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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Traffic-aware Cooperative Binary Exponential Backoff Algorithm for Low Power and Lossy Networks
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Traffic-aware Cooperative Binary Exponential Backoff Algorithm for Low Power and Lossy Networks

机译:低功耗有损网络的流量感知协作二进制指数退避算法

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In Low Power and Lossy Networks (LLNs), not only the transmission qualities between a sender and a receiver, but also the channel contention and resource limitations at the receiver side should be considered. Providing efficient backoff mechanism against channel access collision problem in low-power, low-cost and low data rate networks has received a lot of attention from many researchers in the field. In such networks, the IEEE 802.15.4 Medium Access Control protocol CSMA/CA uses Binary Exponential Backoff (BEB) algorithm to address the channel collision problem. Though BEB reduces collision on the multiple channel access, there is still a high packet drop probability due to the buffer limitation on the receiving node. To overcome this problem, this paper focuses on the BEB issues for LLNs and targets on RPL, which is one of the most popular cooperative routing protocols in LLNs. In RPL, it is not uncommon to have a node with relatively higher traffic than neighbor nodes because children nodes have a tendency to select a good routing metric node as a parent. If traffic concentrates on a good quality parent, it becomes inevitable to get packet loss due to the buffer overflow and channel collision. In this paper we have proposed a Traffic-aware cooperative Binary Exponential Backoff (TBEB) algorithm for LLNs with RPL routing protocol. TBEB handles the multiple channel access issue in such a way that it avoids not only the collision at the sender (child node) side but also the buffer overflow at the receiver (parent node) side without degrading the channel utilization and the throughput efficiency. MATLAB simulator is used to evaluate the performance of the proposed scheme and then compare the result with BEB and Improved BEB. Simulation results show that the TBEB algorithm improves the throughput while minimizing packet discard counts and the channel collision through maintaining good channel utilization.
机译:在低功率有损网络(LLN)中,不仅应考虑发送方和接收方之间的传输质量,而且还应考虑接收方的信道争用和资源限制。在低功率,低成本和低数据速率的网络中提供有效的退避机制以应对信道访问冲突问题已受到该领域许多研究人员的关注。在这样的网络中,IEEE 802.15.4媒体访问控制协议CSMA / CA使用二进制指数退避(BEB)算法来解决信道冲突问题。尽管BEB减少了多信道访问上的冲突,但是由于接收节点上的缓冲区限制,仍然存在较高的丢包率。为了克服这个问题,本文重点介绍了LLN的BEB问题和RPL的目标,RPL是LLN中最流行的协作路由协议之一。在RPL中,具有比邻居节点更高的流量的节点并不少见,因为子节点倾向于选择一个好的路由度量节点作为父节点。如果流量集中在高质量的父级上,则由于缓冲区溢出和通道冲突而不可避免地会导致数据包丢失。在本文中,我们针对具有RPL路由协议的LLN提出了一种流量感知的协作二进制指数退避(TBEB)算法。 TBEB以这样的方式处理多通道访问问题:它不仅避免了发送方(子节点)一侧的冲突,而且还避免了接收方(父节点)一侧的缓冲区溢出,而不会降低通道利用率和吞吐量效率。 MATLAB仿真器用于评估所提出方案的性能,然后将结果与BEB和改进的BEB进行比较。仿真结果表明,TBEB算法在保持良好的信道利用率的同时,提高了吞吐量,同时最大程度地减少了丢包计数和信道冲突。

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