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Experimental radio link with fast carrier recovery for universal digital portable communications

机译:具有快速载波恢复功能的实验性无线电链路,用于通用数字便携式通信

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To investigate the viability of time-division multiple access (TDMA) in a fading environment, an experimental radio link has been designed and implemented. It consists of a 500-kb/s differentially encoded four-level quadrature amplitude modulation (QAM) burst transmitter and a coherent receiver with a fast-carrier-recovery circuit. The demodulator is a modified Costas carrier tracking loop with a dynamic loop (bandwidth switching) filter using hard-decision detection. A bandwidth switching technique, coupled with another technique, i.e. freezing the loop filter between two consecutive bursts so that at the start of a burst only phase must be reacquired, results in efficient burst coherent detection. A carrier-acquisition preamble length equivalent to seven symbols (28 mu s) has been achieved. Bandwidth switching also helps recover from a deep fade faster than when a constant narrow bandwidth is used. There is only a small degradation in the radio link performance with increasing user speed (Doppler frequency) in a fading environment.
机译:为了研究时分多址(TDMA)在衰落环境中的可行性,已经设计并实现了一个实验性无线电链路。它由一个500 kb / s的差分编码四电平正交幅度调制(QAM)突发发射机和一个具有快速载波恢复电路的相干接收机组成。解调器是经过修改的Costas载波跟踪环路,具有使用硬决策检测的动态环路(带宽切换)滤波器。带宽切换技术与另一种技术相结合,即在两个连续的脉冲串之间冻结环路滤波器,以使得在脉冲串开始时仅必须重新获取相位,从而导致有效的脉冲串相干检测。已经实现了等效于七个符号(28μs)的载波捕获前同步码长度。与使用恒定的窄带宽相比,带宽切换还有助于更快地从深层衰落中恢复。在衰落环境中,随着用户速度(多普勒频率)的提高,无线链路性能只会出现很小的下降。

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