Baldi Marco, Cerri Graziano, Chiaraluce Franco, Eusebi Lorenzo, Russo Paola
Università Politecnica delle Marche, Dipartimento di Ingegneria dell'Informazione, Via Brecce Bianche 12, Ancona 60131, Italy.
Sensors (Basel). 2014 Dec 30;15(1):565-91. doi: 10.3390/s150100565.
The use of a UWB system for sensing breathing activity of astronauts must account for many critical issues specific to the space environment. The aim of this paper is twofold. The first concerns the definition of design constraints about the pulse amplitude and waveform to transmit, as well as the immunity requirements of the receiver. The second issue concerns the assessment of the procedures and the characteristics of the algorithms to use for signal processing to retrieve the breathing frequency and respiration waveform. The algorithm has to work correctly in the presence of surrounding electromagnetic noise due to other sources in the environment. The highly reflecting walls increase the difficulty of the problem and the hostile scenario has to be accurately characterized. Examples of signal processing techniques able to recover breathing frequency in significant and realistic situations are shown and discussed.
使用超宽带(UWB)系统来感知宇航员的呼吸活动必须考虑到许多特定于太空环境的关键问题。本文的目的有两个。第一个涉及关于要传输的脉冲幅度和波形的设计约束定义,以及接收器的抗干扰要求。第二个问题涉及对用于信号处理以获取呼吸频率和呼吸波形的程序和算法特性的评估。该算法必须在存在环境中其他源产生的周围电磁噪声的情况下正确工作。高反射墙壁增加了问题的难度,必须准确描述这种恶劣场景。展示并讨论了能够在重要且现实的情况下恢复呼吸频率的信号处理技术示例。