VANET中数据和能源路由的最大寿命优化协作

Ming Hu, Hanlin Chen, Jiejun Hu, Hui Yan, Ping Yu
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引用次数: 1

摘要

基于传统电网的路边单元在车辆专用网络中存在碳足迹大、部署成本高等问题。理想的绿色替代方案已成为车载自组织网络(VANETs)的重要问题。在本文中,我们提出了一个新的能量收集和合作框架,以最大限度地提高venet的生命周期。在该VANET场景中,RSU节点既可以从大自然中获取能量,也可以接受下汽车能量调度,以维持数据传输所需的能量,RSU节点可以通过能量合作将一部分获得的能量传递给相邻的RSU节点。每辆车可以通过两种方式接入RSU: 1)当车辆在RSU的传输范围内时直接交付;2)当车辆不在RSU的传输范围内时,采用多跳中继。通过对数据速率、传输功率和能量传输的分析,解决了能量和流量守恒定律下的最大网络生命周期问题。考虑到涉及能量约束和数据传输联接问题,优化了每个RUS节点在车辆出站数据链路上的能量管理及其向相邻RSU节点的能量传输。对于这种情况,在没有能量合作的情况下,我们表明每个RSU节点应该分配更多的功率给具有更多噪声和/或更多数据流的链路。此外,当存在能量合作时,我们的数值结果表明能量从能量较高的节点路由到能量较低的节点。仿真结果表明,VANET策略中的能量和数据路由协同可以有效地提高网络生命周期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maximum Lifetime Optimized Collaboration of Data and Energy Routing in VANET
The roadside units (RSUs) based on traditional grid has high carbon footprint and high deployment cost in vehicle dedicated network. An ideal green alternative has become an important issue in Vehicular Ad-Hoc Networks (VANETs). In this paper, we propose a novel framework of energy harvesting and cooperation to maximize the life cycle in VENETs. In this VANET scenario, the RSU node can harvest energy from the nature and also receive down steam vehicle energy dispatch to maintain the energy needed for data transmission, may transfers a portion of obtained energies by RSU nodes to the neighboring RSU nodes through energy cooperation. Each vehicle can access the RSU in two ways: 1) direct delivery when the vehicle is within the transmission range of the RSU; 2) multi-hop relay when the vehicle is not within the transmission range of the RSU. By analysing the data rate, transmission power and energy transmission, we solve the problem of maximum network life cycle in the conservation law of energy and traffic. We consider involving energy constraints and data transmission joint problem, we optimize each RUS nodes energy management over vehicular outgoing data links and its energy transfers to neighboring RSU nodes. For this case, with no energy cooperation, we show that each RSU node should allocate more power to links with more noise and/or more data flow. In addition, when there is energy cooperation, our numerical results indicate that the energy is routed from nodes with higher energy to nodes with lower energy. Simulation results show that energy and data routing cooperation in VANET strategy can effectively improve the network life cycle.
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