用于自修复协议栈的DiPS+软件架构

Sam Michiels, Lieven Desmet, W. Joosen, P. Verbaeten
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引用次数: 5

摘要

主动网络、自组织网络、普适计算、普适计算、网格计算和传感器网络等研究领域清楚地表明,计算机网络将变得更加复杂和异构。在许多情况下,网络的集中管理和控制远非微不足道,因为在这种高度动态的环境中,拓扑和连接的设备都在迅速变化,而负载情况可能会任意变化。节点中的软件架构需要支持灵活性。我们已经开发了一个为协议栈软件量身定制的架构,它允许定制内部资源管理,以便优雅地处理过载情况。我们展示了对模块化和架构约束的显式支持的投资得到了回报:本文详细阐述了一个案例研究,其中访问控制行为的动态适应导致了显著的性能改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The DiPS+ software architecture for self-healing protocol stacks
Research domains such as active networks, ad-hoc networks, ubiquitous computing, pervasive computing, grid computing, and sensor networks, clearly show that computer networks will become more complex and heterogeneous. In many cases, central management and control of the network are far from trivial since both the topology and the connected devices change rapidly in such highly dynamic environments, while load circumstances may vary arbitrarily. The software architecture in a node needs to support flexibility. We have developed an architecture tailored to protocol stack software that allows customizing internal resource management in order to handle overload conditions gracefully. We show that the investment in explicit support for modularity and architectural constraints pays off: the paper elaborates on a case study in which dynamic adaptation of access control behavior leads to significant performance improvements.
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