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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Channel Estimation in Wireless LANs with Transmitter Diversity
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Channel Estimation in Wireless LANs with Transmitter Diversity

机译:具有发射器多样性的无线局域网中的信道估计

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摘要

Three pilot symbol architectures are compared in an orthogonal frequency-division multiplexing (OFDM) system for a down link diversity environment. The first architecture is called a basic pilot scheme, in which two long pilot symbols (similar to 802.11a) are transmitted on interleaved sub-carriers from Q transmit antennas. The second architecture extends the basic scheme by interleaving the two pilot symbols in the time domain as well as the frequency domain. Each pilot symbol is preceded with a single cyclic prefix (CP) of length 800 ns. The third architecture interleaves a single pilot symbol with a CP of length 1600 ns, over twice the number of sub-carriers than the two preceding architectures. The modified architectures always outperform the basic pilot scheme in HIPERLAN/2 channel environment, since they reduce the interpolation error. No additional pilot overhead (compared to 802.11a) is necessary if the diversity order is low (≤2) and the maximum excess delay of a channel is confined to a CP of length 800 ns.
机译:针对下行链路分集环境,在正交频分复用(OFDM)系统中比较了三种导频符号架构。第一种架构称为基本导频方案,其中两个长导频符号(类似于802.11a)在Q个发射天线的交错子载波上发射。第二种架构通过在时域和频域中交织两个导频符号来扩展基本方案。每个导频符号前面都有一个长度为800 ns的单个循环前缀(CP)。第三种架构以长度为1600 ns的CP交织单个导频符号,其子载波的数量是前两种架构的两倍。修改后的架构在HIPERLAN / 2信道环境中始终优于基本导频方案,因为它们减少了内插误差。如果分集阶数低(≤2)并且信道的最大额外延迟被限制为长度为800 ns的CP,则无需额外的导频开销(与802.11a相比)。

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