Optimization of filter banks based on the knowledge of input statistics has been of interest for a long time. Finite impulse response (FIR) Compaction filters are used in the design of optimal signal adapted orthonormal FIR filter banks. In this paper we discuss three different approaches for the design of interpolated finite impulse response (IFIR) compaction filters. In the first method, the magnitude squared response satisfies Nyquist constraint approximately. In the second and third methods Nyquist constraint is exactly satisfied. These methods yield FIR compaction filters whose response is comparable with that of the existing methods. At the same time, IFIR filters enjoy significant saving in the number of multipliers and can be implem...
We introduce a new approach to design FIR energy compaction filters of arbitrary order N. The optimi...
In many applications such as acoustic echo cancellation aid wideband active noise control, the Least...
A critical parameter in any finite impulse response (FIR) design is the impulse response length, whi...
Recently, much attention has been given to the design of optimal finite impulse response (FIR) compa...
Much attention has recently been given to the construction of signal-adapted orthonormal filter bank...
The finite impulse response filters are inherently stable and have linear phase response property. T...
We propose algorithms for the design of FIR compaction filters, which find applications in FIR subba...
The design of signal-adapted multirate filter banks has been an area of research interest. The autho...
The interpolated FIR (IFIR) technique has been shown to be very useful in designing narrow band lowp...
This study provides a review of digital filters known under the name “interpolated finite impulse re...
Energy compaction has proven to be an essential concept in signal-adapted data compression. In parti...
In this paper we consider the optimization of compaction gain for filters belonging to a restricted ...
We introduce a new approach for the least squared optimization of a weighted FIR filter of arbitrary...
We study the design of signal--adapted FIR paraunitary filter banks, using energy compaction as the ...
The advantage of infinite-impulse response (IIR) filters over finite-impulse response (FIR) ones is ...
We introduce a new approach to design FIR energy compaction filters of arbitrary order N. The optimi...
In many applications such as acoustic echo cancellation aid wideband active noise control, the Least...
A critical parameter in any finite impulse response (FIR) design is the impulse response length, whi...
Recently, much attention has been given to the design of optimal finite impulse response (FIR) compa...
Much attention has recently been given to the construction of signal-adapted orthonormal filter bank...
The finite impulse response filters are inherently stable and have linear phase response property. T...
We propose algorithms for the design of FIR compaction filters, which find applications in FIR subba...
The design of signal-adapted multirate filter banks has been an area of research interest. The autho...
The interpolated FIR (IFIR) technique has been shown to be very useful in designing narrow band lowp...
This study provides a review of digital filters known under the name “interpolated finite impulse re...
Energy compaction has proven to be an essential concept in signal-adapted data compression. In parti...
In this paper we consider the optimization of compaction gain for filters belonging to a restricted ...
We introduce a new approach for the least squared optimization of a weighted FIR filter of arbitrary...
We study the design of signal--adapted FIR paraunitary filter banks, using energy compaction as the ...
The advantage of infinite-impulse response (IIR) filters over finite-impulse response (FIR) ones is ...
We introduce a new approach to design FIR energy compaction filters of arbitrary order N. The optimi...
In many applications such as acoustic echo cancellation aid wideband active noise control, the Least...
A critical parameter in any finite impulse response (FIR) design is the impulse response length, whi...