ScholarGate
Asistent

Uporedite metode

Pregledajte izabrane metode jednu pored druge; redovi koji se razlikuju su istaknuti.

Komprensivno sensing×Dizajn FIR filtera×
OblastObrada signalaObrada signala
PorodicaProcess / pipelineProcess / pipeline
Godina nastanka20061987
TvoracEmmanuel Candès, Justin Romberg, and Terence TaoThomas W. Parks and C. Sidney Burrus
TipSparse signal recoveryFinite Impulse Response filter design
Temeljni izvorCandes, E. J., Romberg, J., & Tao, T. (2006). Robust Uncertainty Principles: Exact Signal Reconstruction from Highly Incomplete and Inaccurate Measurements. IEEE Transactions on Information Theory, 52(2), 489–509. DOI ↗Parks, T. W., & Burrus, C. S. (1987). Digital Filter Design. John Wiley & Sons. link ↗
Drugi naziviCompressed Sensing, CS, Sparse Recovery, Sub-Nyquist SamplingFIR Design, Finite impulse response, Non-recursive filter design
Srodne44
SažetakCompressive Sensing (CS) is a signal acquisition and reconstruction technique that exploits signal sparsity to recover high-resolution signals from far fewer samples than required by the Nyquist sampling theorem. Developed by Emmanuel Candès, Justin Romberg, and Terence Tao in 2006, compressive sensing challenges the traditional sampling paradigm by showing that signals with sparse representations can be reconstructed from sub-Nyquist random measurements using nonlinear optimization.Finite Impulse Response (FIR) filters are digital filters with an impulse response that settles to zero in finite time, making them fundamentally stable and easy to analyze. Unlike their IIR counterparts, FIR filters are inherently stable, can have exactly linear phase response, and are widely used in applications from audio processing to telecommunications where phase distortion must be minimized.
ScholarGateSkup podataka
  1. v1
  2. 2 Izvori
  3. PUBLISHED
  1. v1
  2. 2 Izvori
  3. PUBLISHED

Idi na pretragu Preuzmi slajdove

ScholarGateUporedite metode: Compressive Sensing · FIR Filter Design. Preuzeto 2026-06-17 sa https://scholargate.app/sr/compare