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QPPM receiver for free-space laser communications

机译:QPPM接收器,用于自由空间激光通信

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摘要

A prototype receiver developed at NASA Lewis Research Center for direct detection and demodulation of quaternary pulse position modulated (QPPM) optical carriers is described. The receiver enables dual-channel communications at 325-Megabits per second (Mbps) per channel. The optical components of the prototype receiver are briefly described. The electronic components, comprising the analog signal conditioning, slot clock recovery, matched filter and maximum likelihood data recovery circuits are described in more detail. A novel digital symbol clock recovery technique is presented as an alternative to conventional analog methods. Simulated link degradations including noise and pointing-error induced amplitude variations are applied. The bit-error-rate performance of the electronic portion of the prototype receiver under varying optical signal-to-noise power ratios is found to be within 1.5-dB of theory. Implementation of the receiver as a hybrid of analog and digital application specific integrated circuits is planned.
机译:描述了在NASA Lewis研究中心开发的用于直接检测和解调四元脉冲位置调制(QPPM)光学载波的原型接收机。接收器能够以每通道325兆位每秒(Mbps)的速度进行双通道通信。简要描述了原型接收器的光学组件。更详细地描述了包括模拟信号调节,时隙时钟恢复,匹配滤波器和最大似然数据恢复电路的电子组件。提出了一种新颖的数字符号时钟恢复技术,以替代传统的模拟方法。应用了包括噪声和指向误差引起的幅度变化在内的模拟链路降级。发现在变化的光信噪功率比下,原型接收机电子部分的误码率性能在理论值的1.5dB之内。计划将接收器实现为模拟和数字专用集成电路的混合体。

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