首页> 外文会议>International Telemetering Conference >NON-FEEDBACK HIGH SPEED ADAPTIVE EQUALIZERS FOR FQPSK AND OTHER SPECTRAL EFFICIENCY SYSTEMS FOR LEO SATELLITE TELEMETRY SYSTEMS
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NON-FEEDBACK HIGH SPEED ADAPTIVE EQUALIZERS FOR FQPSK AND OTHER SPECTRAL EFFICIENCY SYSTEMS FOR LEO SATELLITE TELEMETRY SYSTEMS

机译:非反馈高速自适应均衡器,用于狮子座卫星遥测系统的FQPSK和其他光谱效率系统

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摘要

A non-feedback adaptive equalizer based on Feher Equalizer (FE) is presented and its performance is evaluated. By artificially adding notch/notches to the corrupted spectrum resulted from selectively faded LEO environments, an artificial symmetry is created and as a result the BER/BLER is improved. The location and the depth of artificial additive notches are based on the shape of the spectrum of the corrupted signal. By measuring the power in narrow bands around certain frequencies the existence of notches around those frequencies are predicted. Based on this information notches with proper depths are added to the main spectrum which results in more symmetry in the spectrum. The selection process of artificial notch/notches are based on the shape of the signal spectrum, which means that this equalizer unlike most conventional equalizer does not need any feedback. The nonfeedback nature of this equalizer improves the adaptation time over that of alternative equalizers The results presented in this paper are based on both MatLab simulations and laboratory hardware measurements.
机译:提出了一种基于疗程均衡器(FE)的非反馈自适应均衡器,并评估其性能。通过在选择性衰落的Leo环境中为损坏的频谱中人工添加凹口/槽口而产生的凹口/槽口,产生人工对称性,并且由于BER / BLER改善了BER / BLER。人工添加剂缺口的位置和深度基于损坏信号的频谱的形状。通过测量某些频率周围的窄带中的功率,预测了这些频率周围的凹口的存在。基于该信息,具有适当深度的缺点被添加到主要频谱中,这导致频谱中有更多对称性。人造缺口/凹口的选择过程基于信号频谱的形状,这意味着该均衡器与大多数传统均衡器不同不需要任何反馈。该均衡器的非抗拒性质在本文中提出的结果基于MATLAB模拟和实验室硬件测量的替代均衡器的非抗拒性质提高了适应时间。

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