The Experts below are selected from a list of 18 Experts worldwide ranked by ideXlab platform

Gorthi Prashant Bhanu - One of the best experts on this subject based on the ideXlab platform.

  • An MCU description methodology for Initialization Code generation software
    Proceedings of the International Conference on Parallel and Distributed Systems - ICPADS, 2007
    Co-Authors: Bai Yunfei, Siong Chng Eng, Gorthi Prashant Bhanu
    Abstract:

    Due to the widespread use of microcontroller unit (MCU) in application and education areas, there is a need for Initialization Code generation for MCUs to reduce developers' effort and to aid beginners' learning of MCU programming. A common realization for Initialization Code generation software is a graphical user interface (GUI) with all the available Initialization settings for user selection, and the Initialization Code can be generated based on the user's configuration. This has been achieved by several software using different implementations. This paper evaluates two current Initialization Code generation software to identify the existing problems and requirements. It then presents a methodology to describe MCU structure to support the software's Initialization Code generation functionality to achieve flexibility and effectiveness. Our approach observes low development cost, enables user contribution to define and update MCU structure, and provides suitable guide for user to avoid faulty Initialization settings.

Bai Yunfei - One of the best experts on this subject based on the ideXlab platform.

  • An MCU description methodology for Initialization Code generation software
    Proceedings of the International Conference on Parallel and Distributed Systems - ICPADS, 2007
    Co-Authors: Bai Yunfei, Siong Chng Eng, Gorthi Prashant Bhanu
    Abstract:

    Due to the widespread use of microcontroller unit (MCU) in application and education areas, there is a need for Initialization Code generation for MCUs to reduce developers' effort and to aid beginners' learning of MCU programming. A common realization for Initialization Code generation software is a graphical user interface (GUI) with all the available Initialization settings for user selection, and the Initialization Code can be generated based on the user's configuration. This has been achieved by several software using different implementations. This paper evaluates two current Initialization Code generation software to identify the existing problems and requirements. It then presents a methodology to describe MCU structure to support the software's Initialization Code generation functionality to achieve flexibility and effectiveness. Our approach observes low development cost, enables user contribution to define and update MCU structure, and provides suitable guide for user to avoid faulty Initialization settings.

Siong Chng Eng - One of the best experts on this subject based on the ideXlab platform.

  • An MCU description methodology for Initialization Code generation software
    Proceedings of the International Conference on Parallel and Distributed Systems - ICPADS, 2007
    Co-Authors: Bai Yunfei, Siong Chng Eng, Gorthi Prashant Bhanu
    Abstract:

    Due to the widespread use of microcontroller unit (MCU) in application and education areas, there is a need for Initialization Code generation for MCUs to reduce developers' effort and to aid beginners' learning of MCU programming. A common realization for Initialization Code generation software is a graphical user interface (GUI) with all the available Initialization settings for user selection, and the Initialization Code can be generated based on the user's configuration. This has been achieved by several software using different implementations. This paper evaluates two current Initialization Code generation software to identify the existing problems and requirements. It then presents a methodology to describe MCU structure to support the software's Initialization Code generation functionality to achieve flexibility and effectiveness. Our approach observes low development cost, enables user contribution to define and update MCU structure, and provides suitable guide for user to avoid faulty Initialization settings.

R C Vieira - One of the best experts on this subject based on the ideXlab platform.

  • heuristic optimization for consistent Initialization of daes
    Computers & Chemical Engineering, 2000
    Co-Authors: Evaristo C Biscaia, R C Vieira
    Abstract:

    Abstract The optimization approach seems promising for the consistent Initialization of DAEs for it can be applied to the resolution of over-determined or ill-conditioned algebraic consistency systems. Given the DAE system and all the additional constraints (feasible or not) that the user may impose, it must be found a set of initial conditions as close as possible to a consistent one. In other words, the deviation from the equations and constraints must be minimized in some norm. The choice of the optimization method is crucial for the successful implementation of the Code. Derivative-based optimization methods and stochastic optimization methods are quite different techniques, with different drawbacks and potentialities. When combined, these strategies generally lead to very efficient search and optimization tools. There has been a growing interest in heuristic optimization methods since the emergence of massively parallel computers. However, the impact of such techniques on the dynamic simulation of chemical engineering systems — particularly in the Initialization problem — has not been sufficiently studied. In several classes of important problems traditional optimization techniques may fail, due to either high computational cost or inherent limitations of gradient-type methods. A preliminary DAE Initialization Code using the optimization approach and a heuristic optimization algorithm, under development at PEQ/COPPE/UFRJ, is presented in this work. The Code has been tested in some chemical engineering applications. Simple models frequently adopted in the DAE literature were used to provide a kind of benchmark for the Initialization problem.

David Smith - One of the best experts on this subject based on the ideXlab platform.

  • PowerQUICC ™ II Pro (MPC83xx) PCI Agent Initialization by:
    2013
    Co-Authors: David Smith
    Abstract:

    operates as a peripheral component interconnect (PCI) agent device that enables system add-in functionality as a PCI card. The operating software for these processors can reside within local memory or in PCI memory space, though local memory is preferred from a system performance standpoint. The Initialization Code can reside in a locally-attached flash memory device that performs enough system Initialization to load the software and then jump to the operational software. However, to simplify system management, it is preferable to initialize and load the PowerQUICC II pro device from the PCI host, eliminating the need for the flash memory device and providing a centralized means to manage the Initialization Code. This application note describes the steps required to initialize an MPC83xx device operating as a PCI agent. It compare