The Experts below are selected from a list of 306 Experts worldwide ranked by ideXlab platform

Geoffrey H Kuenning - One of the best experts on this subject based on the ideXlab platform.

  • SAC - The remote processing framework for Portable Computer power saving
    Proceedings of the 1999 ACM symposium on Applied computing - SAC '99, 1999
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    Recent research has demonstrated that Portable Computer users can save battery power by migrating tasks over wireless networks to server machines. Making this technique generally useful requires considerable automation. This paper describes a framework for automatically migrating tasks from a Portable Computer over a wireless network to a server and migrating the results back. The paper presents the framework's architecture, discusses key issues in creating the framework, and presents performance results that demonstrate that the framework is both useful and power-inexpensive.

  • the remote processing framework for Portable Computer power saving
    ACM Symposium on Applied Computing, 1999
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    Recent research has demonstrated that Portable Computer users can save battery power by migrating tasks over wireless networks to server machines. Making this technique generally useful requires considerable automation. This paper describes a framework for automatically migrating tasks from a Portable Computer over a wireless network to a server and migrating the results back. The paper presents the framework's architecture, discusses key issues in creating the framework, and presents performance results that demonstrate that the framework is both useful and power-inexpensive.

  • saving Portable Computer battery power through remote process execution
    Mobile Computing and Communications Review, 1998
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    We describe a new approach to power saving and battery life extension on an untethered laptop through wireless remote processing of power-costly tasks. We ran a series of experiments comparing the power consumption of processes run locally with that of the same processes run remotely. We examined the trade-off between communication power expenditures and the power cost of local processing. This paper describes our methodology and results of our experiments. We suggest ways to further improve this approach, and outline a software design to support remote process execution.

Alexey Rudenko - One of the best experts on this subject based on the ideXlab platform.

  • SAC - The remote processing framework for Portable Computer power saving
    Proceedings of the 1999 ACM symposium on Applied computing - SAC '99, 1999
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    Recent research has demonstrated that Portable Computer users can save battery power by migrating tasks over wireless networks to server machines. Making this technique generally useful requires considerable automation. This paper describes a framework for automatically migrating tasks from a Portable Computer over a wireless network to a server and migrating the results back. The paper presents the framework's architecture, discusses key issues in creating the framework, and presents performance results that demonstrate that the framework is both useful and power-inexpensive.

  • the remote processing framework for Portable Computer power saving
    ACM Symposium on Applied Computing, 1999
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    Recent research has demonstrated that Portable Computer users can save battery power by migrating tasks over wireless networks to server machines. Making this technique generally useful requires considerable automation. This paper describes a framework for automatically migrating tasks from a Portable Computer over a wireless network to a server and migrating the results back. The paper presents the framework's architecture, discusses key issues in creating the framework, and presents performance results that demonstrate that the framework is both useful and power-inexpensive.

  • saving Portable Computer battery power through remote process execution
    Mobile Computing and Communications Review, 1998
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    We describe a new approach to power saving and battery life extension on an untethered laptop through wireless remote processing of power-costly tasks. We ran a series of experiments comparing the power consumption of processes run locally with that of the same processes run remotely. We examined the trade-off between communication power expenditures and the power cost of local processing. This paper describes our methodology and results of our experiments. We suggest ways to further improve this approach, and outline a software design to support remote process execution.

Gerald J Popek - One of the best experts on this subject based on the ideXlab platform.

  • SAC - The remote processing framework for Portable Computer power saving
    Proceedings of the 1999 ACM symposium on Applied computing - SAC '99, 1999
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    Recent research has demonstrated that Portable Computer users can save battery power by migrating tasks over wireless networks to server machines. Making this technique generally useful requires considerable automation. This paper describes a framework for automatically migrating tasks from a Portable Computer over a wireless network to a server and migrating the results back. The paper presents the framework's architecture, discusses key issues in creating the framework, and presents performance results that demonstrate that the framework is both useful and power-inexpensive.

