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Performance Evaluation of QoS by Combining Medium Access Control and Slow Start in MANETS

机译:MANETS中结合媒体访问控制和慢启动的QoS性能评估

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This paper evaluates the performance evaluation of interaction between Transport and the MAC layer protocols operating in a mobile adhoc network.? In Adhoc networks, certain QoS parameters like error rate, delay and packet loss are increased and certain parameters like throughput and delivery ratio are decreased in Transport layer is due to MAC problems and disconnection is also possible due to mobility or power failure. So, combine the mechanisms of these two layers improve the QoS drastically. We examine the effects of two different MAC protocols— IEEE 802.11and IEEE802.11e with Slow start mechanism of TCP.? Specifically, we access the impact of multiple wireless hops and node mobility on the throughput performance of TCP on each MAC protocol. Additionally the other Qos parameters of throughput, delay, Bandwidth delay product, delivery ratio and packet loss using slow start of TCP mechanism with two different MAC protocols is also investigated.? Results show that in all instances, the QoS parameters 15-20% improvement in throughput, 40-45% improvement in bandwidth-delay product, 10-15% improvement in delivery ratio in IEEE 802.11e than IEEE802.11 and packet loss is reduced drastically to 40-50% in IEEE802.11e where only 3-5%delay is higher in IEEE802.11e than IEEE802.11.
机译:本文评估了在移动自组织网络中传输与MAC层协议之间的交互性能评估。在Adhoc网络中,某些传输速率层中的QoS参数(如错误率,延迟和数据包丢失)增加,某些参数(如吞吐量和传输率)降低是由于MAC问题引起的,并且由于移动性或电源故障也可能导致断开连接。因此,结合这两层的机制可以大大提高QoS。我们研究了两种不同的MAC协议(具有TCP慢启动机制的IEEE 802.11和IEEE802.11e)的影响。具体来说,我们访问多个无线跃点和节点移动性对每个MAC协议上TCP吞吐量性能的影响。此外,还研究了使用两个不同的MAC协议的TCP机制的慢速启动的吞吐量,延迟,带宽延迟乘积,传递比率和数据包丢失的其他Qos参数。结果表明,在所有情况下,与802.11相比,QoS参数在吞吐率方面分别提高了15-20%,带宽延迟产品提高了40-45%,传输率提高了10-15%,并且丢包率降低了在IEEE802.11e中急剧上升到40-50%,其中在IEEE802.11e中只有3-5%的延迟比IEEE802.11高。

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