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DQELR: An Adaptive Deep Q-Network-Based Energy- and Latency-Aware Routing Protocol Design for Underwater Acoustic Sensor Networks

机译:DQELR:基于自适应的深度Q网络的能量和延迟感知路由协议,用于水下声学传感器网络

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摘要

Underwater acoustic sensor networks (UASNs) have become a popular research topic, with research challenges focused on underwater communication techniques. By incorporating long end-to-end latency, high energy consumption and dynamic network topology in UASNs, many intelligent routing protocols have been proposed to solve the problem. However, shortcomings still exist, and comprehensive routing protocols are urgently needed. In this paper, we propose an adaptive Deep Q-Network-based energy- and latency-aware routing protocol (DQELR) to prolong network lifetimes in UASNs. In the DQELR, a Deep Q-Network algorithm with both off-policy and on-policy methods is adopted to make globally optimal routing decisions. Based on both the energy and depth states of nodes at different communication stages, nodes with the maximum Q-value can be selected as forwarders adaptively considering both energy and latency. A hybrid of the broadcast and unicast communication mechanisms is also designed to reduce network overhead. In addition, network topology changes can be addressed through an on-policy method that makes a new routing decision when the current route becomes corrupted. With less energy consumption and strict latency limitations, the DQELR can prolong network lifetimes in UASNs. Simulation results show that the DQELR can achieve a superior network lifetime with better latency and energy efficiency performances relative to other general schemes applied in UASNs.
机译:水声传感器网络(UASNs)已经成为一个热门的研究课题,与科研的挑战集中在水下通信技术。通过将长端至端的延迟,高耗能和动态的网络拓扑,UASNs,许多智能路由协议已经被提出来解决这个问题。但是,不足之处仍然存在,迫切需要全面的路由协议。在本文中,我们提出了一种基于自适应Q-网络的深能源和时延感知路由协议(DQELR)在UASNs延长网络寿命。在DQELR,既关政策和策略方法深Q-网络算法来使全局最优路由决策。基于在不同的通信阶段节点的能量和深度两种状态,具有最大Q值节点可以被选择作为代理自适应地考虑两者的能量和等待时间。的广播和单播通信机制的混合也被设计以减少网络开销。此外,网络拓扑结构的变化可以通过对政策的方法,使得在当前路径已损坏一个新的路由决策来解决。用更少的能源消耗和严格的等待时间限制,DQELR可以延长在UASNs网络的寿命。仿真结果表明,该DQELR可以实现具有更好的等待时间和能源效率的性能相对于其它一般方案上级网络的生命周期中施加UASNs。

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