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首页> 外文期刊>Wireless Communications Letters, IEEE >Energy-Efficient Transmission Rate Selection and Power Control for Relay-Assisted Device-to-Device Communications Underlaying Cellular Networks
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Energy-Efficient Transmission Rate Selection and Power Control for Relay-Assisted Device-to-Device Communications Underlaying Cellular Networks

机译:用于中继辅助设备到设备通信的节能传输速率选择和功率控制下层蜂窝网络

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摘要

Device-to-device (D2D) communication underlaying cellular networks is seen as a promising technology for future communication systems, especially when relays are employed to extend the range of D2D links. However, the mutual interference between the spectrum-sharing D2D links and conventional cellular (CC) links is still the dominating performance limiting factor, which enforces those links to adopt higher transmission power. As energy saving is always one of the key concerns, we propose to minimize the total transmission energy consumption of a relay-assisted D2D link and a CC link sharing radio resources by jointly optimizing their transmission rate selection and power control (TRSPC). We formulate the optimization problem as a non-convex non-linear programming (NLP) problem and then develop a game theory based distributed approach to solve it. Simulation results demonstrate that our game theory based TRSPC approach can enormously decrease the total transmission energy consumption compared with existing works.
机译:设备到设备(D2D)通信底板蜂窝网络被视为未来通信系统的有希望的技术,特别是当采用继电器来扩展D2D链路的范围时。然而,频谱共享D2D链路和传统蜂窝(CC)链路之间的相互干扰仍是主导的性能限制因子,其强制执行这些链接以采用更高的传输功率。节能始终是关键问题之一,我们建议通过共同优化其传输速率选择和功率控制(TRSPC)来最小化继电器辅助D2D链路和CC链路共享无线电资源的总传输能耗。我们将优化问题作为非凸非线性编程(NLP)问题,然后开发基于博弈论的分布式方法来解决它。仿真结果表明,与现有工程相比,我们基于博弈论的TRSPC方法可以极大地降低总传输能量消耗。

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