  • the remote processing framework for Portable Computer power saving
    ACM Symposium on Applied Computing, 1999
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    Recent research has demonstrated that Portable Computer users can save battery power by migrating tasks over wireless networks to server machines. Making this technique generally useful requires considerable automation. This paper describes a framework for automatically migrating tasks from a Portable Computer over a wireless network to a server and migrating the results back. The paper presents the framework's architecture, discusses key issues in creating the framework, and presents performance results that demonstrate that the framework is both useful and power-inexpensive.

  • saving Portable Computer battery power through remote process execution
    Mobile Computing and Communications Review, 1998
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    We describe a new approach to power saving and battery life extension on an untethered laptop through wireless remote processing of power-costly tasks. We ran a series of experiments comparing the power consumption of processes run locally with that of the same processes run remotely. We examined the trade-off between communication power expenditures and the power cost of local processing. This paper describes our methodology and results of our experiments. We suggest ways to further improve this approach, and outline a software design to support remote process execution.

Peter Reiher - One of the best experts on this subject based on the ideXlab platform.

  • SAC - The remote processing framework for Portable Computer power saving
    Proceedings of the 1999 ACM symposium on Applied computing - SAC '99, 1999
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    Recent research has demonstrated that Portable Computer users can save battery power by migrating tasks over wireless networks to server machines. Making this technique generally useful requires considerable automation. This paper describes a framework for automatically migrating tasks from a Portable Computer over a wireless network to a server and migrating the results back. The paper presents the framework's architecture, discusses key issues in creating the framework, and presents performance results that demonstrate that the framework is both useful and power-inexpensive.

  • the remote processing framework for Portable Computer power saving
    ACM Symposium on Applied Computing, 1999
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    Recent research has demonstrated that Portable Computer users can save battery power by migrating tasks over wireless networks to server machines. Making this technique generally useful requires considerable automation. This paper describes a framework for automatically migrating tasks from a Portable Computer over a wireless network to a server and migrating the results back. The paper presents the framework's architecture, discusses key issues in creating the framework, and presents performance results that demonstrate that the framework is both useful and power-inexpensive.

  • saving Portable Computer battery power through remote process execution
    Mobile Computing and Communications Review, 1998
    Co-Authors: Alexey Rudenko, Gerald J Popek, Peter Reiher, Geoffrey H Kuenning
    Abstract:

    We describe a new approach to power saving and battery life extension on an untethered laptop through wireless remote processing of power-costly tasks. We ran a series of experiments comparing the power consumption of processes run locally with that of the same processes run remotely. We examined the trade-off between communication power expenditures and the power cost of local processing. This paper describes our methodology and results of our experiments. We suggest ways to further improve this approach, and outline a software design to support remote process execution.

Carsten Mehring - One of the best experts on this subject based on the ideXlab platform.

  • Towards keyboard independent touch typing in VR
    Proceedings of the ACM symposium on Virtual reality software and technology - VRST '05, 2005
    Co-Authors: Falko Kuester, Mark E. Phair, Michelle Chen, Carsten Mehring
    Abstract:

    A new hand- or finger-mounted data input device, called KITTY, is presented. KITTY is designed for keyboard independent touch typing and supports traditional touch-typing skills as a method for alphanumeric data input. This glove-type device provides an ultra-Portable solution for "quiet" data input into Portable Computer systems and full freedom of movement in mobile VR and AR environments. The KITTY design follows the concept of the column and row layout found on traditional keyboards, allowing users to draw from existing touch typing skills, easing the required training time. Copyright 2005 ACM.

  • KITTY: keyboard independent touch typing in VR
    IEEE Virtual Reality 2004, 2004
    Co-Authors: Carsten Mehring, Falko Kuester, K.d. Singh, Michelle Chen
    Abstract:

    A hand- and finger-mounted data input device is presented, using traditional touch-typing skills as method of alphanumeric data input to provide an ultraPortable solution for "quiet" data input into Portable Computer systems. The presented keyboard independent touch-typing device {KITTY) offers high data input rates and minimal training requirements for new users.