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Sonarvergelijking×Filtered-x Least Mean Squares (FxLMS) Active Noise Control×
VakgebiedAkoestiekAkoestiek
FamilieProcess / pipelineProcess / pipeline
Jaar van ontstaan19831975
GrondleggerRobert UrickBernard Widrow, Samuel Stearns
TypeUnderwater acoustic detection frameworkAdaptive noise cancellation algorithm
Oorspronkelijke bronUrick, R. J. (1983). Principles of Underwater Sound (3rd ed.). McGraw-Hill. ISBN: 978-0070660816Widrow, B., & Stearns, S. D. (1975). Adaptive signal processing for active vibration and noise control. IEEE Transactions on Acoustics, Speech, and Signal Processing, 23(5), 440–453. DOI ↗
Aliassenactive sonar equation, passive sonar equation, underwater detection, acoustic range equationFxLMS, filtered-x LMS, active noise cancellation, ANC
Verwant55
SamenvattingThe sonar equation is a fundamental framework for predicting the detection range and performance of active and passive sonar systems in underwater environments. Systematized by Robert Urick in his seminal 1983 work, the sonar equation quantifies the acoustic signal-to-noise ratio (SNR) needed for detection, accounting for source level, propagation loss, noise characteristics, and receiver sensitivity. It is the cornerstone of underwater acoustic system design, naval detection systems, marine research, and subsea communication.The Filtered-x Least Mean Squares (FxLMS) algorithm is an adaptive filter used in active noise control (ANC) systems to reduce unwanted sound by generating anti-noise. Pioneered by Widrow and Stearns in 1975 and refined by Eriksson and colleagues, FxLMS is the most widely deployed algorithm in commercial noise-canceling headphones, hearing aids, automotive cabins, and industrial noise barriers. It works by continuously learning the acoustical path and dynamically adjusting a canceling signal in real time.
ScholarGateGegevensset
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  1. v1
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  3. PUBLISHED

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ScholarGateMethoden vergelijken: Sonar Equation · FxLMS Active Noise Control. Geraadpleegd op 2026-06-19 via https://scholargate.app/nl/compare