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Adaptive Subcarrier Block Modulation with Differentially Modulated Pilot Symbol Assistance for Downlink OFDM Using Uplink Delay Spread

机译:使用上行链路延迟扩展的,具有差分调制导频符号辅助的下行链路OFDM自适应子载波块调制

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In AMS/OFDM systems, base station is in control of the modulation level of each subcarrier, and then, adaptive modulated packet is transmitted from the base station to the mobile station. In this case, the mobile station is required the modulation level information (MLI) to demodulate the received packet. The MLI is generally transmitted as a data symbol, therefore, the throughput is degraded. In an OFDM, the channel response at a particular subcarrier frequency is not supposed to be totally different from its neighboring frequencies, and hence, they must have correlation which depends on the coherence bandwidth of the channel B_c. If we could assign the same modulation level for coherently faded subcarrier block, MLI is required only one time for each subcarrier block. Moreover, we can assign the data on the empty space of pilot signals for increasing the total transmission. In this paper, we propose an adaptive subcarrier block modulation with differentially modulated pilot symbol assistance for downlink OFDM using uplink delay spread.
机译:在AMS / OFDM系统中,基站控制每个子载波的调制级别,然后,将自适应调制分组从基站发送到移动站。在这种情况下,要求移动台调制等级信息(MLI)来解调接收到的分组。 MLI通常作为数据符号发送,因此吞吐量降低。在OFDM中,特定子载波频率的信道响应不应该与其相邻频率完全不同,因此,它们必须具有取决于信道B_c的相干带宽的相关性。如果我们可以为相干衰落的子载波块分配相同的调制级别,则每个子载波块只需要MLI一次。此外,我们可以在导频信号的空白空间上分配数据,以增加总传输量。在本文中,我们针对具有上行链路延迟扩展的下行链路OFDM提出了具有差分调制导频符号辅助的自适应子载波块调制。

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