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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >Home-Based Zero-Knowledge Multi-Copy Routing in Mobile Social Networks
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Home-Based Zero-Knowledge Multi-Copy Routing in Mobile Social Networks

机译:移动社交网络中基于家庭的零知识多副本路由

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摘要

A mobile social network (MSN) is a special kind of delay tolerant network (DTN) composed of mobile nodes that move around and share information with each other through their carried short-distance wireless communication devices. A main characteristic of MSNs is that mobile nodes in the networks generally visit some locations (namely, community homes) frequently, while visiting other locations less frequently. In this paper, we propose a novel zero-knowledge multi-copy routing algorithm, (HS), for homogeneous MSNs, in which all mobile nodes share all community homes. HS is a distributed and localized algorithm. It mainly lets community homes spread messages with a higher priority. Theoretical analysis shows that HS can spread a given number of message copies in an optimal way when the inter-meeting time between any two nodes and between a node and a community home follows independent and identical exponential distributions, respectively. We also extend HS to the heterogeneous MSNs, where mobile nodes have different community homes. In addition, we calculate the expected delivery delay of HS, and conduct extensive simulations. Results show that community homes are important factors in message spreading. By using homes to spread messages faster, HS achieves a better performance than existing zero-knowledge MSN routing algorithms, including Epidemic (with a given number of copies), and Spray&Wait.
机译:移动社交网络(MSN)是一种特殊的延迟容忍网络(DTN),它由移动节点组成,这些节点通过移动的短距离无线通信设备来回移动并彼此共享信息。 MSN的主要特征是,网络中的移动节点通常会经常访问某些位置(即社区住宅),而访问其他位置的频率则较低。在本文中,我们为同类MSN提出了一种新颖的零知识多副本路由算法(HS),其中所有移动节点共享所有社区房屋。 HS是一种分布式本地化算法。它主要是让社区之家以更高的优先级传播消息。理论分析表明,当任意两个节点之间以及节点与社区家之间的会面时间分别遵循独立且相同的指数分布时,HS可以最佳方式传播给定数量的消息副本。我们还将HS扩展到异构MSN,其中移动节点具有不同的社区住宅。此外,我们计算了HS的预期交付延迟,并进行了广泛的仿真。结果表明,社区住宅是信息传播的重要因素。通过使用家庭更快地传播消息,与现有的零知识MSN路由算法(包括Epidemic(具有给定数量的副本)和Spray&Wait)相比,HS可获得更好的性能。

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