The Experts below are selected from a list of 87 Experts worldwide ranked by ideXlab platform

Hitoshi Mitake - One of the best experts on this subject based on the ideXlab platform.

  • composition kernel a multi core Processor Virtualization layer for highly functional embedded systems
    Pacific Rim International Symposium on Dependable Computing, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    In this paper, we propose a composition kernel where multiple OS kernels are running on top of a very thin hardware abstraction layer. A composition kernel can reduce the engineering cost of developing an embedded system by reusing existing OS kernels and application with minimum modification without assuming special hardware supports.

  • composition kernel a multi core Processor Virtualization layer for rich functional smart products
    Software Technologies for Embedded and Ubiquitous Systems, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    Future ambient intelligence environments will embed powerful multi-core Processors to compose various functionalities into a smaller number of hardware components. This makes the maintainability of intelligent environments better because it is not easy to manage massively distributed Processors. A composition kernel makes it possible to compose multiple functionalities on a multi-core Processor with the minimum modification of OS kernels and applications. A multi-core Processor is a good candidate to compose various software developed independently for dedicated Processors into one multi-core Processor to reduce both the hardware and development cost. In this paper, we present SPUMONE which is a composition kernel for developing future smart products.

Tatsuo Nakajima - One of the best experts on this subject based on the ideXlab platform.

  • composition kernel a multi core Processor Virtualization layer for highly functional embedded systems
    Pacific Rim International Symposium on Dependable Computing, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    In this paper, we propose a composition kernel where multiple OS kernels are running on top of a very thin hardware abstraction layer. A composition kernel can reduce the engineering cost of developing an embedded system by reusing existing OS kernels and application with minimum modification without assuming special hardware supports.

  • composition kernel a multi core Processor Virtualization layer for rich functional smart products
    Software Technologies for Embedded and Ubiquitous Systems, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    Future ambient intelligence environments will embed powerful multi-core Processors to compose various functionalities into a smaller number of hardware components. This makes the maintainability of intelligent environments better because it is not easy to manage massively distributed Processors. A composition kernel makes it possible to compose multiple functionalities on a multi-core Processor with the minimum modification of OS kernels and applications. A multi-core Processor is a good candidate to compose various software developed independently for dedicated Processors into one multi-core Processor to reduce both the hardware and development cost. In this paper, we present SPUMONE which is a composition kernel for developing future smart products.

Alexandre Courbot - One of the best experts on this subject based on the ideXlab platform.

  • composition kernel a multi core Processor Virtualization layer for highly functional embedded systems
    Pacific Rim International Symposium on Dependable Computing, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    In this paper, we propose a composition kernel where multiple OS kernels are running on top of a very thin hardware abstraction layer. A composition kernel can reduce the engineering cost of developing an embedded system by reusing existing OS kernels and application with minimum modification without assuming special hardware supports.

  • composition kernel a multi core Processor Virtualization layer for rich functional smart products
    Software Technologies for Embedded and Ubiquitous Systems, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    Future ambient intelligence environments will embed powerful multi-core Processors to compose various functionalities into a smaller number of hardware components. This makes the maintainability of intelligent environments better because it is not easy to manage massively distributed Processors. A composition kernel makes it possible to compose multiple functionalities on a multi-core Processor with the minimum modification of OS kernels and applications. A multi-core Processor is a good candidate to compose various software developed independently for dedicated Processors into one multi-core Processor to reduce both the hardware and development cost. In this paper, we present SPUMONE which is a composition kernel for developing future smart products.

Hiromasa Shimada - One of the best experts on this subject based on the ideXlab platform.

  • composition kernel a multi core Processor Virtualization layer for highly functional embedded systems
    Pacific Rim International Symposium on Dependable Computing, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    In this paper, we propose a composition kernel where multiple OS kernels are running on top of a very thin hardware abstraction layer. A composition kernel can reduce the engineering cost of developing an embedded system by reusing existing OS kernels and application with minimum modification without assuming special hardware supports.

  • composition kernel a multi core Processor Virtualization layer for rich functional smart products
    Software Technologies for Embedded and Ubiquitous Systems, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    Future ambient intelligence environments will embed powerful multi-core Processors to compose various functionalities into a smaller number of hardware components. This makes the maintainability of intelligent environments better because it is not easy to manage massively distributed Processors. A composition kernel makes it possible to compose multiple functionalities on a multi-core Processor with the minimum modification of OS kernels and applications. A multi-core Processor is a good candidate to compose various software developed independently for dedicated Processors into one multi-core Processor to reduce both the hardware and development cost. In this paper, we present SPUMONE which is a composition kernel for developing future smart products.

Yuki Kinebuchi - One of the best experts on this subject based on the ideXlab platform.

  • composition kernel a multi core Processor Virtualization layer for highly functional embedded systems
    Pacific Rim International Symposium on Dependable Computing, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    In this paper, we propose a composition kernel where multiple OS kernels are running on top of a very thin hardware abstraction layer. A composition kernel can reduce the engineering cost of developing an embedded system by reusing existing OS kernels and application with minimum modification without assuming special hardware supports.

  • composition kernel a multi core Processor Virtualization layer for rich functional smart products
    Software Technologies for Embedded and Ubiquitous Systems, 2010
    Co-Authors: Tatsuo Nakajima, Alexandre Courbot, Hiromasa Shimada, Yuki Kinebuchi, Tsunghan Lin, Hitoshi Mitake
    Abstract:

    Future ambient intelligence environments will embed powerful multi-core Processors to compose various functionalities into a smaller number of hardware components. This makes the maintainability of intelligent environments better because it is not easy to manage massively distributed Processors. A composition kernel makes it possible to compose multiple functionalities on a multi-core Processor with the minimum modification of OS kernels and applications. A multi-core Processor is a good candidate to compose various software developed independently for dedicated Processors into one multi-core Processor to reduce both the hardware and development cost. In this paper, we present SPUMONE which is a composition kernel for developing future smart products.