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Frequency-dependent modulation and coding rates for LTE link adaptation in static conditions

机译:静态条件下LTE链路自适应的频率相关调制和编码率

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OFDM wireless cellular systems rely on link adaptation in order to match the Modulation and Coding Scheme (MCS) of the transmission blocks with the dynamic channel conditions experienced at the receive side. For simplicity, Long-Term Evolution (LTE) systems consider a single MCS format per codeword, which is optimized according to the average frequency response over the user's allocated bandwidth. When the channel coherence bandwidth is smaller than the user bandwidth, the constituent codeblocks experience significantly different channel responses, thus rendering link adaptation less effective. This paper proposes a frequency-dependent link adaptation mechanism whereby codeblocks are independently assigned different MCS values that can be fine-tuned to the frequency characteristics of the channel. Post-detection SINR values at the receive side are exploited (instead of CQI values), along with horizontal mapping of resources with two variants: direct mapping and diversity mapping. A suitable in-band signaling scheme for the codeblock sizes and modulations is also described. Link-level simulations show moderate increases in median throughput, but significant improvements in instantaneous throughput, for a broad range of SINR conditions. The proposed scheme can be particularly beneficial when very large signal bandwidths are used as foreseen in future 5G cellular systems.
机译:OFDM无线蜂窝系统依赖于链路自适应,以使传输块的调制和编码方案(MCS)与接收端经历的动态信道条件相匹配。为简单起见,长期演进(LTE)系统针对每个码字考虑单个MCS格式,该格式根据用户分配的带宽上的平均频率响应进行了优化。当信道相干带宽小于用户带宽时,组成代码块会经历明显不同的信道响应,从而使链路自适应的效率降低。本文提出了一种频率相关的链路自适应机制,通过该机制,可以分别为代码块分配不同的MCS值,这些MCS值可以微调至信道的频率特性。利用接收侧的检测后SINR值(而不是CQI值)以及具有两个变体的资源水平映射:直接映射和分集映射。还描述了用于码块大小和调制的合适的带内信令方案。链路级仿真显示,在广泛的SINR条件下,中值吞吐率略有提高,但瞬时吞吐率却得到了显着改善。如未来5G蜂窝系统中所预见的那样,当使用非常大的信号带宽时,建议的方案可能特别有益。

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