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A two-stage MSK-type detector for low-BT GMSK signals

机译:用于低BT GMSK信号的两级MSK型检测器

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摘要

As a very bandwidth-efficient modulation format, Gaussian minimum shift keying (GMSK) with a low bandwidth-time (BT) product value is important for bandwidth-limited satellite communications. The MSK-type linear detector, which works well for GMSK signals with BT values greater than 0.25, has a large performance degradation when detecting low-BT GMSK signals when compared with the optimum Viterbi equalizer. After decomposing the differential precoded low-BT GMSK signal into a linear component and a nonlinear component with significant signal energy, we propose a two-stage MSK-type detector for low-BT GMSK signals in a coded system. Tentative decisions are generated in the first stage and then used to cancel the interfering nonlinear component in the received signal. The second detection stage deals only with the linear component and a very small amount of the nonlinear component due to the decision errors in the first stage. The detector design methodology is presented. Simulations have been performed using BT=0.143 GMSK example systems and the two-stage MSK-type detector shows significant improvement over the conventional one-stage linear detector in coded systems.
机译:作为一种非常高效的带宽调制格式,具有低带宽时间(BT)乘积值的高斯最小频移键控(GMSK)对于带宽受限的卫星通信非常重要。与最佳Viterbi均衡器相比,MSK型线性检测器对BT值大于0.25的GMSK信号效果很好,在检测低BT GMSK信号时性能下降很大。在将差分预编码的低BT GMSK信号分解为具有显着信号能量的线性分量和非线性分量之后,我们针对编码系统中的低BT GMSK信号提出了两级MSK型检测器。临时决策在第一阶段生成,然后用于消除接收信号中的干扰非线性分量。由于第一阶段的决策误差,第二个检测阶段仅处理线性分量和极少量的非线性分量。介绍了检测器设计方法。已经使用BT = 0.143 GMSK示例系统进行了仿真,并且两级MSK型检测器在编码系统中显示出优于常规的一级线性检测器。

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