Time-frequency synthesis and filtering
View/ Open
Publisher version (Check access options)
Check access options
Date
2016Author
Hlawatsch, F.Matz, G.
Boashash, B.
Ouelha, S.
Stanković, S.
Hassanpour, H.
...show more authors ...show less authors
Metadata
Show full item recordAbstract
This chapter presents methods and techniques to design time-varying linear systems such as filters with precise time-frequency (t,f) specifications; this capability can then allow one to model and predict accurately the effects of linear systems on nonstationary signals in applications such as signal cleansing and enhancement. This topic is covered in six sections. The design of time-varying filters is required in applications where it is desired to separate, suppress, or reduce undesirable nonstationary signal components. This can be performed with piece-wise harmonic decomposition methods such as the short-time Fourier transform (STFT) and the Gabor transform (Section 11.1). In particular, the use of the Gabor expansion for time-varying filtering is illustrated on an application that involves monitoring machine vibrations; in addition, an alternative method, the inverse STFT is applied to (t,f) filtering with an illustration on a speech signal (Section 11.2). Another illustration of the procedure for designing a time-varying filter is provided in the context of an application involving handsfree telephone speech signals (Section 11.3). Another important application of time-varying filtering procedure, namely signal enhancement, is described using an iterative algorithm based on time-frequency peak filtering (Section 11.4). Then, a method for subspace noise filtering using a time-frequency distribution is described (Section 11.5); and finally a comparison of denoising algorithms for speech enhancement completes the chapter (Section 11.6).
Collections
- Electrical Engineering [2647 items ]
Related items
Showing items related by title, author, creator and subject.
-
Accurate and efficient implementation of the time–frequency matched filter
O'Toole, J.M.; Mesbah, M; Boashash, B ( Institution of Engineering and Technology , 2010 , Article)The discrete time-frequency matched filter should replicate the continuoustime-frequency matched filter, but the methods differ. To avoid aliasing, thediscrete method transforms the real-valued signal to the complex-valued ... -
Time-frequency signal and image processing of non-stationary signals with application to the classification of newborn EEG abnormalities
Boashash, Boualem; Boubchir, Larbi; Azemi, Ghasem ( IEEE , 2011 , Conference Paper)This paper presents an introduction to time-frequency (T-F) methods in signal processing, and a novel approach for EEG abnormalities detection and classification based on a combination of signal related features and image ... -
Detection, classification, and estimation in the (t, f ) domain
Sayeed, A.M.; Papandreou-Suppappola, A.; Suppappola, S.B.; Xia, X.-G.; Hlawatsch, F.; Matz, G.; Boashash, B.; Azemi, G.; Khan, N.A.... more authors ... less authors ( Elsevier Inc. , 2016 , Book chapter)Several studies involving real-life applications have shown that methods for the detection, estimation, and classification of nonstationary signals can be enhanced by utilizing the time-frequency ((t,f)) characteristics ...