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An Infrastructure for Flexible Runtime Reconfigurable Multi-microcontroller Systems

机译:灵活的运行时可重新配置的多微控制器系统的基础架构

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Embedded systems in robotics or mechatronics need flexibility since they are working in dynamic environments. We consider an embedded modular multi-microcontroller system. Each module includes a microcontroller and special purpose hardware like a motor driver. Usually a change of the embedded software necessitates a direct access to all the devices (microcontrollers) to reload the code.rnTo overcome this disadvantage we introduce an infrastructure for flexible runtime reconfiguration of microcontroller modules within a system. The infrastructure enables the system to be coarse-grain reconfigurable on module level from one single point of access.rnBy using our infrastructure the system can remain operational during reconfiguration except the modules that actually get reconfigured. The infrastructure can cope with hardware changes during runtime like disconnection and reconnection of system parts.
机译:机器人或机电一体化的嵌入式系统需要在动态环境中工作,因此需要灵活性。我们考虑一个嵌入式模块化多微控制器系统。每个模块都包含一个微控制器和专用硬件,例如电机驱动器。通常,更改嵌入式软件需要直接访问所有设备(微控制器)以重新加载代码。为克服此缺点,我们引入了用于灵活地重新配置系统中微控制器模块的基础架构。基础架构使系统可以从一个单一的访问点在模块级别上进行粗粒度的重新配置。通过使用我们的基础架构,系统可以在重新配置期间保持可操作状态,而实际需要重新配置的模块除外。基础结构可以在运行时应对硬件更改,例如断开和重新连接系统部件。

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