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Experimental Demonstration of Photon Efficient Coherent Temporal Combining for Data Rate Scaling

机译:光子有效相干时间组合的数据速率缩放的实验演示

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The next generation free-space optical (FSO) communications infrastructure will need to support a wide range of links from space-based terminals at LEO, GEO, and deep space to the ground. Efficiently enabling such a diverse mission set requires a common ground station architecture capable of providing excellent sensitivity (i.e., few photons-per-bit) while supporting a wide range of data rates. One method for achieving excellent sensitivity performance is to use integrated digital coherent receivers. Additionally, coherent receivers provide full-field information, which enables efficient temporal coherent combining of block repeated signals. This method allows system designers to trade excess link margin for increased data rate without requiring hardware modifications. We present experimental results that show a 45-dB scaling in data rate over a 41-dB range of input powers by block-repeating and combining a PRBS sequence up to 36,017 times.
机译:下一代自由空间光(FSO)通信基础设施将需要支持从LEO,GEO和深空的天基终端到地面的广泛链接。为了有效地实现这种多样化的任务集,需要一种通用的地面站架构,该架构必须能够提供出色的灵敏度(即每位几个光子),同时支持多种数据速率。实现出色灵敏度性能的一种方法是使用集成数字相干接收机。另外,相干接收机提供全场信息,这使得能够对块重复信号进行有效的时间相干组合。这种方法允许系统设计人员以多余的链路余量来换取增加的数据速率,而无需修改硬件。我们提供的实验结果表明,通过块重复和组合PRBS序列高达36,017次,可以在输入功率41 dB的范围内以45 dB的比例缩放数据速率。

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