BERT: Remote Sensing of Vital Signs for Bioradar With an Efficient Recursive Technique
BERT: дистанционное определение жизненных показателей для биорадара с эффективной рекурсивной техникой
2025-04-18
SCID: 54.1/mp3nztpf
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Markov state modelbioradarcomputational accelerationrecursive techniquevital signs sensing
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Abstract (AI)
Recursive techniques have demonstrated excellent computational efficiency in classic remote sensing tasks but are rarely applied in emerging remote sensing tasks in the IoT field, such as bioradar-based remote sensing of vital signs (VS). As a fundamental but important problem, VS sensing lacks an effective state model, making it difficult to implement using recursive techniques for a bioradar system. However, this paper presents an efficient recursive technique (BERT) that benefits remote VS sensing and accelerates computational speed with bioradar. Specifically, the recursive technique is derived from an efficient Markov state model based on the features of bioradar VS and is significantly helpful for algorithm implementation. This technique fills the recursive application gap in the VS sensing task and motivates further exploration of its rationale. Thanks to the strong capability of the recursive technique in computation, the proposed BERT requires less time and demonstrates greater accuracy compared to other methods in simulation results. We further conduct extensive experiments on two real datasets — one comprising 50 children and the other involving 30 adults across various scenarios, and the results show that the BERT algorithm significantly accelerates computation speed, reducing processing time by nearly 41% compared to the state-of-the-art algorithm, while maintaining superior estimation accuracy. Furthermore, this work also offers a fresh perspective on interpreting remote VS sensing for bioradar.
Key Findings
1
BERT fills the gap of applying recursive methods to vital signs sensing by providing an effective state model enabling recursive implementation.
2
In simulations, BERT requires less time and demonstrates greater accuracy compared to other methods.
3
Introduced BERT, an efficient recursive technique for bioradar-based remote sensing of vital signs derived from a Markov state model tailored to bioradar VS features.
4
On two real datasets (50 children, 30 adults), BERT reduces processing time by nearly 41% versus the state-of-the-art while maintaining superior estimation accuracy.
5
The work offers a new perspective for interpreting remote vital signs sensing in bioradar systems.
Research Object
Bioradar-based remote sensing system for vital signs monitoring
Research Subject
An efficient recursive technique (BERT) based on a Markov state model for accelerating computation and improving accuracy in remote vital-signs sensing with bioradar
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2025-04-18
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