Over the last two decades, fixed coefficient FIR filters were generally optimized by minimizing the number of adders required to implement the multiplier block in the transposed direct form filter structure. In this paper, an optimization method for the structural adders in the transposed tapped delay line is proposed. Although additional registers are required, an optimal trade-off can be made such that the overall combinational logic is reduced. For a majority of taps, the delay through the structural adder is shortened except for the last tap. The one full adder delay increase for the last optimized tap is tolerable as it does not fall in the critical path in most cases. The criterion for which area reduction is possible is analytically ...
Transpose-form finite impulse response (FIR) structures are inherently pipelined and support multipl...
This work presents two novel methods that simultaneously optimize both the design of a finite impuls...
In multiplierless finite impulse response (FIR) filters, the product accumulation block (PAB) could ...
The explosive growth of communication and multimedia applications have put forward a demand for high...
As the complexity of digital filters is dominated by the number of multiplica-tions, many works have...
As the complexity of digital filters is dominated by the number of multiplica-tions, many works have...
Implementation of the polyphase decomposed FIR filter structure involves two steps; the generation o...
Implementation of the polyphase decomposed FIR filter structure involves two steps; the generation o...
The most area and power consuming arithmetic operation in high-performance circuits like Finite Impu...
Finite impulse response filters are widely used in digital signal processing applications. Prodigiou...
Finite impulse response filters are widely used in digital signal processing applications. Prodigiou...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
Transpose-form finite impulse response (FIR) structures are inherently pipelined and support multipl...
This work presents two novel methods that simultaneously optimize both the design of a finite impuls...
In multiplierless finite impulse response (FIR) filters, the product accumulation block (PAB) could ...
The explosive growth of communication and multimedia applications have put forward a demand for high...
As the complexity of digital filters is dominated by the number of multiplica-tions, many works have...
As the complexity of digital filters is dominated by the number of multiplica-tions, many works have...
Implementation of the polyphase decomposed FIR filter structure involves two steps; the generation o...
Implementation of the polyphase decomposed FIR filter structure involves two steps; the generation o...
The most area and power consuming arithmetic operation in high-performance circuits like Finite Impu...
Finite impulse response filters are widely used in digital signal processing applications. Prodigiou...
Finite impulse response filters are widely used in digital signal processing applications. Prodigiou...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
Transpose-form finite impulse response (FIR) structures are inherently pipelined and support multipl...
This work presents two novel methods that simultaneously optimize both the design of a finite impuls...
In multiplierless finite impulse response (FIR) filters, the product accumulation block (PAB) could ...