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首页> 外文期刊>IEEE transactions on wireless communications >Uplink Resource Allocation in Energy Harvesting Cellular Network With H2H/M2M Coexistence
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Uplink Resource Allocation in Energy Harvesting Cellular Network With H2H/M2M Coexistence

机译:H2H / M2M共存能量收集蜂窝网络中的上行链路资源分配

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摘要

We consider uplink transmission using a single carrier frequency division multiple access (SC-FDMA) scheme in a cellular network with human-to-human (H2H) and machine-to-machine (M2M) communications. The M2M traffic is relayed through energy harvesting (EH) gateways. An optimization framework is developed to minimize the data dropping in the EH gateways caused by delay constraint violation of the M2M traffic while taking into account the rate requirements of the H2H communication, the data and energy causality constraints as well as the SC-FDMA transmission constraints. By introducing two transforms, the original problem is expressed in a linearly separable form in terms of its discrete and continuous variables with the convexified continuous part. Then, Generalized Benders Decomposition is applied to solve the problem by decomposing it into primal and master problems. Due to the NP-hardness of the optimal solution, a low-complexity method is proposed by combining the solution of the primal problem with a heuristic resource block allocation algorithm. Simulation results show that the proposed heuristic method performs better than two alternative heuristic methods when applied to small scale and large scale networks.
机译:我们考虑在蜂窝网络中的单个载波频分的多址(SC-FDMA)方案与人 - 人 - 人(H2H)和机器到机器(M2M)通信中的上行链路传输。 M2M流量通过能量收集(EH)网关中继。开发了一种优化框架,以最大限度地减少由延迟约束违反M2M流量引起的EH网关中丢弃的数据,同时考虑到H2H通信的速率要求,数据和能量因果关系约束以及SC-FDMA传输约束。通过引入两个变换,原始问题以线性可分离的形式以与凸的连续部分的离散和连续变量为线性可分离的形式表示。然后,应用广义弯曲器分解以通过将其分解成原始和主问题来解决问题。由于最佳解决方案的NP硬度,通过将原始问题的解决方案与启发式资源块分配算法组合来提出低复杂性方法。仿真结果表明,当应用于小规模和大规模网络时,所提出的启发式方法比两种替代启发式方法更好。

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