Using Ambient Radio Environment to Support Practical Pervasive Computing

Mobile applications can benefit from increased awareness of the device's context. Unfortunately, existing solutions for inferring context require special purpose sensors or beacons on the mobile devices or in the physical environment. This requirement significantly limits the deployment of thes...

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Bibliographic Details
Main Author: Varshavsky, Alexander
Other Authors: de Lara, Eyal
Format: Others
Language:en_ca
Published: 2008
Subjects:
Online Access:http://hdl.handle.net/1807/17258
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OTU.1807-172582013-11-02T03:42:22ZUsing Ambient Radio Environment to Support Practical Pervasive ComputingVarshavsky, Alexandermobile computinglocalizationcontext-awarenesssecure pairing0984Mobile applications can benefit from increased awareness of the device's context. Unfortunately, existing solutions for inferring context require special purpose sensors or beacons on the mobile devices or in the physical environment. This requirement significantly limits the deployment of these solutions. In this thesis, I argue that mobile devices can infer a substantial amount of their context by leveraging their existing wireless interfaces to monitor ambient radio sources, such as GSM cell towers or WiFi access points. I focus on two important problems in context-aware computing: localization of mobile devices and detecting proximity between mobile devices for authentication purposes. Specifically, I present an accurate localization system based on fingerprinting of GSM signals. I show that the key to more accurate GSM localization is the use of wide signal strength fingerprints that include readings from a large number of base stations. Next, I present a method that addresses the key drawback of fingerprint-based localization systems - the need to collect extensive measurements to train the system in every target environment. Finally, I show how radio environment sensing can be used to secure the communication of devices that come within close proximity. Removing the need for additional hardware on the mobile devices and in the physical environment renders the approach that I present amenable for widespread deployment.de Lara, EyalLaMarca, Anthony2008-112009-02-26T18:03:16ZNO_RESTRICTION2009-02-26T18:03:16Z2009-02-26T18:03:16ZThesis957190 bytesapplication/pdfhttp://hdl.handle.net/1807/17258en_ca
collection NDLTD
language en_ca
format Others
sources NDLTD
topic mobile computing
localization
context-awareness
secure pairing
0984
spellingShingle mobile computing
localization
context-awareness
secure pairing
0984
Varshavsky, Alexander
Using Ambient Radio Environment to Support Practical Pervasive Computing
description Mobile applications can benefit from increased awareness of the device's context. Unfortunately, existing solutions for inferring context require special purpose sensors or beacons on the mobile devices or in the physical environment. This requirement significantly limits the deployment of these solutions. In this thesis, I argue that mobile devices can infer a substantial amount of their context by leveraging their existing wireless interfaces to monitor ambient radio sources, such as GSM cell towers or WiFi access points. I focus on two important problems in context-aware computing: localization of mobile devices and detecting proximity between mobile devices for authentication purposes. Specifically, I present an accurate localization system based on fingerprinting of GSM signals. I show that the key to more accurate GSM localization is the use of wide signal strength fingerprints that include readings from a large number of base stations. Next, I present a method that addresses the key drawback of fingerprint-based localization systems - the need to collect extensive measurements to train the system in every target environment. Finally, I show how radio environment sensing can be used to secure the communication of devices that come within close proximity. Removing the need for additional hardware on the mobile devices and in the physical environment renders the approach that I present amenable for widespread deployment.
author2 de Lara, Eyal
author_facet de Lara, Eyal
Varshavsky, Alexander
author Varshavsky, Alexander
author_sort Varshavsky, Alexander
title Using Ambient Radio Environment to Support Practical Pervasive Computing
title_short Using Ambient Radio Environment to Support Practical Pervasive Computing
title_full Using Ambient Radio Environment to Support Practical Pervasive Computing
title_fullStr Using Ambient Radio Environment to Support Practical Pervasive Computing
title_full_unstemmed Using Ambient Radio Environment to Support Practical Pervasive Computing
title_sort using ambient radio environment to support practical pervasive computing
publishDate 2008
url http://hdl.handle.net/1807/17258
work_keys_str_mv AT varshavskyalexander usingambientradioenvironmenttosupportpracticalpervasivecomputing
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