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Cross-Layer Design for Reducing the Energy Consumption based on Mobility Parameter in DSR for Mobile Ad-Hoc Network

机译:移动Ad-Hoc网络中基于移动性参数的DSR降低能耗的跨层设计

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Problem statement: The main idea is to design an energy efficient algorithm for reducing the amount of overhearing based on RSS value in a Mobile Ad-hoc Network (MANET). Approach: A cross layer framework is designed by combining the physical, MAC and network layer. RSS value is taken from the physical layer and it is used for finding the Mobility Parameter (MP). MP value determines the level of overhearing and rebroadcast probability. The energy conservation is achieved by integrating the 802.11 PSM with DSR. In 802.11 PSM, all the nodes are in low power sleep state, but the disadvantage here is unconditional overhearing. So, a conditional overhearing mechanism is proposed based on mobility parameter to reduce the energy consumption. This mechanism reduces energy consumption but at the same time, the node mobility results in more stale routes in route cache of DSR over a period of time. This occurs due to the lack of route cache updation. In the proposed design, RSS value determines whether to select the link or not prior to the route discovery process. Results: Simulation results are compared for Packet Delivery Ratio (PDR) and energy consumption. MP based conditional overhearing shows a 3.2% PDR improvement. It achieves a 20% power saving, if the pause time crosses 300 sec. For the packet injection rate of 2 packets/sec, under no mobility condition, it utilizes 50 joules lesser energy consumption compared to Random Cast. Conclusion: The NS-2 simulation results reveal that the proposed work is energy efficient by reducing the amount of overhearing and also it eliminates the stale routes compared to the classical methods.
机译:问题陈述:主要思想是根据移动自组织网络(MANET)中的RSS值设计一种节能算法,以减少偷听行为。方法:通过结合物理层,MAC和网络层来设计跨层框架。 RSS值取自物理层,用于查找移动性参数(MP)。 MP值确定了监听和重播概率的级别。通过将802.11 PSM与DSR集成在一起可以实现节能。在802.11 PSM中,所有节点都处于低功耗睡眠状态,但是这里的缺点是无条件的监听。因此,提出了一种基于迁移率参数的条件监听机制,以降低能耗。这种机制降低了能耗,但同时,节点移动性会在一段时间内在DSR的路由缓存中导致更陈旧的路由。发生这种情况是由于缺少路由缓存更新。在建议的设计中,RSS值确定是否在路由发现过程之前选择链接。结果:比较仿真结果的数据包传输率(PDR)和能耗。基于MP的条件性监听显示PDR改善了3.2%。如果暂停时间超过300秒,则可以节省20%的电量。对于2个数据包/秒的数据包注入速率,在没有移动性的情况下,与Random Cast相比,它使用的能耗要少50焦耳。结论:NS-2仿真结果表明,与传统方法相比,拟议的工作通过减少偷听次数而实现了节能,并且消除了过时的路线。

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