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Self-optimized autonomous routing protocol for wireless sensor networks with cross layer architecture

机译:具有跨层架构的无线传感器网络的自优化自主路由协议

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Presently, the field of wireless sensor networks (WSNs) is an important and challenging research area. Advancements in sensor networks enable a wide range of environmental monitoring and object tracking applications. Moreover, multihop routing in WSN is affected by new nodes constantly entering or leaving the network. Therefore, nature based self-optimized and independent mechanism is required to tackle problems arise in WSN. The ant inspired routing has shown an excellent performance for WSNs. In this paper, the model of self-optimized autonomous routing algorithm BIOSARP with cross layer architecture for WSN and its results are presented. Certain parameters like energy level, delay and velocity are considered while making decisions. Energy level and velocity metrics are trade in from physical layer to network layer while discovering an optimal route and also in initialization process. These robust decisions will come up with the optimized route for WSN.
机译:当前,无线传感器网络(WSN)领域是一个重要且具有挑战性的研究领域。传感器网络的进步使各种环境监测和物体跟踪应用成为可能。而且,WSN中的多跳路由受到不断进入或离开网络的新节点的影响。因此,需要基于自然的自我优化和独立机制来解决WSN中出现的问题。蚂蚁启发式路由对WSN表现出出色的性能。本文提出了一种具有跨层结构的WSN自优化自主路由算法BIOSARP模型,并给出了结果。决策时会考虑某些参数,例如能量水平,延迟和速度。能量级别和速度度量从物理层到网络层进行权衡,同时发现一条最佳路线以及初始化过程。这些可靠的决定将提出针对WSN的最佳路由。

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