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Novel Frame Structures to Improve System Capacity and Latency Performance of a Time-Division Duplex Multihop Relay Wireless Access System

机译:新颖的帧结构,提高时分双工多跳中继无线接入系统的系统容量和延迟性能

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The multihop relay wireless access system is expected to eliminate dead spots by expanding Line-Of-Sight situations and to extend coverage at low cost. However, time-division duplex relay schemes that apportion the fixed length frame resources between the access and relay zones like the IEEE802.16j relay scheme suffer the problems of degraded system capacity and poor latency performance. This paper solve these problems by introducing two novel frame structures: Mixed bidirectional frame and Offset frame. Numerical simulations confirm that both frame structures offer better performance than the IEEE802.16j frame structure, in terms of total throughput, throughput of the last hop SS, and latency performance. The offset frame improves the performance most significantly compared to the IEEE 802.16j frame structure; total throughput is increased by 85%, DL/UL throughput of the last hop SS by 88/120% and DL/UL latency is reduced by 73/33%.
机译:预计多跳中继无线接入系统将通过扩展视线情况并以低成本扩展覆盖范围来消除死点。但是,在IEEE802.16J中继方案等访问和中继区域之间分配固定长度帧资源的时分双工继电器方案遭受了劣化的系统容量和延迟性能差的问题。本文通过引入两种新颖框架结构来解决这些问题:混合双向框架和偏移框架。数值模拟确认,两种帧结构都比IEEE802.16J帧结构提供更好的性能,就总吞吐量,上跳SS和延迟性能的吞吐量而言。偏移帧与IEEE 802.16J帧结构相比,提高了最显着的性能;总产量增加了85%,最后跳跃SS的DL / UL吞吐量88/120%,DL / UL潜伏期减少了73/33%。

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