QOS Modeling and Analysis using QML in Mobile Computing Environment
Loading...
Date
item.page.authors
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
Mobile computing systems are different from fixed distributed system owing
newlineto its non-functional properties of the system which are related to the mobility. The
newlinefactors that define a mobile computing system are: application, middleware,
newlineoperating system (OS), mobile terminal, and mobile communication system. Quality
newlineof service (QoS) in mobile computing systems is therefore the combination of QoS
newlinecharacteristics and QoS mechanisms across the system. Quality of service is the
newlineability to provide different priority to different applications, users, or data flows, or
newlineto guarantee a certain level of performance to a data flow. For presenting a general
newlineQoS framework, modeling is defined using Quality of service modeling language
newline(QML) in Mobile Computing Environment which is based on combinations and
newlineextension of existing QoS frameworks. QML is designed to support QoS
newlinecharacteristics such as reliability, performance, security, and timing.
newlineNetwork designing techniques are complicated and quite complex. The QML
newlinecan help in reducing the network design complexity. QML is widely used modeling
newlinelanguage in the development processes. It is quite adapted for the specification of
newlinenon-functional aspect such as QoS. The overall aim of this research is to perform
newlinemodeling of the QoS in mobile computing environment using modeling languages
newlineQML and analyzing QoS parameters using of tools. It will add to QML the ability to
newlinespecify and handle the QoS that will be used in the mobile computing environment.
newlineA new technique of improving the congestion control and security of the
newlineMANET has been devised. QoS performance of the same has been evaluated using
newlinethe various parameters of the network system measurement. After this modification,
newlineit is observed that the performance of the protocol is improved. The analysis and
newlinemeasurements of the QoS parameters using tools (e.g. NS-2) is done, and then a
newlinecomparison between the Design times QoS parameters to Actual parameters is
newlineperformed. It is also proposed to find out the differences and causes of