Henan Normal University, School of Computer and Information Engineering, Xinxiang, 453000, China.
Henan University of Science and Technology, Information Engineering College, Luoyang, 471000, China.
Sci Rep. 2017 Jul 18;7(1):5662. doi: 10.1038/s41598-017-05988-5.
The node buffer size has a large influence on the performance of Mobile Opportunistic Networks (MONs). This is mainly because each node should temporarily cache packets to deal with the intermittently connected links. In this paper, we study fundamental bounds on node buffer size below which the network system can not achieve the expected performance such as the transmission delay and packet delivery ratio. Given the condition that each link has the same probability p to be active in the next time slot when the link is inactive and q to be inactive when the link is active, there exists a critical value p from a percolation perspective. If p > p , the network is in the supercritical case, where we found that there is an achievable upper bound on the buffer size of nodes, independent of the inactive probability q. When p < p , the network is in the subcritical case, and there exists a closed-form solution for buffer occupation, which is independent of the size of the network.
节点缓冲区大小对移动机会网络 (MON) 的性能有很大影响。这主要是因为每个节点都应该临时缓存数据包,以处理间歇性连接的链路。在本文中,我们研究了节点缓冲区大小的基本下限,低于该下限,网络系统将无法实现预期的性能,如传输延迟和分组投递率。给定每个链路在下一个时隙处于活动状态的概率为 p(当链路处于非活动状态时),以及链路处于活动状态的概率为 q(当链路处于非活动状态时)的条件,从渗流的角度来看,存在一个临界值 p。如果 p > p ,网络处于超临界状态,我们发现节点的缓冲区大小存在一个可实现的上界,与非活动概率 q 无关。当 p < p 时,网络处于亚临界状态,并且存在缓冲区占用的闭式解,与网络的大小无关。