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A rendezvous-based data collection algorithm with mobile sink in wireless sensor networks

机译:无线传感器网络中带有移动宿的基于集合点的数据收集算法

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The main objective of wireless sensor networks is collecting data from ambient and transmitting achieved data to sink node. Limited energy resource for sensor node has posed so many challenges to these networks. The main constraint on wireless sensor networks is energy consumption which directly affects network lifetime. Lots of methods are proposed to improve these two parameters among which mobile sink method has shown considerable effects comparing to other presented methods. Indeed, using such method, several challenges of static sink methods are addressed such as funneling effect (non uniform energy consumption in the nodes located in the proximity of the sink node) and hot spot. As a result energy consumption decreases significantly which in turn prolongs network lifetime. In this paper, some nodes called rendezvous nodes are utilized to collect data. Source nodes transmit their sensed data to rendezvous nodes and sink node use traveling salesman algorithm and meet only these points in order to collect data. The use of Rendezvous Points allow the sink to collect amount of data at energy cost of multi-hop data communication at a time in the absence of traveling a long distance and thus extremely reduces data collection delay. If the virtual infrastructure of rendezvous-based protocol is properly designed, one can achieve scalability and energy efficiency. Simulation results, which are obtained in ns-2 environment, confirm the effectiveness of our method from energy saving and prolonged network lifetime in comparison with other methods.
机译:无线传感器网络的主要目标是从周围环境收集数据,并将获得的数据传输到接收器节点。传感器节点有限的能源资源给这些网络带来了很多挑战。无线传感器网络的主要限制因素是能耗,它直接影响网络寿命。提出了许多方法来改善这两个参数,其中移动宿方法与其他提出的方法相比已显示出显着的效果。实际上,使用这样的方法,静态沉陷方法的一些挑战被解决,例如漏斗效应(位于沉陷节点附近的节点中的能量消耗不均匀)和热点。结果,能耗显着降低,进而延长了网络寿命。在本文中,一些被称为会合节点的节点被用来收集数据。源节点将其感测到的数据传输到会合节点,宿节点使用旅行推销员算法,并且仅满足这些点才能收集数据。集合点的使用使接收器可以在无长距离传输的情况下一次以多跳数据通信的能源成本收集数据量,因此极大地减少了数据收集延迟。如果适当地设计了基于集合点的协议的虚拟基础架构,则可以实现可伸缩性和能源效率。在ns-2环境中获得的仿真结果证明,与其他方法相比,该方法在节能和延长网络寿命方面是有效的。

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