In wireless communication, multiple receive-antennas are used with orthogonal frequency division multiplexing (OFDM) to improve the system capacity and performance. The discrete Fourier transform (DFT) plays an important part in such a system since the DFTs are required to be performed for the output of all those antennas separately. This paper presents area-time efficient systolic structures for one-dimensional (1-D) and two-dimensional (2-D) DFTs of general lengths. A low-complexity recursive algorithm based on Clenshaw’s recurrence relation is formulated for the computation of 1-D DFT. The proposed algorithm is used further to derive a linear systolic array for the DFT. The concurrency of computation has been enhanced and complexity is m...
Discrete Fourier transform (DFT) is an important tool in digital signal processing. In the present p...
AbstractIn this paper, a recursive algorithm and two linear systolic architectures for realizing the...
[[abstract]]© 1999 Institute of Electrical and Electronics Engineers - This paper presents a novel V...
In wireless communication, multiple receiveantennas are used with orthogonal frequency division mult...
highly concurrent systolization of the discrete Fourier transform (DFT). The concurrency of computat...
A new recursive solution based on Clenshaw's recurrence relation is formulated for computation of th...
Efficient systolic designs for 1- and 2-dimensional DFT of general transform-lengths for high-speed ...
A simple 2-dimensional architecture is derived for highly concurrent systolization of the 2-dimensio...
In this thesis, we propose efficient systolic array architectures for the 1-D and the 2-D discrete F...
[[abstract]]© 1993 Institute of Electrical and Electronics Engineers - The two-dimensional discrete ...
[[abstract]]© 1992 Institute of Electrical and Electronics Engineers - A new two-dimensional systoli...
[[abstract]]An approach for realizing the N-point discrete Fourier transform (DFT) of an input seque...
[[abstract]]© 1992 Institute of Electrical and Electronics Engineers - Proposes a 2D systolic array ...
[[abstract]]In this paper, we propose two new VLSI architectures for computing the N-point discrete ...
In this paper, we propose new algorithms for computing the Discrete Hartley and the Discrete Cosine ...
Discrete Fourier transform (DFT) is an important tool in digital signal processing. In the present p...
AbstractIn this paper, a recursive algorithm and two linear systolic architectures for realizing the...
[[abstract]]© 1999 Institute of Electrical and Electronics Engineers - This paper presents a novel V...
In wireless communication, multiple receiveantennas are used with orthogonal frequency division mult...
highly concurrent systolization of the discrete Fourier transform (DFT). The concurrency of computat...
A new recursive solution based on Clenshaw's recurrence relation is formulated for computation of th...
Efficient systolic designs for 1- and 2-dimensional DFT of general transform-lengths for high-speed ...
A simple 2-dimensional architecture is derived for highly concurrent systolization of the 2-dimensio...
In this thesis, we propose efficient systolic array architectures for the 1-D and the 2-D discrete F...
[[abstract]]© 1993 Institute of Electrical and Electronics Engineers - The two-dimensional discrete ...
[[abstract]]© 1992 Institute of Electrical and Electronics Engineers - A new two-dimensional systoli...
[[abstract]]An approach for realizing the N-point discrete Fourier transform (DFT) of an input seque...
[[abstract]]© 1992 Institute of Electrical and Electronics Engineers - Proposes a 2D systolic array ...
[[abstract]]In this paper, we propose two new VLSI architectures for computing the N-point discrete ...
In this paper, we propose new algorithms for computing the Discrete Hartley and the Discrete Cosine ...
Discrete Fourier transform (DFT) is an important tool in digital signal processing. In the present p...
AbstractIn this paper, a recursive algorithm and two linear systolic architectures for realizing the...
[[abstract]]© 1999 Institute of Electrical and Electronics Engineers - This paper presents a novel V...