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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >Evaluation of Asymmetric TDD Systems Employing AMC and HARQ by Considering MCS Selection Errors
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Evaluation of Asymmetric TDD Systems Employing AMC and HARQ by Considering MCS Selection Errors

机译:考虑MCS选择误差的AMC和HARQ非对称TDD系统评估

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摘要

In this paper, we evaluate the performance of asymmetric Time Division Duplex (TDD) system that employs Adaptive Modulation and Coding (AMC) and Hybrid ARQ, with consideration of the effect of control delays in TDD. Channel reciprocity characteristic in TDD allows utilization of open loop channel estimation to choose appropriate modulation and coding scheme (MCS) level for AMC. However, control delay in AMC and HARQ depends on TDD time slot allocation formats. Large control delay in AMC will result in false MCS selection due to the poor channel correlation between measured channel state from the received signals and instantaneous channel state of actual transmission with the MCS selected based on the measured channel state. We present an analytical approach to calculate the probability of MCS level selection error in different channel conditions for different asymmetric time slot allocations. From the theoretical and simulation results, it is shown that the instantaneous throughput per slot depends not only on maximum Doppler frequency but also on asymmetric slot allocations. Average delay time that yields error free packet reception in the downlink increases as the number of continuous downlink slots increases.
机译:在本文中,我们考虑了控制时延对TDD的影响,评估了采用自适应调制和编码(AMC)和混合ARQ的非对称时分双工(TDD)系统的性能。 TDD中的信道互易性特性允许利用开环信道估计来为AMC选择适当的调制和编码方案(MCS)级别。但是,AMC和HARQ中的控制延迟取决于TDD时隙分配格式。由于从接收到的信号中测得的信道状态与实际传输的瞬时信道状态之间的信道相关性很差,因此AMC中的较大控制延迟将导致错误的MCS选择,而MCS是基于测得的信道状态选择的。我们提出一种分析方法来计算不同信道条件下针对不同非对称时隙分配的MCS级别选择错误的概率。从理论和仿真结果可以看出,每个时隙的瞬时吞吐量不仅取决于最大多普勒频率,而且还取决于非对称时隙分配。随着连续下行链路时隙的数量增加,在下行链路中产生无错误分组接收的平均延迟时间增加。

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