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130篇 您的检索式:作者名="Civanlar"
    题名 作者 年代 出处 被引量
1Interactive transport of multi-view videos for 3DTV applications显示文摘The authors propose a novel method for transporting multi-view videos that aims to keep the bandwidth requirements on both end-users and servers as low as possible. The method is based on application layer multicast, where each end point re- ceives only a selected number of views required for rendering video from its current viewpoint at any given time. The set of selected videos changes in real time as the user’s viewpoint changes because of head or eye movements. Techniques for reducing the black-outs during fast viewpoint changes were investigated. The performance of the approach was studied through network experiments.KURUTEPE Engin CIVANLAR M.Reha TEKALP A.Murat 2006Journal of Zhejiang University-Science A(Applied Physics & Engineering)2006,7,5:4
2Distribution feeder reconfiguration for loss reduction显示文摘Civanlar S Grainger J J Yin H 1988IEEE Trans on Power Delivery1988,3,3:2
3Distribution feeder reconfiguration for loss reducfion显示文摘Civanlar S Grainger J J Yin H 1988IEEE Trans on Power Systems1988,3,3:2
4Distribution feeder reconfiguration for loss reduction显示文摘Civanlar S Grainger J J Yin H 1988IEEE Trans on Power Delivery1988,3,3:2
5Client-driven selective streaming of multiview video for interactive 3DTV显示文摘Kurutepe E Civanlar M R Tekalp A M 2007IEEE Transactions on Circuits and Systems for Video Technology2007,17,11:1
6Distribution feeder reconfiguration for loss reduction显示文摘Civanlar S Grainger J J Yin H 1988IEEE Trans on Power Delivery1988,3,3:1
7Distribution feeder reconfiguration for loss reduction显示文摘CIVANLAR S GRAINGER J J YIN H 1988IEEE Transaction on Power Delivery1988,3,3:1
8The feasible solution in signal restoration显示文摘Trussell H J Civanlar M R 1984IEEE Trans Acoust Speech Signal Processing1984,32,2:1
9Distribution feeder reconfiguration for loss reduction显示文摘Civanlar S Grainger J J Yin H 1988IEEE Trans on Power Delivery1988,3,7:1
10Transmission of MPEG - 2 streams over non - guaranteed quality of service networks 显示文摘BASSO A CASH G L CIVANLAR M R 1997Picture Coding Symposium1997,,4:1
11Distribution feeder reconfiguration for loss reduction显示文摘Civanlar S Grainger J J Yin H 1988IEEE Trans on Power Delivery1988,3,3:1
12Distribution feeder reconfiguration for loss reduction显示文摘Civanlar S Grainger J J Yin H 1988IEEE Transaction on Power Delivery1988,3,7:1
13Distribution feeder reconfiguration for loss reduction显示文摘Civanlar S Grainger J J Yin H 1988IEEE Transaction on PWRD1988,3,3:1
14Distribution feeder reconfiguration for Iossreduction显示文摘Civanlar S 1988IEEE Trans on Power Delivery1988,3,3:1
15Distribution reconfiguration for loss reduction显示文摘 Grainger J J Yin H 1988IEEE Trans on Power Delivery1988,3,3:1
16Distribution feeder reconfiguration for loss reduction显示文摘Civanlar S Grainger J J Yin H 1988IEEE Trans on Power Delivery1988,3,3:1
17Distribution feeder reconfigumtion for loss reduction显示文摘Civanlar S Grainger J J Lee SH 1988IEEE Transaction on Power Sysletrg1988,3,3:1
18Distribution feeder reconfiguration for loss reduction 显示文摘CIVANLAR S GRAINGER J J YIN H 1988IEEE Trans Power Delivery1988,3,3:1
19Multipoint videoconferencing with scalable video coding显示文摘We describe a system for multipoint videoconferencing that offers extremely low end-to-end delay, low cost and complexity, and high scalability, alongside standard features associated with high-end solutions such as rate matching and per- sonal video layout. The system accommodates heterogeneous receivers and networks based on the Internet Protocol and relies on scalable video coding to provide a coded representation of a source video signal at multiple temporal and spatial resolutions as well as quality levels. These are represented by distinct bitstream components which are created at each end-user encoder. Depending on the specific conferencing environment, some or all of these components are transmitted to a Scalable Video Conferencing Server (SVCS). The SVCS redirects these components to one or more recipients depending on, e.g., the available network con- ditions and user preferences. The scalable aspect of the video coding technique allows the system to adapt to different network conditions, and also accommodates different end-user requirements (e.g., a user may elect to view another user at a high or low spatial resolution). Performance results concerning flexibility, video quality and delay of the system are presented using the Joint Scalable Video Model (JSVM) of the forthcoming SVC (H.264 Annex G) standard, demonstrating that scalable coding outper- forms existing state-of-the-art systems and offers the right platform for building next-generation multipoint videoconferencing systems.ELEFTHERIADIS Alexandros CIVANLAR M.Reha SHAPIRO Ofer 2006Journal of Zhejiang University-Science A(Applied Physics & Engineering)2006,7,5:1
20Distribution feeder reconfiguration for loss reduction显示文摘Civanlar S Grainger J J Lee S H 1988IEEE Trans on Power Delivery1988,3,3:1
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