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The Design of Transport Block-Based ROHC U-Mode for LTE Multicast

机译:LTE组播的基于传输块的ROHC U模式设计

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摘要

One important issue that confronts multicast service is multiple-user satisfaction under dynamic channel conditions over cellular networks. In practical Long Term Evolution (LTE) networks, a key mechanism that affects the transmission efficiency and robustness for each user is RObust Header Compression (ROHC). In this work, we improve the transmission performance of multicast aiming at satisfying all the users with a trans-layer design scheme. We first establish a practical system model for trans-layer multicast networks, with transport blocks (TBs) as the transmission units. Focusing on the optimization of ROHC, we formulate a novel trans-layer control framework in terms of partially observable Markov decision process (POMDP) to maximize the total number of successfully received payload bits among all users in one Multimedia Broadcast Multicast Service (MBMS). To address the complexity issue of the rigorous POMDP formulation, we further develop an Instantaneous Marginal Belief (IMB) policy algorithm to handle multiple-user. Our numerical results demonstrate substantial improvements by the proposed policy.
机译:组播服务面临的一个重要问题是蜂窝网络在动态信道条件下的多用户满意度。在实际的长期演进(LTE)网络中,影响每个用户的传输效率和鲁棒性的关键机制是RObust标头压缩(ROHC)。在这项工作中,我们旨在通过跨层设计方案来满足所有用户的需求,从而提高多播的传输性能。我们首先以传输块(TB)为传输单位,为跨层多播网络建立实用的系统模型。着眼于ROHC的优化,我们根据部分可观察的马尔可夫决策过程(POMDP)制定了一种新颖的跨层控制框架,以最大程度地在一个多媒体广播多播服务(MBMS)中的所有用户中成功接收有效载荷比特的总数。为了解决严格的POMDP公式的复杂性问题,我们进一步开发了即时边际信任(IMB)策略算法来处理多用户。我们的数值结果表明,该拟议政策取得了显着改善。

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