Consensus clustering-based undersampling for improved classification of transient events in time-domain astronomy surveys. [PDF]
Boongoen T, Iam-On N.
europepmc +1 more source
High-precision time-domain stereoscopic imaging with a femtosecond electro-optic comb. [PDF]
Wang Z +7 more
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Association between time-domain heart rate variability, diastolic dysfunction and unplanned readmission to cardiovascular department in older type 2 diabetes mellitus patients. [PDF]
Chen F +5 more
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Model reduction of structural mechanical response in the time domain. [PDF]
Yan X, Guo X, He N, Shi J, Zhao D.
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Time-domain response bounds for linear time invariant systems with application to transmission line traveling waves. [PDF]
Štumpf M, Nordebo S.
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Quantifying uncertainty in phasor-based time-domain fluorescence lifetime imaging microscopy. [PDF]
Chen Q, Park J, Mu S, Gao L.
europepmc +1 more source
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Integrating time signals in frequency domain – Comparison with time domain integration
Measurement: Journal of the International Measurement Confederation, 2014Abstract Integrating sampled time signals is a common task in signal processing. In this paper we investigate the performance of two straightforward integration methods: (i) integration in the frequency domain by a discrete Fourier transform (DFT), division by j ω followed by inverse DFT (IDFT) back to the time domain, and (ii) a method ...
Anders Brandt, Rune Brincker
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A Domain View of Timed Behaviors [PDF]
The intention of this paper is to introduce a timed extension of transition systems with independence, and to study its categorical interrelations with other time-sensitive models. In particular, we show the existence of a chain of coreflections leading from a category of the model of timed transition systems with independence to a category of a ...
Roman S. Dubtsov +2 more
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We demonstrate that, using a hologram, we can convert a spatial x-y image into an x-t image, where one spatial dimension is now transformed into the time domain. In particular, we generate the temporal equivalent of our corporate logo, where every pixel of the image is now represented by a short optical pulse.
M C, Nuss, R L, Morrison
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We present the results of an experimental pulsed DNP study at 1.2 T (33.5 GHz/51 MHz electron and 1H Larmor frequencies, respectively). The results include a comparison of constant-amplitude NOVEL (CA-NOVEL), ramped-amplitude NOVEL (RA-NOVEL) and the frequency-swept integrated solid effect (FS-ISE) experiments all of which were performed at the NOVEL ...
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