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Two-Layer Hierarchy Optimization Model for Communication Protocol in Railway Wireless Monitoring Networks

机译:铁路无线监控网络中通信协议的两层层次优化模型

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The wireless monitoring system is always destroyed by the insufficient energy of the sensors in railway. Hence, how to optimize the communication protocol and extend the system lifetime is crucial to ensure the stability of system. However, the existing studies focused primarily on cluster-based or multihop protocols individually, which are ineffective in coping with the complex communication scenarios in the railway wireless monitoring system (RWMS). This study proposes a hybrid protocol which combines the cluster-based and multihop protocols (CMCP) to minimize and balance the energy consumption in different sections of the RWMS. In the first hierarchy, the total energy consumption is minimized by optimizing the cluster quantities in the cluster-based protocol and the number of hops and the corresponding hop distances in the multihop protocol. In the second hierarchy, the energy consumption is balanced through rotating the cluster head (CH) in the subnetworks and further optimizing the hops and the corresponding hop distances in the backbone network. On this basis, the system lifetime is maximized with the minimum and balance energy consumption among the sensors. Furthermore, the hybrid particle swarm optimization and genetic algorithm (PSO-GA) are adopted to optimize the energy consumption from the two-layer hierarchy. Finally, the effectiveness of the proposed CMCP is verified in the simulation. The performances of the proposed CMCP in system lifetime, residual energy, and the corresponding variance are all superior to the LEACH protocol widely applied in the previous research. The effective protocol proposed in this study can facilitate the application of the wireless monitoring network in the railway system and enhance safety operation of the railway.
机译:铁路传感器的能量不足总是会破坏无线监控系统。因此,如何优化通信协议并延长系统寿命对于确保系统的稳定性至关重要。但是,现有研究主要集中在基于集群的协议或多跳协议上,这在应对铁路无线监控系统(RWMS)中的复杂通信场景方面无效。这项研究提出了一种混合协议,该协议结合了基于集群的协议和多跳协议(CMCP),以最小化和平衡RWMS不同部分的能耗。在第一层次结构中,通过优化基于群集的协议中的群集数量以及多跳协议中的跃点数和相应的跃点距离,可以将总能耗降至最低。在第二层中,通过旋转子网中的簇头(CH)并进一步优化骨干网中的跃点和相应的跃点距离来平衡能耗。在此基础上,最大限度地延长了系统寿命,并在传感器之间实现了最小的能耗平衡。此外,采用混合粒子群优化和遗传算法(PSO-GA)从两层层次结构优化能耗。最后,在仿真中验证了所提出的CMCP的有效性。所提出的CMCP在系统寿命,剩余能量和相应方差方面的性能均优于先前研究中广泛使用的LEACH协议。本研究提出的有效协议可以促进无线监控网络在铁路系统中的应用,并增强铁路的安全运行。

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