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ENCP: a new Energy-efficient Nonlinear Coverage Control Protocol in mobile sensor networks

机译:ENCP:移动传感器网络中的新节能非线性覆盖控制协议

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摘要

Abstract The node deployment in mobile sensor networks (MSNs) is mostly performed in a random method. However, a large number of redundant nodes may exist due to the randomness. As a result, severe data congestion may be caused and the quality of coverage (QoC) is undermined. In order to solve this QoC problem, we propose an Energy-efficient Nonlinear Coverage Control Protocol (ENCP). This protocol utilizes the normal distribution to calculate the minimal number of sensors which is required to guarantee coverage over the monitoring area. We also balance the node energy consumption and achieve the collaborative scheduling among all the sensor nodes. Meanwhile, when a certain QoC is guaranteed, we present the calculation model for the normal distribution of the sensing ranges and the proportional relationship between different parameters in the QoC function. Finally, simulation results show that the ENCP could not only improve the network QoC and network coverage rate but also effectively control the energy exhaustion at the nodes. Therefore, the network lifetime can be effectively prolonged.
机译:摘要移动传感器网络(MSN)中的节点部署主要以随机方法执行。然而,由于随机性可能存在大量冗余节点。结果,可能导致严重的数据拥塞,并且覆盖质量(QoC)被破坏。为了解决这个QoC问题,我们提出了一种节能的非线性覆盖控制协议(ENCP)。该协议利用正态分布来计算在监控区域上保证覆盖所需的最小传感器数量。我们还平衡节点能量消耗并在所有传感器节点之间实现协作调度。同时,当保证某个QoC时,我们介绍了感测范围的正态分布的计算模型和QoC函数中不同参数之间的比例关系。最后,仿真结果表明,ENCP不仅可以改善网络QoC和网络覆盖率,还可以有效地控制节点处的能量耗尽。因此,网络寿命可以有效地延长。

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