The Experts below are selected from a list of 86724 Experts worldwide ranked by ideXlab platform
Dennis G. Shea - One of the best experts on this subject based on the ideXlab platform.
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ICEBE - Cloud Service Portal for Mobile Device Management
2010 IEEE 7th International Conference on E-Business Engineering, 2010Co-Authors: Randy Moulic, Dennis G. SheaAbstract:Mobile Device has become an important tool and component in many businesses and used widely as a successful platform to invent and develop new applications to increase efficiency and reduce cost. Maintaining a fleet of Devices for the mobile task force in a secure and scalable fashion is critical to ensure the long-term success of enterprise mobility platforms. Many mobile Device Management suites have been designed and implemented lately to provide some Management functions to enterprise mobile fleet, but to the best of our knowledge, none of them have leveraged the power of emerging cloud computing infrastructure and there are several areas that we see great potentials for significant improvements. In this paper, we present our design for a portal to provide remote Management access to virtualized Device Management servers hosted in a service cloud. Our design is targeted to hide the details of the Device Management behind a standard-based, uniform control interface that can be viewed from a cross-platform agent that can run on multiple mobile platforms. We will also describe briefly the prototype we are developing as an internal pilot.
Benjamin Zores - One of the best experts on this subject based on the ideXlab platform.
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An extensible Agent Toolkit for Device Management
2004Co-Authors: Radu State, Olivier Festor, Benjamin ZoresAbstract:The advent of multiple connected and interoperating Devices is becoming almost common place in modern lifestyle. The Management of these Devices is an important asset for providing acceptable services to end users. Novel approaches are being developped that respect the communication, processing and power capacities of these limited Devices. One of these approaches is SyncML Device Management. In this paper, we present an open-source agent toolkit built around the SyncML model and evaluate the performance and cost of this approach in the context of limited Devices supposed to host Management agents.
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Conception et Implémentation d'un Toolkit Agent SyncML
2003Co-Authors: Benjamin ZoresAbstract:Toolkit Agent pour la gestion fondée sur le SyncML Device Management protocol.
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NOMS (1) - An extensible agent toolkit for Device Management
2004 IEEE IFIP Network Operations and Management Symposium (IEEE Cat. No.04CH37507), 1Co-Authors: Radu State, Olivier Festor, Benjamin ZoresAbstract:The advent of multiple connected and interoperating Devices is becoming almost commonplace in the modern lifestyle. The Management of these Devices is an important asset for providing acceptable services to end users. Novel approaches are being developed that respect the communication, processing and power capacities of these limited Devices. One of these approaches is the SyncML Device Management. in this paper, we present an open-source agent toolkit built around the SyncML model and evaluate the performance and cost of this approach in the context of limited Devices supposed to host Management agents.
Kin Choong Yow - One of the best experts on this subject based on the ideXlab platform.
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AmI - A bluetooth-based Device Management platform for smart sensor environment
Lecture Notes in Computer Science, 2010Co-Authors: Ivan Boon-kiat Lim, Kin Choong YowAbstract:In this paper, we propose the use of Bluetooth as the Device Management platform for the various embedded sensors and actuators in an ambient intelligent environment. We demonstrate the ease of adding Bluetooth capability to common sensor circuits (e.g. motion sensor circuit based on a pyroelectric infrared (PIR) sensor). A central logic application is proposed which controls the operation of controller Devices, based on values returned by sensors via Bluetooth. The operation of Devices depends on rules that are learnt from user behavior using an Elman recurrent neural network. Overall, Bluetooth has shown its potential in being used as a Device Management platform in an ambient intelligent environment, which allows sensors and controllers to be deployed even in locations where power sources are not readily available, by using battery power.
Jong Hyuk Park - One of the best experts on this subject based on the ideXlab platform.
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Blockchain-Based Secure Device Management Framework for an Internet of Things Network in a Smart City
Sustainability, 2019Co-Authors: Seonghyeon Gong, Erzhena Tcydenova, Jeonghoon Jo, Jong Hyuk ParkAbstract:The broadly configured smart city network requires a variety of security considerations for a heterogeneous Device environment. Because a network of heterogeneous Devices facilitates an attacker’s intrusion through a specific Device or node, a Device Management framework is required to manage each node comprehensively. This paper proposes a blockchain-based Device Management framework for efficient Device Management, scalable firmware update and resiliences on attacks against smart city network. This framework offers four Device Management and firmware update mechanisms based on the performance and requirements of each Device: bidirectional mechanism of general end node and a unidirectional mechanism of the lightweight end node. This difference optimizes the resource of network and Devices in terms of Management and security. All Management history of each Device is stored in the blockchain and transmitting firmware between vendor and Management node is conducted through a smart contract of blockchain for security and resilience on the attack. Through the framework proposed in this paper, the confidentiality and availability of Device Management on smart city network as well as integrity, auditability, adaptability and authentication for each node are ensured and the effectiveness of the proposed framework is presented through the security analysis.
Ming Liu - One of the best experts on this subject based on the ideXlab platform.
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SMC - Resource-oriented architecture toward efficient Device Management and service enablement
2017 IEEE International Conference on Systems Man and Cybernetics (SMC), 2017Co-Authors: Brighter Agyemang, Nantogma Sulemana, Ming LiuAbstract:Recent advances in the Internet-of-Things has given rise to the possibility of connecting different kinds of Devices to the internet. With low computing resources constraining most IoT Devices and their networks, managing the capabilities and services of the various constrained Devices over the internet has been an issue for IoT implementations. Existing approaches to this problem lack end-to-end resource-oriented Device Management architecture for resource constrained Devices and their networks as a result of protocol fragmentation in the domain. This study first proposes a Device Management architecture which is able to leverage more than one protocol in addressing this problem. We then base on the architecture to put forward an implementation approach to manifesting this solution through our usage of a simulated Smart Building case study. The analysis of the case study shows that the proposed resource-oriented architecture achieves Device Management and service enablement operations with good performance.