论文标题

倾斜耐故障的无僵硬路由在超出表面的控制器网络中

Toward Fault-Tolerant Deadlock-Free Routing in HyperSurface-Embedded Controller Networks

论文作者

Saeed, Taqwa, Soteriou, Vassos, Liaskos, Christos, Pitsillides, Andreas, Lestas, Marios

论文摘要

Hypersurfaces(HSFS)由结构上可重构的元信息组成,其电磁特性可以通过软件接口(使用嵌入式的小型化控制器网络)通过软件接口更改。通过在不规则的近曼哈顿几何形状相互连接的HSF控制器的情况下,我们提出了一个健壮的,确定性的耐受性(FT),无僵持和无卵路路由路由协议,其中故障包含在一组不连接的矩形矩形区域中,称为错误块。只要连接故障块之外的节点,提出的FT协议就可以支持无限数的故障节点。仿真结果表明,在各种故障节点分布方案下,提出的FT协议的功效。

HyperSurfaces (HSFs) consist of structurally reconfigurable metasurfaces whose electromagnetic properties can be changed via a software interface, using an embedded miniaturized network of controllers. With the HSF controllers, interconnected in an irregular, near-Manhattan geometry, we propose a robust, deterministic Fault-Tolerant (FT), deadlock- and livelock-free routing protocol where faults are contained in a set of disjointed rectangular regions called faulty blocks. The proposed FT protocol can support an unbounded number of faulty nodes as long as nodes outside the faulty blocks are connected. Simulation results show the efficacy of the proposed FT protocol under various faulty node distribution scenarios.

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