DocumentCode :
3580646
Title :
Multi-objective Optimization for VLSI Circuits
Author :
Shinde, Jitesh R. ; Salankar, S.
Author_Institution :
IEEE, Nagpur, India
fYear :
2014
Firstpage :
1037
Lastpage :
1041
Abstract :
Area, Speed and power are the basic design constraints which affects the performance of VLSI circuits. The main hurdle in the VLSI implementation of digital circuits is that either the design can be area efficient or power efficient or speed efficient; but not all area-time-speed efficient simultaneously. Optimizing one parameter affects the other. In this paper, an optimal multi-objective approach for VLSI implementation of digital circuit has been suggested; wherein digital low pass symmetric finite impulse response (FIR) filter has been selected as case study. Simulation results with gscl 45 nm tech file on Synopsis Design Vision Tool and Xilinx tool shows that the proposed modification in existing direct form FIR filter structure has reduced area up to 96.52 %, power by 97.44 % and can also improve the circuit latency (or speed) considerably, compared to the existing direct form digital FIR filter structure, and also modified direct form FIR filter structure is efficient than transposed direct form FIR filter structure.
Keywords :
FIR filters; VLSI; circuit optimisation; integrated circuit design; low-pass filters; Synopsis Design Vision tool; VLSI circuits; Xilinx tool; design constraints; digital FIR filter structure; digital circuits; digital low pass symmetric finite impulse response filter; multiobjective optimization approach; size 45 nm; Adders; Delays; Finite impulse response filters; Hardware; Optimization; Very large scale integration; Digit serial adder; Multiple Constant Multiplication; direct form finite impulse response filter; fixed point arithmetic; transposed direct form finite impulse response filter;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computational Intelligence and Communication Networks (CICN), 2014 International Conference on
Print_ISBN :
978-1-4799-6928-9
Type :
conf
DOI :
10.1109/CICN.2014.218
Filename :
7065638
Link To Document :
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