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Frequency-modulated continuous-wave (FMCW) radar is used to extract range and velocity information from the beat signal. However, the traditional joint range-velocity estimation algorithms often experience significant performances degradation under low signal-to-noise ratio (SNR) conditions. To address this issue, this paper proposes a novel approach utilizing the complementary ensemble empirical mode decomposition (CEEMD) combined with singular value decomposition (SVD) to reconstruct the beat signal prior to applying the FFT-Root-MUSIC algorithm for joint range and velocity estimation. This results in a novel joint range-velocity estimation algorithm termed as the CEEMD-SVD-FFT-Root-MUSIC (CEEMD-SVD-FRM) algorithm. First, the beat signal contaminated with additive white Gaussian noise is decomposed using CEEMD, and an appropriate autocorrelation coefficient threshold is determined to select the highly correlated intrinsic mode functions (IMFs). Then, the SVD is applied to the selected highly correlated IMFs for denoising the beat signal. Subsequently, the denoised IMFs and signal residuals are combined to reconstruct the beat signal. Finally, the FFT-Root-MUSIC algorithm is applied to the reconstructed beat signal to estimate both the range and Doppler frequencies, which are then used to calculate the range and velocity estimates of the targets. The proposed CEEMD-SVD-FRM algorithm is validated though simulations and experiments, demonstrating significant improvement in the robustness and accuracy of range and velocity estimates for the FMCW radar due to the effective denoising of the reconstructed beat signal. Moreover, it substantially outperforms the traditional methods in low SNR environments.
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http://dx.doi.org/10.3390/s24248000 | DOI Listing |
Am J Hypertens
September 2025
New York State Psychiatric Institute, New York NY.
Background: Blood pressure (BP) is not steady. It varies over intervals from months to consecutive cardiac cycles and this variation contains meaningful information beyond mean BP. Variability over multiple clinic visits (VVV-BP) and during 24-hour ambulatory monitoring (ABPV) is positively related to risk of stroke and coronary artery disease and negatively associated with cognitive performance.
View Article and Find Full Text PDFIEEE J Biomed Health Inform
September 2025
Identifying the onset of the QRS complex is an important step for localizing the site of origin (SOO) of premature ventricular complexes (PVCs) and the exit site of Ventricular Tachycardia (VT). However, identifying the QRS onset is challenging due to signal noise, baseline wander, motion artifact, and muscle artifact. Furthermore, in VT, QRS onset detection is especially difficult due to the overlap with repolarization from the prior beat.
View Article and Find Full Text PDFJ Appl Physiol (1985)
September 2025
Cardiovascular Research Laboratory, Spaulding Hospital Cambridge, Cambridge, MA.
Assessment of sympathetic transduction into its effects on the cardiovascular system is of great interest in human research. Analysis of sympathetic transduction has been divided into neurovascular and neurohemodynamic, highlighting the sympathetic effect on either regional vascular or systemic pressure responses. This study investigates whether indices of neurovascular transduction are reflected in parallel neurohemodynamic transduction during normoxia and hypoxia, with and without accounting for the confounds of prevailing tachypnea and tachycardia.
View Article and Find Full Text PDFbioRxiv
August 2025
Department of Physiology & Membrane Biology, School of Medicine, University of California, Davis, USA.
Pacemaker myocytes of the sinoatrial (SA) node initiate each heartbeat through coupled voltage and Ca oscillators, but whether ATP supply is regulated on a beat-by-beat schedule in these cells has been unclear. Using genetically encoded sensors targeted to the cytosol and mitochondria, we tracked beat-resolved ATP dynamics in intact mouse SA node and isolated myocytes. Cytosolic ATP rose transiently with each Ca transient and segregated into high- and low-gain phenotypes defined by the Ca-ATP coupling slope.
View Article and Find Full Text PDFSensors (Basel)
August 2025
Center for the Advancement of Well-Being, George Mason University, Fairfax, VA 22030, USA.
Electrocardiogram (ECG) devices are commonly used to monitor heart rate (HR) and heart rate variability (HRV), but their signal quality under non-upright or torso-dominant activities may suffer due to motion artifact and interference from surrounding musculature. We compared ECG signal quality during treadmill walking, circuit training, and an obstacle course using three chest-worn commercial devices (Polar H10, Equivital EQ-02, and Zephyr BioHarness 3.0) and a multi-lead ECG monitor (BIOPAC).
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