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Artificial intelligence for microwave circuit simulations

Artificial intelligence for microwave circuit simulations / Sam Kah Seng
Sejak beberapa dekad yang lalu, Jaringan Saraf Tiruan (ANN) muncul sebagai alat yang popular untuk menganalisis pelbagai parameter dalam pemodelan peranti gelombang frekuensi radio (RF) dan gelombang mikro. Analisis ini berjaya membuktikannya cepat dan tepat dalam teori dan eksperimen daripada kerja yang lalu. Pada masa kini, talian kelewatan dan integriti isyarat main peranan yang penting dalam peranti gelombang mikro. Dalam penyelidikan ini, talian Serpentine atau talian Meander akan disiasat berdasarkan hubungan antara lengah perambatan dan parameter fizikal talian mikro-jalur. Parameter kritikal yang dipertimbangkan ialah kelebaran jalur, kepanjangan jalur, jarak antara jalur, bilangan selekoh dan jenis selekoh. Parameter ini akan dijadikan sebagai pasangan input-sasaran data untuk diberikan kepada rangkaian neural untuk sesi latihan dan sesi pengesahan. Momentum dalam Advanced Design System (ADS) digunakan untuk mensimulasikan talian Meander kerana ia merupakan penyelesai elektromagnet, bagi mendapatkan S-parameters dan menjanakan susun atur litar. S-parameter yang dihasilkan akan digunakan dalam model transient untuk menentukan lengah perambatan dalam talian meander. MATLAB digunakan dalam penyelidikan ini untuk mewujudkan model rangkaian neural yang boleh meramal lengah perambatan. Kaedah penghampiran diguna untuk menentukan bilangan neuron yang tersembunyi untuk mengoptimumkan prestasi rangkaian neural dari segi kelajuan melatih dan ketepatan hasilnya. Akhirnya, simulasi ADS dan ANN akan dibandingkan untuk mengesahkan prestasi dan mewajarkan ketepatan analisis yang dicadangkan. Keputusan menunjukkan ANN mencapai ketepatan melebihi 0.995 (dengan rujukan 1.0) dan masa latihan yang kurang daripada satu saat. _______________________________________________________________________________________________________ For the past decades, the Artificial Neural Networks (ANNs) have emerged as a popular tool for analysing the various type of parameters in radio frequency (RF) and microwave device modelling and designing. This type of analysis has been shown to be fast and accurate, both theoretically and experimentally from the past work. In today high-speed digital world delay lines and signal integrity plays an important role in microwave devices. In this work, serpentine lines or meander lines will be investigated base on their correlation between the propagation delay and the physical parameters of the microstrip lines. Some of the critical parameters to be considered while designing the microstrip line are serpentine line width, length, spacing, the number of bends and types of bends. These parameters will be the input-target pairs of data to be fed to the neural network for training session and validation purpose later on. The Momentum simulator in Advanced Design System (ADS) will be used to simulate the meander lines as it is an electromagnetic solver, to get the S-parameters and generating layout. The S-parameters generated will be used to create the transient modelling which can determine the propagation delay in meander lines. MATLAB is used in this research to create the desired neural network model for propagation delay prediction. Approximation method is employed to find the best number of hidden neurones which can optimise the performance of the neural network in term of the training speed and the accuracy. Finally, both the ADS and ANN results for simulated delay times of meander lines are compared to validate the performance and to justify the exactitude of proposed analysis. The results indicate that the ANN achieves an accuracy of above 0.995 (with a reference of 1.0) with a training time of less than a second.
Contributor(s):
Sam Kah Seng - Author
Primary Item Type:
Final Year Project
Identifiers:
Barcode : 00003107023
Accession Number : 875007145
Language:
English
Subject Keywords:
Artificial Neural Networks; high-speed digital world; microstrip line
First presented to the public:
6/1/2017
Original Publication Date:
4/18/2018
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Electrical & Electronic Engineering
Citation:
Extents:
Number of Pages - 75
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2018-04-18 12:26:05.253
Date Last Updated
2019-01-07 11:24:32.9118
Submitter:
Mohd Jasnizam Mohd Salleh

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