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Energy-Efficient Distributed Packet Scheduling Optimization Strategy in Cooperative Vehicle Infrastructure Systems

机译:协同车辆基础设施系统中的节能分布式包调度优化策略

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In the cooperative vehicle infrastructure system (CVIS), due to the limitation of deployment conditions, some roadside units (RSUs) need to use renewable energy to supply power and transmit the fused sensor network’s data to the backbone network through the passing vehicles. Aiming at the problem of energy consumption and time delay guarantee of multiple self-powered RSUs in the CVIS, a distributed packet scheduling optimization strategy for energy-delay trade-off in self-powered RSUs is proposed. The strategy can minimize the system energy consumption by constraining the packet queue length of the self-powered RSUs. A dynamic optimization model of distributed packet adaptive scheduling for multiple self-powered RSUs is established based on the Lyapunov optimization theory. Based on the knapsack algorithm, the analytical algorithm of the optimization model is proposed. The simulation results show that the packet scheduling strategy can reduce the energy consumption and delay of the system by satisfying the upper limit of the packet queue length.
机译:在合作车辆基础设施系统(CVIS),由于部署条件的限制,一些路边单元(受限制股份单位)需要使用可再生能源来供电,并通过过往车辆的融合传感器网络的数据传输到骨干网。在能源消耗和在CVIS,能源延迟权衡自供电的受限制股份单位分布式分组调度优化策略的多个自供电的路侧单元的时间延迟保证的问题针对建议。该策略可以通过约束自供电路侧单元的消息队列的长度最小化系统的能量消耗。多个自供电路侧单元分布式分组自适应调度的动态优化模型基础上建立的李雅普诺夫优化理论。基于背包算法,优化模型的分析算法。仿真结果表明,在分组调度策略可以通过满足分组队列长度的上限减少系统的能量消耗和延迟。

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