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Polytopol Computing for Multi-Core and Distributed Systems

机译:用于多核和分布式系统的Polytopol计算

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Multi-core computing provides new challenges to software engineering. The paper addresses such issues in the general setting of polytopol computing, that takes multi-core problems in such widely differing areas as ambient intelligence sensor networks and cloud computing into account. It argues that the essence lies in a suitable allocation of free moving tasks. Where hardware is ubiquitous and pervasive, the network is virtualized into a connection of software snippets judiciously injected to such hardware that a system function looks as one again. The concept of polytopol computing provides a further formalization in terms of the partitioning of labor between collector and sensor nodes. Collectors provide functions such as a knowledge integrator, awareness collector, situation displayer/reporter, communicator of clues and an inquiry-interface provider. Sensors provide functions such as anomaly detection (only communicating singularities, not continuous observation), they are generally powered or self-powered, amorphous (not on a grid) with generation-and-attrition, field re-programmable, and sensor plug-and-play-able. Together the collector and the sensor are part of the skeleton injector mechanism, added to every node, and give the network the ability to organize itself into some of many topologies. Finally we will discuss a number of applications and indicate how a multi-core architecture supports the security aspects of the skeleton injector.
机译:多核计算给软件工程带来了新的挑战。该白皮书在多拓扑计算的一般设置中解决了此类问题,该问题考虑了环境智能传感器网络和云计算等广泛不同领域中的多核问题。它认为本质在于自由移动任务的适当分配。在硬件无处不在且无处不在的情况下,网络被虚拟化为明智地注入到这样的硬件中的软件片段的连接,以至于系统功能看起来像硬件一样。 polytopol计算的概念在收集器节点和传感器节点之间的劳力分配方面提供了进一步的形式化。收集器提供的功能包括知识集成器,意识收集器,情况显示/报告器,线索交流器和查询界面提供程序。传感器提供诸如异常检测(仅传达奇异之处,而不是连续观察)之类的功能,它们通常是供电的或自供电的,无定形的(不在电网上),具有生与耗,现场可重编程以及传感器即插即用-可播放。收集器和传感器一起成为骨架注入器机制的一部分,添加到每个节点,并使网络能够将自身组织成许多拓扑。最后,我们将讨论许多应用程序,并指出多核体系结构如何支持骨架注射器的安全性方面。

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