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Work-In-Progress: Cyber-Physical Systems and Dynamic Partial Reconfiguration Scalability: opportunities and challenges

机译:工作进展:网络物理系统和动态部分重新配置可扩展性:机会和挑战

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摘要

In the domain of Cyber-Physical Systems, the FPGA Dynamic Partial Reconfiguration (DPR) feature has been proved to be efficient to adapt the system hardware configuration to environment changes, also in the case of hard real-time constraints. Often, in this context, a single task can request multiple DPR to modify the platform configuration.However, also if in the hard real-time literature several works exploit the DPR process, to the best of our knowledge, no one deals with its scalability (i.e., the efficient management of multiple DPR requests).Hence, in this work, focusing on hard real-time systems, we conduct both a theoretical and practical investigation about the DPR scalability, discussing the obtained outcomes and the objectives to be achieved in the near future.
机译:在网络 - 物理系统的领域中,已经证明了FPGA动态部分重新配置(DPR)特征是为了使系统硬件配置调整到环境变化,以及硬实时约束的情况。通常,在这种情况下,单个任务可以请求多个DPR来修改平台配置。然而,如果在硬实时文献中的几个作品中利用DPR过程中,据我们所知,没有人涉及其可扩展性(即,多次DPR请求的有效管理)。在这项工作中,专注于硬实时系统,我们对DPR可扩展性进行了理论和实践调查,讨论了所获得的结果和待实现的目标不久的将来。

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