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Resource Management in Energy Harvesting Cooperative IoT Network under QoS Constraints

机译:QoS约束下的能量收集协同物联网网络资源管理

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摘要

Cooperative communication with RF energy harvesting relays has emerged as a promising technique to improve the reliability, coverage, longevity and capacity of future IoT networks. An efficient relay assignment with proper power allocation and splitting is required to satisfy the network’s QoS requirements. This work considers the resource management problem in decode and forward relay based cooperative IoT network. A realistic mathematical model is proposed for joint user admission, relay assignment, power allocation and splitting ratio selection problem. The optimization problem is a mixed integer non-linear problem (MINLP) whose objective is to maximize the overall sum rate (bps) while satisfying the practical network constraints. Further, an outer approximation algorithm is adopted which provides epsilon-optimal solution to the problem with guaranteed convergence and reasonable complexity. Simulations of the proposed solution are carried out for various network scenarios. The simulation results demonstrate that cooperative communication with diversity achieves a better admission of IoT users and increases not only their individual data rates but also the overall sum rate of an IoT network.
机译:与射频能量收集继电器的协作通信已成为一种有前途的技术,可以提高未来物联网网络的可靠性,覆盖范围,寿命和容量。需要有效的中继分配以及适当的功率分配和分配,才能满足网络的QoS要求。这项工作考虑了基于解码和转发中继的协作物联网网络中的资源管理问题。针对联合用户接纳,中继分配,功率分配和分流比选择问题,提出了一个现实的数学模型。优化问题是一个混合整数非线性问题(MINLP),其目的是在满足实际网络约束的同时最大化总和速率(bps)。此外,采用了外部逼近算法,该算法为问题提供了ε最优解,并确保了收敛性和合理的复杂性。针对各种网络场景对提出的解决方案进行了仿真。仿真结果表明,具有多样性的协作通信可以更好地吸引物联网用户,不仅可以提高他们的个人数据速率,还可以提高物联网网络的总和率。

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