法的有效性和潜力。 UIO可以将与中央主动脉BP相关联的根平均平方误差(RMSE),其与传统的逆滤波(IF)和外围动脉脉冲缩放技术相比高达27.5%和28.8%。

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