面向5G专网低时延高可靠性传输的半持久调度方案

Hao Song, Kyeong Jin Kim, Jianlin Guo, P. Orlik, K. Parsons
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引用次数: 1

摘要

为满足私有应用对业务质量的要求,要求私有5G网络能够提供低时延、高可靠性的传输。因此,提出了一种新的半持久调度(SPS)方案,以实现用户的“免授权”和即时上行访问。在每个SPS周期开始时重新调度SPS用户,可以显著降低调度频率。通过将用户分配到相同的无线信道,无需请求无线资源和等待调度,可以大大降低上行传输延迟和系统复杂性。为了在移动引起的不断变化的无线环境中保持可靠性,提出的SPS方案采用随机几何来推导SPS周期内的距离分布、调制和编码方案(MCS)的选择以及调度优化。基于MCS选择和SPS信道上的数据期望,综合考虑SPS信道的当前状态和潜在状态,提出了提高可靠性和公平性的优化问题。最后,进行了大量的仿真研究,以证明所提出的SPS方案的有效性和优越性。
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Semi-Persistent Scheduling Scheme for Low-Latency and High-Reliability Transmissions in Private 5G Networks
To meet the quality of service requirements of pri-vate applications, the private fifth-generation (5G) networks are required to provide low-latency and high reliability transmissions. Thus, a new semi-persistent scheduling (SPS) scheme is proposed to enable “grant-free” and immediate uplink access for users. Re-scheduling SPS users at the beginning of each SPS period, the scheduling frequency can be significantly reduced. By allocating users to the same wireless channels without requesting wireless resources and waiting for scheduling, the uplink transmission latency and the system complexity can be greatly reduced. To maintain reliability over a changing wireless environment caused by mobility, the proposed SPS scheme employs stochastic geometry for the derivation of the distance distribution within the SPS period, modulation and code scheme (MCS) selection, and scheduling optimization. Based on the MCS selection and the data expectation on an SPS channel, an optimization problem is formulated for reliability and fairness enhancement by jointly taking into account the current channel states and potential channel states in the SPS period. Finally, extensive simulation studies are conducted to demonstrate the effectiveness and superiority of the proposed SPS scheme.
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