The Experts below are selected from a list of 86739 Experts worldwide ranked by ideXlab platform
James Won-ki Hong - One of the best experts on this subject based on the ideXlab platform.
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An efficient and lightweight embedded Web server for Web-based Network Element management
International Journal of Network Management, 2000Co-Authors: Mi-joung Choi, James Won-ki HongAbstract:An Embedded Web Server lEWSr is a Web server which runs on an embedded system with limited computing resources to serve embedded Web documents to a Web browser. By embedding a Web server into a Network device, it is possible to provide a Webhbased management user interface, which are userhfriendly, inexpensive, crosshplatform, and Networkhready. This article explores the topic of an efficient and lightweight embedded Web server for Webhbased Network Element management. Copyright © 2000 John Wiley & Sons, Ltd.
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NOMS - An efficient embedded Web server for Web-based Network Element management
NOMS 2000. 2000 IEEE IFIP Network Operations and Management Symposium 'The Networked Planet: Management Beyond 2000' (Cat. No.00CB37074), 1Co-Authors: Mi-joung Choi, Hyun-jun Cha, Sook-hyang Kim, James Won-ki HongAbstract:An embedded Web server (EWS) is a Web server that runs on an embedded system with limited computing resources and serves embedded Web documents to a Web browser. By embedding a Web server into a Network device, it is possible for an EWS to provide a powerful Web-based management user interface constructed using HTML, graphics and other features common to Web browsers. When applied to embedded systems, Web technologies offer graphical user interfaces which are user-friendly, inexpensive, cross-platform, and Network-ready. This paper explores the topic of an efficient and lightweight embedded Web server for Web-based Network Element management. We present the architecture of an embedded Web server that can provide a simple but powerful API. We also present the design and implementation of POS-EWS, which is an embedded Web server that we have developed for Web-based Network Element management. As well, we present the results of POS-EWS's performance evaluation and EWS optimization methods in a commercial Internet router.
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NOMS - Effective management application interface and integration mechanisms for Web-based Network Element management
NOMS 2000. 2000 IEEE IFIP Network Operations and Management Symposium 'The Networked Planet: Management Beyond 2000' (Cat. No.00CB37074), 1Co-Authors: Mi-jung Choi, Hyun-jun Cha, Sook-hyang Kim, James Won-ki HongAbstract:In this paper we introduce interface mechanisms for use between embedded management applications and embedded Web servers, and provide a guideline for choosing an efficient interface mechanism. Also we provide effective integration mechanisms for each interface mechanism for the sake of cost-effective development of Web-based Network Element management.
Wu Tao - One of the best experts on this subject based on the ideXlab platform.
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Applicaion of Multitask Concurrency Schedule in SDH Network Element
Computer Engineering, 2009Co-Authors: Wu TaoAbstract:In order to improve the concurrency processing performance and response time of Agent in EMS/Agent centralized management,this paper proposes an efficient NE Agent architecture.It uses lightweight Job to replace task as the smallest units of system schedule,and combines with multi-threaded asynchronous mechanism to improving parallelism.At present,the technology has been successfully applied in ZTE's optical transmission equipment and effectively improved the parallel processing capacity and interactive response time of the system.
Amareswari Kotikalapudi - One of the best experts on this subject based on the ideXlab platform.
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“Determination of the chromospheric quiet Network Element area index and its variation between 2008 and 2011" (RAA, Vol. 12, p.201 [2012])
Research in Astronomy and Astrophysics, 2012Co-Authors: Jagdev Singh, Ravindra Belur, Selvendran Raju, Kumaravel Pichaimani, Muthu Priyal, T. G. Priya, Amareswari KotikalapudiAbstract:As a result of the authors’ error, the paper “Determination of the chromospheric quiet Network Element area index and its variation between 2008 and 2011” by Singh, J. et al. (RAA, Vol. 12, p.201 [2012]) contains errors in page 206. In the original article, the top right and bottom images were inadvertently interchanged in Figure 5. The correct sequence of images is shown in this erratum. Figure caption and details about the images remain unchanged.
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Determination of the chromospheric quiet Network Element area index and its variation between 2008 and 2011
Research in Astronomy and Astrophysics, 2012Co-Authors: Jagdev Singh, Ravindra Belur, Selvendran Raju, Kumaravel Pichaimani, Muthu Priyal, T. G. Priya, Amareswari KotikalapudiAbstract:In general, it is believed that plages and sunspots are the main contributors to solar irradiance. There are small-scale structures on the Sun with intermediate magnetic fields that could also contribute to solar irradiance, but it has not yet been quantified how many of these small scale structures contribute and how much this varies over the solar cycle. We used Ca II K images obtained from the telescope at the Kodaikanal observatory. We report a method to separate the Network Elements from the background structure and plage regions, and compute the changes in the Network Element area index during the minimum phase of the solar cycle and part of the ascending phase of cycle 24. The measured area occupied by the Network Elements is about 30% and the plages cover less than 1% of the solar disk during the observation period from February 2008 to 2011. During the extended period of minimum activity, it is observed that the Network Element area index decreases by about 7% compared to the area occupied by the Network Elements in 2008. A long term study of the Network Element area index is required to understand the variations over the solar cycle.
Mi-joung Choi - One of the best experts on this subject based on the ideXlab platform.
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An efficient and lightweight embedded Web server for Web-based Network Element management
International Journal of Network Management, 2000Co-Authors: Mi-joung Choi, James Won-ki HongAbstract:An Embedded Web Server lEWSr is a Web server which runs on an embedded system with limited computing resources to serve embedded Web documents to a Web browser. By embedding a Web server into a Network device, it is possible to provide a Webhbased management user interface, which are userhfriendly, inexpensive, crosshplatform, and Networkhready. This article explores the topic of an efficient and lightweight embedded Web server for Webhbased Network Element management. Copyright © 2000 John Wiley & Sons, Ltd.
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NOMS - An efficient embedded Web server for Web-based Network Element management
NOMS 2000. 2000 IEEE IFIP Network Operations and Management Symposium 'The Networked Planet: Management Beyond 2000' (Cat. No.00CB37074), 1Co-Authors: Mi-joung Choi, Hyun-jun Cha, Sook-hyang Kim, James Won-ki HongAbstract:An embedded Web server (EWS) is a Web server that runs on an embedded system with limited computing resources and serves embedded Web documents to a Web browser. By embedding a Web server into a Network device, it is possible for an EWS to provide a powerful Web-based management user interface constructed using HTML, graphics and other features common to Web browsers. When applied to embedded systems, Web technologies offer graphical user interfaces which are user-friendly, inexpensive, cross-platform, and Network-ready. This paper explores the topic of an efficient and lightweight embedded Web server for Web-based Network Element management. We present the architecture of an embedded Web server that can provide a simple but powerful API. We also present the design and implementation of POS-EWS, which is an embedded Web server that we have developed for Web-based Network Element management. As well, we present the results of POS-EWS's performance evaluation and EWS optimization methods in a commercial Internet router.
Liu Wei - One of the best experts on this subject based on the ideXlab platform.
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Research on FACT Protocol
Computer Science, 2004Co-Authors: Liu WeiAbstract:FACT protocol is a protocol defined for forwarding Element and control Element separation (ForCES). Control Element could direct forwarding Element of a Network Element in master/slave architecture in a distributed environment. The article firsts introduces FACT protocol and investigates it's extensibility,scalability and high availability support for Network Element, presents its application in a NP based router and the author's design of FACT's prototype implementation.