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Incremental bit rates in FDD networks for LTE advanced over LTE

机译:用于LTE的FDD网络中的增量比特率在LTE上高级

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Long Term Evolution (LTE) Networks are being planned to be upgraded to LTE Advanced along with increasing availability of Release 10 User Equipment (UEs) and Spectrum Availability for Carrier Aggregation. LTE Advanced brings a major step increase in Down Link and Uplink Throughputs and related spectral efficiencies. This paper explains the evolution of Frequency Division Duplex (FDD) throughputs for different Channel Bandwidths. The maximum theoretical physical layer throughputs and expected actual application layer throughputs after removing the necessary overheads by different broadcast, signaling, synchronization & random access channels have been explained with an impact analysis thereof. Throughput gains for upcoming LTE Advanced deployments have been computed for Frame Structure Type 1 (FDD) for Channel Bandwidth of 1.4 MHz, 3MHz, 5 MHz, 10 MHz, 15 MHz and 20 MHz along with Carrier Aggregation of 2 & 5 Component Carriers. Impact of increasing Signaling Channels, retransmissions & code rate on throughputs has been explained so that the computations can be extended to any deployment scenario.
机译:随着版本10用户设备(UES)和载波聚合的频谱可用性的增加,正在计划长期演进(LTE)网络以及提高载体聚合的可用性和频谱可用性的推广。 LTE Advanced在下行链路和上行链路吞吐量和相关光谱效率下提高了一个重大步骤。本文解释了不同信道带宽的频分双工(FDD)吞吐量的演变。通过其冲击分析解释了通过不同广播,信令,同步和随机接入信道除去必要的开销之后的最大理论物理层吞吐量和预期的实际应用层吞吐量。已经为即将推出的LTE高级部署的吞吐量增益用于帧结构1(FDD),用于1.4MHz,3MHz,5MHz,10MHz,15MHz,20MHz的通道带宽以及2和5分量载体的载波聚集。已经解释了增加信令信道,重传和吞吐量对吞吐量的影响,以便计算计算可以扩展到任何部署方案。

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