Reduction of latency in mobile multi-hop relay(MMR) networks

W. Jo, Ju-wook Jang
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Abstract

The frame structure design is more challenging in the new mobile multi-hop relay based (MMR) network architecture, as numerous dimensions of design constraints and challenges have been introduced. Tao et al. propose a simple yet flexible multi-zone framework based upon the current 802.16e OFDMA frame structure design, which enables multi-hop operation while still maintaining the backward compatibility with the legacy mobile stations. However, RS in each tier has different time of receiving data from BS. This time gap is wide and enlarges the ratio of relay zone in frame structure, which decreases system throughput. In addition, this scheme is not considering frequency reuse. In this paper, we propose a MMR frame structure which improves performance while maintaining the backward compatibility. We design the frame structure with frequency reuse. We divide relay zone into several sub relay zones and BS transmits the data starting from the last tier RS to the first tier RS. As a result, we minimize the average time gap of receiving data for RSs. With our proposed frame structure, our simulation shows improvement of MAC efficiency by 30% compared with the scheme by Tao et al.
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减少移动多跳中继(MMR)网络中的延迟
在基于移动多跳中继(MMR)的新型网络体系结构中,由于引入了许多维度的设计约束和挑战,帧结构设计更具挑战性。Tao等人在现有802.16e OFDMA帧结构设计的基础上,提出了一种简单而灵活的多区域框架,既能实现多跳操作,又能保持与传统移动站的向后兼容性。但是,每层RS接收BS数据的时间不同。这种时间间隔较大,增大了帧结构中继电带的比例,降低了系统吞吐量。此外,该方案不考虑频率复用。在本文中,我们提出了一种MMR帧结构,它在保持向后兼容性的同时提高了性能。我们设计了频率复用的框架结构。我们将中继区域划分为若干个子中继区域,由BS将数据从最后一层RS传输到第一层RS,从而使接收RSs数据的平均时间间隔最小。在我们提出的框架结构下,我们的仿真表明,与Tao等人的方案相比,MAC效率提高了30%。
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