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Dynamic resource allocation based on service time prediction for device-to-device communication underlaying cellular networks

机译:基于服务时间预测的蜂窝网络下设备到设备通信的动态资源分配

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摘要

This work studies the dynamic resource allocation for device-to-device communication and proposes a service time prediction-based dynamic resource allocation mechanism for a cellular system. The proposed allocation mechanism introduces the concept of `utility' as a metric to reflect the quality of experience of users with different service requirements, and takes into account service time prediction in spectral resource allocation. Specifically, it enables a base station to predict the service time of a new user and the remaining service time of existing users in the system, and takes into account the predicted service time and remaining service time in calculating the effective utility gain caused by the arrival of a new user. Based on the calculated effective utility gain, the base station will select the physical resource block (PRB) with the largest effective utility gain every time it allocates a PRB to the new user. Simulation results show that the proposed dynamic allocation mechanism can significantly improve the system performance in terms of the overall average utility and the number of users successfully admitted to the system.
机译:这项工作研究了设备间通信的动态资源分配,并提出了一种基于服务时间预测的蜂窝系统动态资源分配机制。所提出的分配机制引入了“效用”的概念,以反映具有不同服务需求的用户的体验质量,并在频谱资源分配中考虑了服务时间的预测。具体地,它使基站能够预测系统中新用户的服务时间和现有用户的剩余服务时间,并在计算由到达引起的有效效用增益时考虑到预测的服务时间和剩余服务时间。新用户。基于计算出的有效效用增益,基站每次将PRB分配给新用户时,都会选择具有最大有效效用增益的物理资源块(PRB)。仿真结果表明,所提出的动态分配机制可以从总体平均效用和成功接纳该系统的用户数量方面显着提高系统性能。

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