NOISE FEATURES OF BREATH AND HEARTBEAT INFORMANT SIGNALS

Q4 Physics and Astronomy Radio Physics and Radio Astronomy Pub Date : 2022-01-01 DOI:10.15407/rpra27.04.284
O. Sytnik
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Abstract

Subject and Purpose. The subject of research is the flicker noise present in informant signals of search-and-rescue radars, specifically its properties and the effect it may have on algorithms for detecting and identifying manifestations of human breath and heartbeat processes during rescue operations. The work has been aimed at creating a suitable description of flicker noise for developing optimal algorithms of digital signal processing for quick detection and identification of informant signals during rescue missions. Method and Methodology. The low-frequency flicker noise has been modeled within the polynomial equations technique, proceeding from an analysis of real data on noise components in the output signals from a coherent search-and-rescue radar. A comparative analysis is done for a variety of approximating functions suggested for representing the low frequency portion of the spectrum observed. Results. For the low-frequency range wherein spectral components of the informative signal owing to respiration and heartbeat of humans are concentrated, an adequate model of the fluctuating interference is the flicker noise model built on the basis of polynomial equations. The problem of optimized model representation of the noise in digital signal processing algorithms has been analyzed for the case of a coherent search-and-rescue radar. A model of the fluctuating process has been suggested, based on a polynomial approximation for the spectral function in the low-frequency range of the signals observed at the radar output. Conclusion. Spectral characteristics of both interference and informant signals have been investigated. A structural diagram has been proposed for a high sensitivity, coherent search-and-rescue radar implementing a signal storage algorithm based on the polynomial model of the fluctuating process. The advantages and disadvantages of the radar are discussed, with examples given of real signal implementations and of noise spectrograms. Methods of effective estimation of Doppler signal phases are presented. The paper suggests an analysis of basic requirements as to parameters and performance characteristics of the rescue radar.
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呼吸和心跳信息信号的噪声特征
主题和目的。研究的主题是搜索和救援雷达的信息信号中存在的闪烁噪声,特别是它的特性以及它可能对在救援行动中检测和识别人类呼吸和心跳过程表现的算法产生的影响。这项工作的目的是创建一个合适的闪烁噪声描述,以开发数字信号处理的最佳算法,以便在救援任务中快速检测和识别信息信号。方法和方法论。通过对相干搜救雷达输出信号中噪声成分的实际数据分析,采用多项式方程技术对低频闪烁噪声进行建模。对各种近似函数进行了比较分析,建议用于表示所观察到的频谱的低频部分。结果。在人类呼吸和心跳信息信号频谱成分集中的低频范围内,基于多项式方程建立的闪烁噪声模型是波动干扰的适当模型。以相干搜救雷达为例,分析了数字信号处理算法中噪声的优化模型表示问题。根据在雷达输出处观测到的低频信号的谱函数的多项式近似,提出了波动过程的模型。结论。研究了干扰信号和信息信号的频谱特性。提出了一种基于波动过程多项式模型的高灵敏度相干搜救雷达的结构框图。讨论了该雷达的优点和缺点,并给出了实际信号实现和噪声谱图的例子。提出了有效估计多普勒信号相位的方法。分析了救援雷达的基本参数要求和性能特点。
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
期刊最新文献
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