Throughput capacity of ALOHA MANETs

Yin Chen, Yulong Shen, Xiaohong Jiang, Jie Li
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引用次数: 12

Abstract

One major obstacle stunting the development and application of mobile ad hoc networks (MANETs) is the lack of a thorough understanding on the throughput capacity of these networks. Preliminary works regarding the exact capacity study of MANETs mainly focus on cell-partitioned networks, an oversimplified network model for practical MANETs. This paper studies the exact throughput capacity under a more realistic and practical network model for MANETs, where network nodes randomly move in a continuous unit square without cell-partition and a slotted ALOHA protocol is adopted for medium access control. For the considered ALOHA MANETs (A-MANETs), we first determine its exact throughput capacity based on the successful transmission probability (STP) and also derive the expected end-to-end delay for a capacity achieving routing algorithm. We then develop efficient closed-form approximations to both the STP and the exact throughput capacity in the concerned A-MANET under a popular local transmission scheme, based on which the corresponding capacity optimization issue is explored. Finally, simulation and numerical results are provided to validate the efficiency of our capacity model and to illustrate our theoretical findings.
ALOHA MANETs的吞吐量
阻碍移动自组织网络(manet)发展和应用的一个主要障碍是对这些网络的吞吐量缺乏全面的了解。关于manet精确容量研究的初步工作主要集中在蜂窝划分网络上,这是一种过于简化的实际manet网络模型。本文研究了一种更现实、更实用的网络模型——网络节点在连续单元方中随机移动,不进行小区划分,采用开槽ALOHA协议进行介质访问控制——下的精确吞吐量。对于所考虑的ALOHA MANETs (a -MANETs),我们首先根据成功传输概率(STP)确定其确切的吞吐量,并推导出容量实现路由算法的预期端到端延迟。然后,我们在一种流行的本地传输方案下,对相关a - manet的STP和确切吞吐量进行了有效的封闭近似,并在此基础上探讨了相应的容量优化问题。最后,给出了仿真和数值结果,验证了容量模型的有效性,并说明了我们的理论发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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