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Performance of Routing Protocols in Different WANET's Terrain Size with Reference of Channel Capacity

机译:相信频道容量的不同WANET地形大小的路由协议性能

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The radio channels undergo from a number of impurity such as shrinking, clatter, intrusion, shadowing and multi-path loss effects. Due to above mentioned reasons the wireless channel become unreliable and hence data packets may not be delivered as desired. Another issue related to routing protocols is position dependent. The congestion presents in a channel result increase the number of collisions and a successive waste of bandwidth. The nodes in networks have limited bandwidth and battery power; therefore need to have efficient use of channel capacity by Routing Protocol. This paper has been examined the performance of reactive AODV, proactive BELLMAN FORD and hybrid ZRP routing protocols in 250 m × 250 m, 500 m × 500 WANET's terrain size for 50, 100 and 150 nodes placed randomly with effect of channels capacity. The performance of protocols has been evaluated with regards of following metrics average jitter(s), average end-to-end delay(s) and average throughput (bits/s) using QualNet 5.0 network simulator. Results show the reactive protocol has given better results in comparison to proactive and hybrid protocols in case of jitter & end-to-end delay and irrespective to the number of channels & node density. However, average throughput decreases with respect of routing protocols irrespective to the number of channels and node density.
机译:无线电通道从许多杂质进行,例如收缩,咔嗒声,侵入,阴影和多路径损耗效果。由于上述原因,无线信道变得不可靠,因此可以根据需要提供数据分组。与路由协议相关的另一个问题是依赖于位置。在信道中的拥塞呈现出来增加碰撞的数量和连续浪费带宽。网络中的节点具有有限的带宽和电池功率;因此,需要通过路由协议有效地利用信道容量。本文已被检测在250米×250米,500米×500万维特的地形大小为50,100和150个节点中随机地放置了反应性AODV,主动Bellman Ford和Hybrid Zrp路由协议的性能。通过以下测量平均抖动,平均端到端延迟和平均吞吐量(位/ s)已经评估了协议的性能,使用质量5.0网络模拟器。结果表明,在抖动和端到端延迟的情况下,与主动和混合协议相比,反应性协议具有更好的结果,而且与通道和节点密度的数量无关。然而,与通道和节点密度的数量无关,相对于路由协议的平均吞吐量减小。

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