bibtype D - Thesis
ARLID 0566001
utime 20230316110215.2
mtime 20221229235959.9
title (primary) (eng) Rychlé algoritmy Bayesovského rozhodování pro FPGA platformy
publisher
place Prague
name České vysoké učení technické v Praze
pub_time 2022
specification
page_count 182 s.
media_type P
title (eng) Fast Bayesian Algorithms for FPGA Platforms
keyword RLS algorithms
keyword FIR filters
keyword hypothesis testing
keyword Bayesian approach
keyword FPGA
keyword parallel processing
keyword pipelining
keyword ultrasound
keyword hand detection
author (primary)
ARLID cav_un_auth*0330517
name1 Likhonina
name2 Raissa
institution UTIA-B
full_dept (cz) Zpracování signálů
full_dept (eng) Department of Signal Processing
department (cz) ZS
department (eng) ZS
full_dept Department of Signal Processing
country CZ
fullinstit Ústav teorie informace a automatizace AV ČR, v. v. i.
source
url http://library.utia.cas.cz/separaty/2022/ZS/likhonina-0566001.pdf
cas_special
abstract (eng) The thesis is devoted to fast Bayesian algorithms, more precisely to the QRD RLS Lattice algorithm combined with hypothesis testing and applied to hand detection problem solution based on ultrasound technology. Due to the proposed structure of regression models and the offered approach to hypothesis testing in the work, the algorithm under consideration is able to solve the problem of noise cancellation and additionally to compute the distance between the hand and the device; thus, potentially enabling to identify simple gestures. Further, the algorithm was implemented in parallel on the HW platform of Xilinx Zynq Ultrascale+ device with a quad-core ARM Cortex A53 processor and FPGA programmable logic and proved to function reliably and accurately in real time using real data from an ultrasound microphone.\nThe work contains an investigation of the state of the art in the corresponding field and gives the theoretical background necessary for the development and modification of the algorithm to fulfill the goals of the thesis.\nThe thesis also includes thorough description of experiments and an analysis of the results including those from simulation and from computation using real ultrasound data both in the MATLAB R2019b environment and on the HW platform of Xilinx Zynq Ultrascale+.
RIV BC
FORD0 10000
FORD1 10200
FORD2 10201
reportyear 2023
habilitation
degree Ph.D.
institution ČVUT, Fakulta dopravní
place Prague
year 2022
dates 21.10.2022
inst_support RVO:67985556
permalink https://hdl.handle.net/11104/0337922
confidential S
arlyear 2022
mrcbU10 2022
mrcbU10 Prague České vysoké učení technické v Praze