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BDCC: Backpressure routing and dynamic prioritization for congestion control in WMSNs

机译:BDCC:WMSN中的拥塞控制的背压路由和动态优先级

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Rapid technological advances and innovations in the area of autonomous systems push the researchers towards autonomous networked systems with emphasis on Wireless Multimedia Sensor Networks (WMSNs). In WMSN event-driven applications, it is critical to report the detected events in the area, resulting in sudden bursts of traffic due to occurrence of spatially-correlated or multiple events, causing loss of data. Also, nodes have very limited power due to hardware constraints. Packet losses and retransmissions resulting from congestion, cost precious energy and shorten the lifetime of sensor nodes. Till now, in WMSNs, Congestion control techniques are based on detection of congestion and recovery, but they cannot eliminate or prevent the occurrence of congestion. Collision is a symptom of congestion in the wireless channel and can result in a time-variant channel capacity. The method in the proposed algorithm is that the routing algorithms do not precalculate the routes and the next step is chosen dynamically. Decisions are made based on the congestion degree on neighbor nodes; each node sees its own queue backlog and neighbor's queue backlog and chooses its own degree and route based on the queue backlogs obtained from its neighbors. If there is two or more data with the same condition in the backpressure routing, we use service differentiation to prioritize packets. The results obtained from simulation test done by NS-2 simulator indicate that the proposed model is more innovative and presents better performance in compare with CCF and PCCP protocols.
机译:自主系统领域的快速技术进步和创新推动研究人员朝着着重于无线多媒体传感器网络(WMSN)的自主网络系统发展。在WMSN事件驱动的应用程序中,至关重要的是报告该区域中检测到的事件,由于空间相关或多个事件的发生而导致流量突然爆发,从而导致数据丢失。而且,由于硬件限制,节点的功率非常有限。由于拥塞而导致的数据包丢失和重新传输会浪费宝贵的能源,并缩短传感器节点的寿命。到目前为止,在WMSN中,拥塞控制技术是基于拥塞检测和恢复的,但是它们不能消除或防止拥塞的发生。冲突是无线信道拥塞的征兆,可能导致时变信道容量。所提出的算法中的方法是,路由算法不预先计算路线,而是动态选择下一步。根据邻居节点的拥塞程度做出决策;每个节点都会看到自己的队列待办事项和邻居的队列待办事项,并根据从邻居获得的队列待办事项来选择自己的度和路由。如果在背压路由中存在两个或两个以上条件相同的数据,我们将使用服务区分对数据包进行优先级排序。 NS-2仿真器进行的仿真测试结果表明,与CCF和PCCP协议相比,该模型更具创新性,并且具有更好的性能。

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