谷歌浏览器插件
订阅小程序
在清言上使用

2Nd Generation IMA: Extended Virtualization Capabilities for Optimized Architectures

2013 IEEE/AIAA 32nd Digital Avionics Systems Conference (DASC)(2013)

引用 5|浏览2
暂无评分
摘要
2nd generation of integrated modular architectures (IMA) should be more generic, reconfigurable and scalable to be adopted for different aircraft platforms. Ultimately this leads closer to the concept of a distributed embedded realtime computer, which can host different critical and non-critical functions using few generic components, while ensuring deterministic sharing of common computing and networking resources for time-, safety-, and mission-critical functions. With ARINC653 and deterministic networks, system architects can utilize time- and space-partitioning mechanisms which enable embedded virtualization and integration of mixed-criticality functions on one computing module, in the context of an IMA architecture.This paper proposes the utilization of additional synchronous, time-triggered Ethernet quality-ofservice (QoS) enhancements in IEEE802 Ethernet and ARINC664 networks to support both bandwidth time-partitioning and system-wide (or system-level) time-partitioning. Ethernet-based system architectures with time-driven communication capabilities enable tight control of jitter and strict determinism with far reaching consequences on embedded system virtualization, architecture design and optimization in avionics, transportation system and process automation. Extended embedded virtualization capabilities with time-partitioning of distributed embedded resources support design of new optimized generic integrated architectures, which are less complex to integrate, maintain, expand, reconfigure, certify, and modernize.
更多
查看译文
关键词
IEEE standards,avionics,computer architecture,embedded systems,jitter,local area networks,quality of service,virtualisation,2nd generation IMA,ARINC664 networks,Ethernet-based system architectures,IEEE802 Ethernet,IMA architecture,QoS enhancement,aircraft platforms,architecture design,bandwidth time-partitioning,computing module,critical functions,deterministic networks,distributed embedded real-time computer,distributed embedded resources,embedded system virtualization,generic components,integrated modular architectures,jitter control,mission-critical function,mixed-criticality functions,noncritical functions,optimized generic integrated architectures,safety-critical function,space-partitioning mechanism,synchronous-time-triggered Ethernet quality-of-service,system-level time-partitioning,system-wide time-partitioning,time-critical function,time-driven communication capabilities,virtualization capabilities
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要