高能效异构低功耗物联网网络的能源交易与时间调度

Ngoc-Tan Nguyen, Diep N. Nguyen, D. Hoang, Nguyen Van Huynh, H. Nguyen, Q. Nguyen, E. Dutkiewicz
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引用次数: 3

摘要

本文提出了一个异构物联网无线反向散射通信网络参与者共同优化利润的经济模型。在考虑的网络中,假设电力信标和物联网设备(具有不同的通信类型和能量约束)分别属于不同的服务提供商,即能源服务提供商(ESP)和物联网服务提供商(ISP)。为了使双方服务提供商在能源效率和网络吞吐量方面的效用共同最大化,提出了一个Stackelberg博弈模型来研究ISP和ESP之间的战略互动。特别是,ISP首先评估其向客户提供物联网服务的收益,然后将其请求的价格连同服务时间发送给ESP。ESP提供了优化的传输功率,在满足ISP能源需求的同时最大限度地发挥其效用。为了研究Stackelberg平衡,我们首先得到了ESP的闭型解,并提出了一种基于块坐标下降(BCD)的低复杂度迭代方法来解决ISP的非凸优化问题。通过仿真结果,我们表明,与传统的传输方法相比,我们的方法可以显著提高两个提供商的利润,例如双基地反向散射和收获后发射通信方法。
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Energy Trading and Time Scheduling for Energy-Efficient Heterogeneous Low-Power IoT Networks
In this paper, an economic model is proposed to jointly optimize profits for participants in a heterogeneous IoT wireless-powered backscatter communication network. In the network under considerations, a power beacon and IoT devices (with various communication types and energy constraints) are assumed to belong to different service providers, i.e., energy service provider (ESP) and IoT service provider (ISP), respectively. To jointly maximize the utility for both service providers in terms of energy efficiency and network throughput, a Stackelberg game model is proposed to study the strategic interaction between the ISP and ESP. In particular, the ISP first evaluates its benefits from providing IoT services to its customers and then sends its requested price together with the service time to the ESP. Based on the request from the ISP, the ESP offers an optimized transmission power that maximizes its utility while meeting energy demands of the ISP. To study the Stackelberg equilibrium, we first obtain a closed-form solution for the ESP and propose a low-complexity iterative method based on block coordinate descent (BCD) to address the non-convex optimization problem for the ISP. Through simulation results, we show that our approach can significantly improve the profits for both providers compared with those of conventional transmission methods, e.g., bistatic backscatter and harvest-then-transmit communication methods.
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