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Error floors in the satellite and land mobile channels

机译:卫星和陆地移动频道中的错误楼层

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摘要

In a satellite mobile channel (SMC) and land mobile channel (LMC) because of fading and nonlinear power amplifiers, constant envelope modulation and noncoherent detection methods may outperform other schemes. It is shown how to compute the error floor for four noncoherent digital communication systems in satellite and land mobile channels. Differential phase shift keying (DPSK) with differential phase detection (DPD) or frequency shift keying (FSK) with DPD, limiter discriminator integrator detection. (LDID), or limiter discriminator detection (LDD) are studied. The error floor is the residual error probability when SNR is infinity, i.e. the error probability in the system is limited by the error floor. The error floor is computed as a function of Doppler frequency, modulation index, and ratio of powers in the specular and diffuse signal components for DPSK-DPD, FSK-DPD, FSK-LDID and FSD-LDD systems.
机译:在卫星移动信道(SMC)和陆地移动信道(LMC)中,由于衰落和非线性功率放大器的影响,恒定包络调制和非相干检测方法可能会优于其他方案。它显示了如何计算卫星和陆地移动信道中四个非相干数字通信系统的错误基底。具有差分相位检测(DPD)的差分相移键控(DPSK)或具有DPD,限幅鉴相器积分器检测的频移键控(FSK)。 (LDID)或限幅识别器检测(LDD)。误差底限是当SNR为无穷大时的残余误差概率,即系统中的误差概率受误差底限的限制。对于DPSK-DPD,FSK-DPD,FSK-LDID和FSD-LDD系统,本底误差是根据多普勒频率,调制指数以及镜面和散射信号分量中的功率比来计算的。

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