Title :
Multi-objective optimization of rotary travelling wave oscillator (RTWO) with neuro-genetic nondominated sorting algorithm
Author :
Aidoo, Marvin ; Harouna, Moussa ; Homaifar, Abdollah ; Dogan, Numan S. ; Zhijian Xie ; Savci, Huseyin ; Roblin, Patrick
Author_Institution :
Elec. & Comp. Eng., North Carolina A&T State Univ., Greensboro, NC, USA
Abstract :
Rotary travelling wave oscillator (RTWO) represents a transmission line based technology for multigigahertz clock generation. RTWO design is a multi-parameter-multi-objective problem with tradeoffs of performance measures, power and phase noise. In this paper, non-dominated based genetic algorithm for multi-objective optimization is used to determine the Pareto optimal front of solutions for low power and phase noise with emphasis on variation of transmission line width and spacing. Optimization is followed by sensitivity assessment wherein Monte Carlo simulations and corner analysis are performed on the Pareto points with respect to process variations. The algorithm is validated in the design of RTWO whose frequency varies between 3 to 5 GHz due to varying dimensions of coupled transmission line. The optimization is a two step process. A neural network is developed from experimental data to estimate phase noise and power with transmission line width and spacing as inputs. The neural network is then coupled with genetic algorithm for subsequent design optimization. Our results show a set of solutions for width and spacing with objective functions less sensitive to process variations.
Keywords :
Monte Carlo methods; Pareto optimisation; clocks; electronic engineering computing; genetic algorithms; neural nets; oscillators; telecommunication computing; transmission lines; Monte Carlo simulations; Pareto optimal front; Pareto points; RTWO; coupled transmission line; frequency 3 GHz to 5 GHz; multigigahertz clock generation; multiobjective optimization; multiparameter-multiobjective problem; neural network; neuro-genetic nondominated sorting algorithm; phase noise; rotary travelling wave oscillator; subsequent design optimization; transmission line based technology; transmission line spacing; transmission line width; Clocks; Genetic algorithms; Neural networks; Optimization; Phase noise; Power transmission lines; Nondominated sorting genetic algorithm II (NSGA II); Pareto optimal front;
Conference_Titel :
Wireless Symposium (IWS), 2013 IEEE International
Conference_Location :
Beijing
DOI :
10.1109/IEEE-IWS.2013.6616760