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A comparative analysis with validation of NSGA-III and MOEA/D in resolving the 3D indoor redeployment problem in DL-IoT

机译:通过NSGA-III和MOEA / D验证解决DL-IoT中3D室内重新部署问题的比较分析

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Compared to the two-dimensional one, the three-dimensional deployment in WSNs (wireless sensor networks) is more complex and real. In this paper, the problem of 3D positioning of nodes is studied while minimizing the number of nodes and the consumption of energy; and maximizing the coverage area and the localization rate. Indeed, the aim is to choose the ideal 3D positions in which new nodes are added while optimizing the mentioned objectives. The proposed approach is based on two evolutionary algorithms (MOEA/D and NSGA-III). The simulation model takes into account the implementation of a 433 MHz physical layer, a non-coordinated IEEE 802.15.4 CSMA/CA access method, and a reactive AODV based protocol for routing layer. The obtained results of the simulations with OMNeT++ are presented to prove the effectiveness of the proposed approach.
机译:与二维传感器相比,WSN(无线传感器网络)中的三维部署更加复杂和真实。本文在最小化节点数量和能量消耗的同时研究了节点的3D定位问题。使覆盖面积和定位率最大化。确实,目标是选择理想的3D位置,在其中添加新节点,同时优化上述目标。所提出的方法基于两种进化算法(MOEA / D和NSGA-III)。该仿真模型考虑了433 MHz物理层,非协调IEEE 802.15.4 CSMA / CA访问方法以及路由层基于AODV的协议的实现。提出了使用OMNeT ++进行仿真的结果,以证明该方法的有效性。

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