带宽分割可编程匹配滤波器的54,000时间-带宽乘积直接序列

R. Larosa, S. J. Kerbel, T. L. Fowler, Patrick M. Corcoran
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引用次数: 0

摘要

提出了一种针对伪随机编码直接序列波形的全saw可编程匹配滤波器的设计方案。200 MHz的带宽在25 MHz的中心被分成8个50 MHz宽的频段。每个频带转换为100mhz,其中270微秒信号由5个级联SAW抽头延迟线处理。每个通道中的750个抽头传感器都与类噪声波形的一段相匹配。抽头极性由集成电路芯片切换。厚膜电阻矩阵将具有适当权重的抽头组连接到24条多普勒求和线。上变频后,通道输出被组合以提供24个多普勒通道的实时输出。该研究得到了空军系统司令部RADC电磁科学部的支持,Hanscom空军基地,MA 01731。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bandwidth Partitioned Programmable Matched Filter for 54,000 Time-Bandwidth Product Direct Sequence
At proposed design of an all-SAW programmable matched filter for a pseudorandom-coded direct sequence waveform is described. The 200 MHz bandwidth is split into 8 bands 50 MHz wide on 25 MHz centers. Each band is converted down to 100 MHz where the 270 microsecond signal is processed by five cascaded SAW tapped delay lines. Each of the 750-tap transducers in each channel is matched to a segment of a noise-like waveform. Tap polarities are switched by integrated circuit chips. A thick film resistor matrix connects groups of taps with proper weighting to 24 doppler summing lines. After up-conversion, the channel outputs are combined to provide real time outputs on 24 doppler channels. This study was supported by the RADC Electromagnetic Sciences Division, Air Force Systems Command, Hanscom AFB, MA 01731.
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