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Architecture and Algorithm for Real-time AI-Enabled Real-time Bio-system

Background and Motivation

Research Goal

The goal of this thesis is to propose a DNN (CNN) parallelization algorithm, architecture, and design of a Real-time AI-Enabled Real-time Bio-system.

Research Schedule

DateTask
☑Nov 1 ~ Dec 7, 2020Resize MNIST dataset
Dec 21 ~ TBDUpdate paper "Hand Gesture Processing with Sensor Fusion based on Neuromorphic System"
☑Dec 24 ~ Jan 8, 2021EMG dataset collection using Myo
☑Jan 9 ~ 20, 2021Implementing signal processing part in Matlab
☑Jan 20 ~ Feb 28, 2021Add source code and dataset into github
☑Jan 17 ~ 31, 2021Help to revise ETLTC20210 papers
☑Feb 20 ~ 26, 2021Test 3D printer
☑Mar 2 ~ Mar 5, 2021Study AIRBiS project and write slide
☑Mar 2 ~ Mar 12, 2021Inference of batch test on FPGA and communicate network with UI for 64x64 grayscale
☑Mar 12 ~ Mar 22, 2021Inference of batch test on FPGA and communicate network with UI for 128x128 grayscale
☑Mar 15 ~ Mar 23, 2021Write Hardware Acceleration Part of journal draft
☑Mar 24, 2021Find source code in internet for parallel CNN
☑Mar 26 ~ Apr 2, 2021comparison to other works
☑Apr 3 ~ Apr 14, 2021work on training on FPGA for AIRBiS project
☑Apr 15 ~ Apr 28, 2021Work on speed up for time cost using SDSoC
Apr 29 ~ May 16Modify speed up sample code for AIRBiS CNN
May 17 ~ June 1work on parallel CNN on FPGA for AIRBiS Project
June 2~ June 20Evaluate parallel CNN on FPGA for AIRBiS Project
June 21~ June 28Investigate new CNN mapping algorithm
June 29 ~ July 9Explore mapping CNN algorithm onto NoC
July 11 ~ July 22Evaluate CNN mapping algorithm on NoC
July 23~ August 23Explore the more secure system on hardware
August 24 ~ SeptPrepare paper for publication opportunity
Schedule last updated on: 4/28/2021

References


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