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首页> 外文期刊>Sensors Journal, IEEE >Effective Lifetime-Aware Routing in Wireless Sensor Networks
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Effective Lifetime-Aware Routing in Wireless Sensor Networks

机译:无线传感器网络中有效的生命周期路由

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摘要

Lifetime-aware routing and desired sensing spatial coverage (SSC) are two main challenges ahead of an ad-hoc, sensor-based, battery operated monitoring system known as wireless sensor network (WSN). Depending on the application, a necessary SSC level is essential to comply with the needed surveillance quality. On the other hand, network lifetime is of a major concern due to limited energy available to each sensor node. Formerly proposed lifetime-aware routing algorithms have usually defined lifetime as the duration before the first node runs out of energy. This criterion is not consistent with real-world WSN, where a number of sensors are likely to “die” due to hardware failures, natural impacts, etc. Initially, we propose a method that determines the network resource specifications, i.e., the number of available nodes and their sensing range, according to the required SSC and the necessary confidence level. Later on, a novel lifetime criterion which considers the SSC as the WSN effective operation criterion is introduced. Afterward, the new criterion is embedded into the flow augmentation algorithm and the normalized network lifetime is calculated for several scenarios using the solutions of the corresponding linear programming equations. Simulation results show significant improvement achieved in the lifetime. It is also shown that this new method is considerably more robust to the routing algorithm parameters compared to the performance achieved by the published Flow Augmentation algorithm.
机译:生命周期感知的路由和所需的感知空间覆盖(SSC)是基于无线传感器网络(WSN)的基于传感器的临时电池操作监控系统面临的两个主要挑战。根据不同的应用,必要的SSC级别对于满足所需的监视质量至关重要。另一方面,由于每个传感器节点可用的能量有限,因此网络寿命是一个主要问题。以前提出的生命周期感知路由算法通常将生命周期定义为第一个节点耗尽能量之前的持续时间。此标准与实际的WSN不一致,在WSN中,由于硬件故障,自然影响等原因,许多传感器可能“死亡”。最初,我们提出一种确定网络资源规格的方法,即根据所需的SSC和必要的置信度,确定可用节点及其感应范围。随后,介绍了一种新的寿命准则,该准则将SSC视为WSN有效操作准则。然后,将新准则嵌入到流量增加算法中,并使用相应的线性规划方程的解来针对几种情况计算归一化网络寿命。仿真结果表明,使用寿命得到了显着改善。还表明,与已发布的Flow Augmentation算法实现的性能相比,该新方法对路由算法参数的鲁棒性更高。

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