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首页> 外文期刊>Communications Letters, IEEE >Is a Large Bandwidth Mandatory to Maximally Exploit the Transmit Matched-Filter Structure?
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Is a Large Bandwidth Mandatory to Maximally Exploit the Transmit Matched-Filter Structure?

机译:是否必须使用大带宽才能最大程度地利用发射匹配滤波器结构?

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摘要

Transmitted signals can be focused in time or space, i.e., at a particular receiver location, by introducing a prefilter in the transmitter. Prefiltering also allows containing intersymbol and multiuser interference. Performance bounds in terms of signal-to-noise ratio gain, which is achievable by prefiltering, depend on both transmitted signal bandwidth and channel characteristics. This paper analyzes the aforementioned dependence for transmit matched filters, which are also known as time-reversal prefilters, and channels with multipath. Theoretical results show that single-cluster channels verify a condition by which the gain is monotonic nondecreasing with bandwidth. Multicluster channels, such as those described by the Saleh–Valenzuela model, seem to follow a similar behavior, as suggested by simulation of the IEEE 802.15.3a channel model. As such, the transmit matched filter is particularly suitable for signals with large bandwidths, as in acoustics and ultrawideband communications.
机译:通过在发射器中引入预滤波器,可以将发射的信号集中在时间或空间上,即在特定的接收器位置。预过滤还允许包含符号间干扰和多用户干扰。通过预滤波可以达到的信噪比增益方面的性能界限,取决于发射的信号带宽和信道特性。本文分析了上述对发射匹配滤波器(也称为时间反转前置滤波器)和具有多径通道的依赖性。理论结果表明,单集群通道验证了增益随带宽单调不减小的条件。如IEEE 802.15.3a信道模型的模拟所建议的那样,诸如Saleh–Valenzuela模型所描述的那样的多集群信道似乎遵循类似的行为。这样,发射匹配滤波器特别适合于大带宽的信号,例如在声学和超宽带通信中。

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