重新定义fpga在下一代航空电子系统中的作用(仅摘要)

V. Viswanathan, R. B. Atitallah, J. Dekeyser, Benjamin Nakache, M. Nakache
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引用次数: 2

摘要

嵌入式可重构计算正在成为航空电子应用系统设计者的一种新范式。事实上,为了提高系统性能,fpga可以用于不仅仅是计算目的。FPGA mezz卡(FMC) I/O标准的引入,为FPGA作为通信平台提供了新的用途。考虑到fpga和fmc提供的功能,例如运行时重构和模块化,我们重新定义了这些设备的角色,将其用作通用的通信和以计算为中心的平台。为航空电子应用设计了一种新的模块化、运行时可重构、基于知识产权(IP)的通信中心平台。这意味着,当航空电子系统的通信需求发生变化时,必要的通信协议被安装并按需执行,而不会干扰时间关键型航空电子系统的正常运行。通过使用计算密集型应用程序和几种航空电子I/O总线标准设计的实际工业用例,说明了我们平台的效率和性能。在许多情况下,重新配置延迟可以完全隐藏。而在某些其他情况下,可以通过减少资源利用率来证明重新配置的开销是合理的。
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Redefining the role of FPGAs in the next generation avionic systems (abstract only)
Embedded reconfigurable computing is becoming a new paradigm for system designers in avionic applications. In fact, FPGAs can be used for more than just computational purpose in order to improve the system performance. The introduction of FPGA Mezzanine Card (FMC) I/O standard has given a new purpose for FPGAs to be used as a communication platform. Taking into account the features offered by FPGAs and FMCs, such as runtime reconfiguration and modularity, we have redefined the role of these devices to be used as a generic communication and computation-centric platform. A new modular, runtime reconfigurable, Intellectual Property (IP)-based communication-centric platform for avionic applications has been designed. This means that, when the communication requirement of an avionic system changes, the necessary communication protocol is installed and executed on demand, without disturbing the normal operation of a time-critical avionic system. The efficiency and the performances of our platform are illustrated through a real industrial use-case designed using a computationally intensive application and several avionic I/O bus standards. The reconfiguration latency can be hidden totally in many cases. While in certain others, the overhead of reconfiguration can be justified by the reduction in the resource utilization.
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