The Experts below are selected from a list of 180 Experts worldwide ranked by ideXlab platform
Y. Okumura - One of the best experts on this subject based on the ideXlab platform.
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A full mesh ATCA-based general purpose data Processing Board
Journal of Instrumentation, 2014Co-Authors: J. Olsen, T. Liu, Y. OkumuraAbstract:High luminosity conditions at the LHC pose many unique challenges for potential silicon based track trigger systems. Among those challenges is data formatting, where hits from thousands of silicon modules must first be shared and organized into overlapping trigger towers. Other challenges exist for Level-1 track triggers, where many parallel data paths may be used for high speed time multiplexed data Processing. A full mesh high speed backplane is a natural candidate to address both challenges. A custom full mesh enabled ATCA Board called the Pulsar II has been designed with the goal of creating a scalable architecture abundant in flexible, non-blocking, high bandwidth Board-to-Board communication channels while keeping the design as simple as possible.
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Prototype performance studies of a full mesh ATCA-based general purpose data Processing Board
2013 IEEE Nuclear Science Symposium and Medical Imaging Conference (2013 NSS MIC), 2013Co-Authors: Y. Okumura, J. Olsen, T. Liu, Hang YinAbstract:High luminosity conditions at the LHC pose many unique challenges for potential silicon based track trigger systems. One of the major challenges is data formatting, where hits from thousands of silicon modules must first be shared and organized into overlapping eta-phi trigger towers. Communication between nodes requires high bandwidth, low latency, and flexible real time data sharing, for which a full mesh backplane is a natural solution. A custom Advanced Telecommunications Computing Architecture data Processing Board is designed with the goal of creating a scalable architecture abundant in flexible, non-blocking, high bandwidth Board to Board communication channels while keeping the design as simple as possible. We have performed the first prototype Board testing and our first attempt at designing the prototype system has proven to be successful. Leveraging the experience we gained through designing, building and testing the prototype Board system we are in the final stages of laying out the next generation Board, which will be used in the ATLAS Level-2 Fast TracKer as Data Formatter, as well as in the CMS Level-1 tracking trigger R&D for early technical demonstrations.
H Inoue - One of the best experts on this subject based on the ideXlab platform.
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real time color stereo vision system for a mobile robot based on field multiplexing
International Conference on Robotics and Automation, 1997Co-Authors: Yosuke Matsumoto, Tomohiro Shibata, K Sakai, Masayuki Inaba, H InoueAbstract:This paper discusses a stereo vision Processing system which processes color and monochrome stereo video signals on a single vision Processing Board. Here, we propose a "field mixing" technique for multiplexing multiple video signals. A compact color stereo vision system based on this technique is developed for a mobile robot. This system can process multiple video signals simultaneously, and realizes flexible color stereo vision Processing. In order to show the feasibility of this vision system, we installed it on our mobile robot, and implemented a correlation-based EZDF method for stereo tracking of an object. The experimental result of the tracking is shown.
J. Olsen - One of the best experts on this subject based on the ideXlab platform.
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A full mesh ATCA-based general purpose data Processing Board
Journal of Instrumentation, 2014Co-Authors: J. Olsen, T. Liu, Y. OkumuraAbstract:High luminosity conditions at the LHC pose many unique challenges for potential silicon based track trigger systems. Among those challenges is data formatting, where hits from thousands of silicon modules must first be shared and organized into overlapping trigger towers. Other challenges exist for Level-1 track triggers, where many parallel data paths may be used for high speed time multiplexed data Processing. A full mesh high speed backplane is a natural candidate to address both challenges. A custom full mesh enabled ATCA Board called the Pulsar II has been designed with the goal of creating a scalable architecture abundant in flexible, non-blocking, high bandwidth Board-to-Board communication channels while keeping the design as simple as possible.
