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Energy-Efficient Dual-Hop Internet of Things Communications Network With Delay-Outage Constraints

机译:节能双跳的事物通信网络与延迟中断约束

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This article considers a dual-hop Internet of Things communications network where sensor nodes transmit data to a gateway either directly or via other nodes using dual-hop communications. Each node employs separate transmission buffers to store its own sensing data and data received from other nodes. End-to-end delay quality-of-service constraints in terms of the maximum acceptable delay-outage probabilities are imposed. We investigate energy-efficient adaptive resource allocation problems (i.e., joint link scheduling, rate, and power allocation) to support minimum data rates of the nodes. A novel approach is proposed exploiting asymptotic delay analysis to first determine the achieved delay exponents of the queue length tail distributions to satisfy the delay-outage constraints. Next, the relation between the delay exponents and resource allocation variables are derived. Last, the solutions to the resulting constrained optimization problems are obtained using the Lagrangian approach and convex optimization. Illustrative examples demonstrate the effects of the rate requirements and delay constraint stringency on the power consumption and routing configuration.
机译:本文考虑了一个双跳的通信网络,其中传感器节点直接或通过使用双跳通信通过其他节点将数据发送到网关的数据。每个节点采用单独的传输缓冲区来存储自己的感测数据和从其他节点接收的数据。施加了最终可接受的延迟中断概率的端到端延迟延迟的服务质量约束。我们调查节能的自适应资源分配问题(即,联合链路调度,速率和功率分配)来支持节点的最小数据速率。提出了一种新的方法,利用渐近延迟分析来首先确定队列长度分布的延迟指数,以满足延迟中断约束。接下来,派生延迟指令与资源分配变量之间的关系。最后,使用拉格朗日方法和凸优化来获得所产生的受限优化问题的解决方案。说明性示例展示了速率要求和延迟约束严格对功耗和路由配置的影响。

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