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首页> 外文期刊>IEEE/ACM Transactions on Networking >SLICE: Enabling Greedy Routing in High Genus 3-D WSNs With General Topologies
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SLICE: Enabling Greedy Routing in High Genus 3-D WSNs With General Topologies

机译:SLICE:在具有常规拓扑的高属3-D WSN中启用贪婪路由

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摘要

In this paper, we propose a highly efficient scheme, SLICE (a scalable and low stretch routing scheme), enabling greedy routing for wireless sensor networks (WSNs) deployed in complex-connected 3-D settings, whose topologies are often theoretically modeled as high genus 3-D WSNs. Compared to previous 3-D greedy embedding techniques, SLICE improves both the robustness and applicability. 1) It achieves a smaller distance distortion and a lower routing stretch with guaranteed delivery. While it follows the basic idea to embed the surface network to a planar topology to enable greedy routing, the embedding method proposed in SLICE is novel. We first slice the surface network to a genus-0 open surface with exactly one boundary. Then, to achieve a lower distance distortion, we purposely propose a variation of the Ricci flow algorithm, by which this open surface is flattened not to a planar annulus, but to a planar convex polygon, resulting in a lower routing stretch. 2) This is the first work, to the best of our knowledge, that enables greedy routing in high genus 3-D WSNs with general topologies. SLICE not only works for high genus 3-D surface WSNs, but also can be easily adapted to more general cases: high genus 3-D surface networks with holes, and high genus 3-D volume networks. For a high genus 3-D surface network with holes, SLICE embeds it to a planar convex polygon with circular holes, where our proposed greedy routing variation can be applied. For a high genus 3-D volume network, SLICE embeds the inner nodes to a height structure attached to the convex polygon, and a variation of greedy routing scheme with guaranteed delivery is proposed in this structure. The effectiveness of SLICE is validated by extensive simulations.
机译:在本文中,我们提出了一种高效的方案SLICE(一种可扩展的低拉伸路由方案),该方案可为部署在复杂连接的3-D设置中的无线传感器网络(WSN)实现贪婪路由,该拓扑在理论上通常建模为高属3-D WSN。与以前的3-D贪婪嵌入技术相比,SLICE提高了鲁棒性和适用性。 1)它可以实现较小的距离失真和较低的布线延伸,并保证了交付。尽管遵循基本思想将表面网络嵌入到平面拓扑中以实现贪心路由,但SLICE中提出的嵌入方法却是新颖的。我们首先将曲面网络切成具有一个边界的0类开放曲面。然后,为了实现较低的距离失真,我们有目的地提出了Ricci流算法的一种变体,该变体将该开放表面不平整为一个平面环形空间,而是平整为一个平面凸多边形,从而减小了路由延伸。 2)据我们所知,这是第一项工作,可以在具有一般拓扑的高属3-D WSN中实现贪婪路由。 SLICE不仅适用于高属3-D表面WSN,而且还可以轻松适用于更一般的情况:带孔的高属3-D表面网络和高属3-D体积网络。对于具有孔的高属3-D表面网络,SLICE将其嵌入到具有圆形孔的平面凸多边形中,可以在此应用我们提出的贪婪路由变化。对于高属的3-D体积网络,SLICE将内部节点嵌入到附着于凸多边形的高度结构上,并在此结构中提出了具有保证传递的贪婪路由方案的变形。 SLICE的有效性已通过广泛的仿真验证。

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