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Prototype performance studies of a full mesh ATCA-based general purpose data Processing Board
2013 IEEE Nuclear Science Symposium and Medical Imaging Conference (2013 NSS MIC), 2013Co-Authors: Y. Okumura, J. Olsen, T. Liu, Hang YinAbstract:High luminosity conditions at the LHC pose many unique challenges for potential silicon based track trigger systems. One of the major challenges is data formatting, where hits from thousands of silicon modules must first be shared and organized into overlapping eta-phi trigger towers. Communication between nodes requires high bandwidth, low latency, and flexible real time data sharing, for which a full mesh backplane is a natural solution. A custom Advanced Telecommunications Computing Architecture data Processing Board is designed with the goal of creating a scalable architecture abundant in flexible, non-blocking, high bandwidth Board to Board communication channels while keeping the design as simple as possible. We have performed the first prototype Board testing and our first attempt at designing the prototype system has proven to be successful. Leveraging the experience we gained through designing, building and testing the prototype Board system we are in the final stages of laying out the next generation Board, which will be used in the ATLAS Level-2 Fast TracKer as Data Formatter, as well as in the CMS Level-1 tracking trigger R&D for early technical demonstrations.
Hang Yin - One of the best experts on this subject based on the ideXlab platform.
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Prototype performance studies of a full mesh ATCA-based general purpose data Processing Board
2013 IEEE Nuclear Science Symposium and Medical Imaging Conference (2013 NSS MIC), 2013Co-Authors: Y. Okumura, J. Olsen, T. Liu, Hang YinAbstract:High luminosity conditions at the LHC pose many unique challenges for potential silicon based track trigger systems. One of the major challenges is data formatting, where hits from thousands of silicon modules must first be shared and organized into overlapping eta-phi trigger towers. Communication between nodes requires high bandwidth, low latency, and flexible real time data sharing, for which a full mesh backplane is a natural solution. A custom Advanced Telecommunications Computing Architecture data Processing Board is designed with the goal of creating a scalable architecture abundant in flexible, non-blocking, high bandwidth Board to Board communication channels while keeping the design as simple as possible. We have performed the first prototype Board testing and our first attempt at designing the prototype system has proven to be successful. Leveraging the experience we gained through designing, building and testing the prototype Board system we are in the final stages of laying out the next generation Board, which will be used in the ATLAS Level-2 Fast TracKer as Data Formatter, as well as in the CMS Level-1 tracking trigger R&D for early technical demonstrations.
T. Liu - One of the best experts on this subject based on the ideXlab platform.
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A full mesh ATCA-based general purpose data Processing Board
Journal of Instrumentation, 2014Co-Authors: J. Olsen, T. Liu, Y. OkumuraAbstract:High luminosity conditions at the LHC pose many unique challenges for potential silicon based track trigger systems. Among those challenges is data formatting, where hits from thousands of silicon modules must first be shared and organized into overlapping trigger towers. Other challenges exist for Level-1 track triggers, where many parallel data paths may be used for high speed time multiplexed data Processing. A full mesh high speed backplane is a natural candidate to address both challenges. A custom full mesh enabled ATCA Board called the Pulsar II has been designed with the goal of creating a scalable architecture abundant in flexible, non-blocking, high bandwidth Board-to-Board communication channels while keeping the design as simple as possible.
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Prototype performance studies of a full mesh ATCA-based general purpose data Processing Board
2013 IEEE Nuclear Science Symposium and Medical Imaging Conference (2013 NSS MIC), 2013Co-Authors: Y. Okumura, J. Olsen, T. Liu, Hang YinAbstract:High luminosity conditions at the LHC pose many unique challenges for potential silicon based track trigger systems. One of the major challenges is data formatting, where hits from thousands of silicon modules must first be shared and organized into overlapping eta-phi trigger towers. Communication between nodes requires high bandwidth, low latency, and flexible real time data sharing, for which a full mesh backplane is a natural solution. A custom Advanced Telecommunications Computing Architecture data Processing Board is designed with the goal of creating a scalable architecture abundant in flexible, non-blocking, high bandwidth Board to Board communication channels while keeping the design as simple as possible. We have performed the first prototype Board testing and our first attempt at designing the prototype system has proven to be successful. Leveraging the experience we gained through designing, building and testing the prototype Board system we are in the final stages of laying out the next generation Board, which will be used in the ATLAS Level-2 Fast TracKer as Data Formatter, as well as in the CMS Level-1 tracking trigger R&D for early technical demonstrations.