航空遥测的空时编码ARTM

Chad Josephson, E. Perrins, M. Rice
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引用次数: 2

摘要

本文表明,基于突发的正交空时分块编码ARTM能够解决航空遥测中的双天线问题,但检测需要一个过于复杂的栅格探测器。在单输入、单输出(SISO)应用程序中,脉冲截断和状态空间划分降低了栅格检测器的计算复杂度,并且只有适度的误码率(BER)性能损失。本文证明了基于突发的正交空时分组码的分层脉冲截断和状态空间分割复杂性降低技术相对于SISO情况不会带来额外的误码率性能损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Space-Time Coded ARTM CPM for Aeronautical Telemetry
This paper shows that burst-based orthogonal spacetime block-coded ARTM CPM is capable of solving the two-antenna problem in aeronautical telemetry, but detection requires a prohibitively complex trellis detector. In single-input, single-output (SISO) applications, pulse truncation and state-space partitioning reduce the computational complexity of the trellis detector with only modest bit error rate (BER) performance penalties. In this paper it is shown that layering pulse truncation and state-space partition complexity-reducing techniques with a burst-based orthogonal space-time block-code does not introduce additional BER performance losses relative to the SISO case.
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