MDP-based Resource Allocation for Uplink Grant-free Transmissions in 5G New Radio

Thilina N. Weerasinghe, Indika A. M. Balapuwaduge, F. Li, V. Giner
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Abstract

The diversity of application scenarios in 5G mobile communication networks calls for innovative initial access schemes beyond traditional grant-based approaches. As a novel concept for facilitating small packet transmission and achieving ultra-low latency, grant-free communication is attracting lots of interests in the research community and standardization bodies. However, when a network consists of both grant based and grant-free based end devices, how to allocate slot resources properly between these two categories of devices remains as an unanswered question. In this paper, we propose a Markov decision process based scheme which dynamically allocates grant-free resources based on a specific reliability or priority requirement. The performance of the proposed scheme is evaluated via both analysis and simulations under various traffic arrival conditions.
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5G新无线电中基于mdp的上行链路无授权传输资源分配
5G移动通信网络应用场景的多样性要求创新初始接入方案,超越传统的基于授权的方法。免授权通信作为一种促进小分组传输和实现超低延迟的新概念,引起了学术界和标准化组织的广泛关注。然而,当一个网络同时包含基于授权和无授权的终端设备时,如何在这两类设备之间合理分配插槽资源仍然是一个悬而未决的问题。本文提出了一种基于马尔可夫决策过程的方案,该方案根据特定的可靠性或优先级要求动态分配免授权资源。在不同的交通到达条件下,通过分析和仿真对该方案的性能进行了评价。
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