Improved Network Consistency and Connectivity in Mobile and Sensor Systems

Edge networks such as sensor, mobile, and disruption tolerant networks suffer from topological uncertainty and disconnections due to myriad of factors including limited battery capacity on client devices and mobility. Hence, providing reliable, always-on consistency for network applications in such...

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Main Author: Banerjee, Nilanjan
Format: Others
Published: ScholarWorks@UMass Amherst 2009
Subjects:
Online Access:https://scholarworks.umass.edu/open_access_dissertations/85
https://scholarworks.umass.edu/cgi/viewcontent.cgi?article=1085&context=open_access_dissertations
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spelling ndltd-UMASS-oai-scholarworks.umass.edu-open_access_dissertations-10852020-12-02T14:40:05Z Improved Network Consistency and Connectivity in Mobile and Sensor Systems Banerjee, Nilanjan Edge networks such as sensor, mobile, and disruption tolerant networks suffer from topological uncertainty and disconnections due to myriad of factors including limited battery capacity on client devices and mobility. Hence, providing reliable, always-on consistency for network applications in such mobile and sensor systems is non-trivial and challenging. However, the problem is of paramount importance given the proliferation of mobile phones, PDAs, laptops, and music players. This thesis identifies two fundamental deterrents to addressing the above problem. First, limited energy on client mobile and sensor devices makes high levels of consistency and availability impossible. Second, unreliable support from the network infrastructure, such as coverage holes in WiFi degrades network performance. We address these two issues in this dissertation through client and infrastructure end modifications. The first part of this thesis proposes a novel energy management architecture called Hierarchical Power Management (HPM). HPM combines platforms with diverse energy needs and capabilities into a single integrated system to provide high levels of consistency and availability at minimal energy consumption. We present two systems Triage and Turducken which are instantiations of HPM for sensor net microservers and laptops respectively. The second part of the thesis proposes and analyzes the use of additional infrastructure in the form of relays, mesh nodes, and base stations to enhance sparse and dense mobile networks. We present the design, implementation, and deployment of Throwboxes a relay system to enhance sparse mobile networks and an associated system for enhancing WiFi based mobile networks. 2009-09-01T07:00:00Z text application/pdf https://scholarworks.umass.edu/open_access_dissertations/85 https://scholarworks.umass.edu/cgi/viewcontent.cgi?article=1085&context=open_access_dissertations Open Access Dissertations ScholarWorks@UMass Amherst Disruption Tolerant Networks Energy Management Hierarchical Power Management Mobile Systems Open WiFi connectivity Computer Sciences
collection NDLTD
format Others
sources NDLTD
topic Disruption Tolerant Networks
Energy Management
Hierarchical Power Management
Mobile Systems
Open WiFi connectivity
Computer Sciences
spellingShingle Disruption Tolerant Networks
Energy Management
Hierarchical Power Management
Mobile Systems
Open WiFi connectivity
Computer Sciences
Banerjee, Nilanjan
Improved Network Consistency and Connectivity in Mobile and Sensor Systems
description Edge networks such as sensor, mobile, and disruption tolerant networks suffer from topological uncertainty and disconnections due to myriad of factors including limited battery capacity on client devices and mobility. Hence, providing reliable, always-on consistency for network applications in such mobile and sensor systems is non-trivial and challenging. However, the problem is of paramount importance given the proliferation of mobile phones, PDAs, laptops, and music players. This thesis identifies two fundamental deterrents to addressing the above problem. First, limited energy on client mobile and sensor devices makes high levels of consistency and availability impossible. Second, unreliable support from the network infrastructure, such as coverage holes in WiFi degrades network performance. We address these two issues in this dissertation through client and infrastructure end modifications. The first part of this thesis proposes a novel energy management architecture called Hierarchical Power Management (HPM). HPM combines platforms with diverse energy needs and capabilities into a single integrated system to provide high levels of consistency and availability at minimal energy consumption. We present two systems Triage and Turducken which are instantiations of HPM for sensor net microservers and laptops respectively. The second part of the thesis proposes and analyzes the use of additional infrastructure in the form of relays, mesh nodes, and base stations to enhance sparse and dense mobile networks. We present the design, implementation, and deployment of Throwboxes a relay system to enhance sparse mobile networks and an associated system for enhancing WiFi based mobile networks.
author Banerjee, Nilanjan
author_facet Banerjee, Nilanjan
author_sort Banerjee, Nilanjan
title Improved Network Consistency and Connectivity in Mobile and Sensor Systems
title_short Improved Network Consistency and Connectivity in Mobile and Sensor Systems
title_full Improved Network Consistency and Connectivity in Mobile and Sensor Systems
title_fullStr Improved Network Consistency and Connectivity in Mobile and Sensor Systems
title_full_unstemmed Improved Network Consistency and Connectivity in Mobile and Sensor Systems
title_sort improved network consistency and connectivity in mobile and sensor systems
publisher ScholarWorks@UMass Amherst
publishDate 2009
url https://scholarworks.umass.edu/open_access_dissertations/85
https://scholarworks.umass.edu/cgi/viewcontent.cgi?article=1085&context=open_access_dissertations
work_keys_str_mv AT banerjeenilanjan improvednetworkconsistencyandconnectivityinmobileandsensorsystems
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