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Low-Cost and Accurate Intra-flowContention-Based Admission Control for IEEE 802.11 Ad Hoc Networks

机译:适用于IEEE 802.11 Ad Hoc网络的低成本,准确的基于流内竞争的准入控制

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In this paper, we propose a new admission control method for IEEE 802.11 ad hoc networks, called Low-cost and Accurate Admission control (LA AC). The proposed method has two variants: LA AC-Power and LAAC-CS. LAAC-Power estimates channel bandwidth availability through high power transmissions and LAAC-CS through passive monitoring of the channel. Due to the shared nature of the wireless medium, contention occurs among the nodes along a multi-hop path, which leads to intra-flow contention. LAAC accurately estimates the intra-flow contention. In addition, an analytical study demonstrates that LAAC achieves optimal results in terms of overhead and delay compared to the existing intra-flow contention-based admission control methods. LAAC also utilizes two criteria for accepting flows: one during the route request phase and the other during the route reply phase, which helps to reduce message overhead and avoid flooding route requests in hot spots. Simulation results show that LAAC-CS outperforms LAAC-Power in terms of packet delivery ratio, throughput, message overhead, and energy consumption.
机译:在本文中,我们提出了一种用于IEEE 802.11 ad hoc网络的新的准入控制方法,称为低成本和精确准入控制(LA AC)。所提出的方法有两个变体:LA AC-Power和LAAC-CS。 LAAC-Power通过大功率传输来估计信道带宽可用性,而LAAC-CS通过对信道进行被动监视来估计信道带宽可用性。由于无线介质的共享性质,争用沿着多跳路径发生在节点之间,这导致流内争用。 LAAC准确估计流内竞争。此外,一项分析研究表明,与现有的基于流内竞争的准入控制方法相比,LAAC在开销和延迟方面达到了最佳结果。 LAAC还利用两个标准来接受流:一个在路由请求阶段,另一个在路由应答阶段,这有助于减少消息开销并避免在热点中泛洪路由请求。仿真结果表明,LAAC-CS在数据包传递率,吞吐量,消息开销和能耗方面均优于LAAC-Power。

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