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Prioritizing Information for Achieving QoS Control in WSN

机译:在WSN中优先处理信息以实现QoS控制

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Achieving QoS objective in Wireless Sensor Network (WSN) that deals with multimedia information is of paramount importance in the WSN research community. From the application point of view, meeting application specific QoS constraints is equally important as designing energy efficient embedded circuitry for WSN nodes. Among various WSN communication protocol stack, the transport layer functionality has gain fundamental fame lately in addressing the application specific QoS objectives by supporting Source prioritization besides the reliability and congestion control aspects of the design that helps in gaining high throughput with minimum end-to-end packet latency. This paper present the design of a new transport layer protocol that prioritizes sensed information based on its nature while simultaneously supporting the data reliability and congestion control features. The proposed transport protocol is tested in three possible scenarios i.e. with priority, without and distributed priority features. Simulation results reveal that by prioritizing the Source information and prioritized intermediate storage and forwarding reduces the End-to-End (E-2-E) latency of Source packets having ≪100 msec except for Source A where it is slightly higher than 400msec compared to non prioritized case where the E-2-E Source packet latency accounts to ≫400msec which is quite significant. Simulation test has been performed for distributed prioritized intermediate storage and forwarding among which the network distribution with node K as prioritized intermediate storage node (DIST-K) outperformed all of the mentioned cases by having 100% achieved Source priority,0% packet drop rate and 0.28Mbps achieved bit rate.
机译:在无线传感器网络(WSN)中处理多媒体信息的QoS目标在WSN研究社区中至关重要。从应用程序的角度来看,满足特定于应用程序的QoS约束与为WSN节点设计节能嵌入式电路同等重要。在各种WSN通信协议堆栈中,传输层功能最近通过支持源优先级来满足特定于应用程序的QoS目标,从而获得了基本的声誉,此外,设计的可靠性和拥塞控制方面有助于以最小的端到端获得高吞吐量。数据包延迟。本文提出了一种新的传输层协议的设计,该协议根据其性质对感知的信息进行优先级排序,同时支持数据的可靠性和拥塞控制功能。所提出的传输协议在三种可能的情况下进行了测试,即具有优先级,无优先级和分布式优先级的功能。仿真结果表明,通过对源信息进行优先级划分以及对中间存储和转发进行优先级划分,可以降低具有≪100毫秒的源数据包的端到端(E-2-E)延迟,但源A的延迟略高于400毫秒。 E-2-E源数据包延迟达到m400毫秒的非优先案例,这一点非常重要。已经针对分布式优先级中间存储和转发执行了仿真测试,其中以节点K作为优先级中间存储节点(DIST-K)的网络分布在实现所有情况下均达到了100%的源优先级,0%的丢包率和达到0.28Mbps的比特率。

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