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The Miniature Optical Communication Transceiver—A Compact, Power-Efficient Lasercom System for Deep Space Nanosatellites

机译:微型光通信收发器-用于深空纳米卫星的紧凑,高效节能的Lasercom系统

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Optical communication is becoming more prevalent in orbit due to the need for increased data throughput. Nanosatellites, which are satellites that typically weigh less than 10 kg, are also becoming more common due to lower launch costs that enable the rapid testing of technology in a space environment. Nanosatellites are cheaper to launch than their larger counterparts and may be a viable option for communicating beyond Earth’s orbit, but have strict Size, Weight, and Power (SWaP) requirements. The Miniature Optical Communication Transceiver (MOCT) is a compact optical transceiver designed to provide modest data rates to SWaP constrained platforms, like nanosatellites. This paper will cover the optical amplifier characterization and simulated performance of the MOCT amplifier design that produces 1 kW peak power pulses and closes three optical links which include Low Earth Orbit (LEO) to Earth, LEO to LEO, and Moon to Earth. Additionally, a benchtop version of the amplifier design was constructed and was able to produce amplified pulses with 1.37 W peak power, including a 35.7% transmit optics loss, at a pump power of 500 mW. Finally, the modulator, seed laser, amplifier, receiver, and time-to-digital converter were all used together to measure the Bit Error Ratio (BER), which was 0.00257 for a received optical peak power of 176 nW.
机译:由于需要增加数据吞吐量,光通信在轨道上变得越来越普遍。纳米卫星是通常重量不到10公斤的卫星,由于发射成本较低,可以在太空环境中对技术进行快速测试,纳米卫星也变得越来越普遍。纳米卫星的发射比大型卫星便宜,并且可能是在地球轨道之外进行通信的可行选择,但对尺寸,重量和功率(SWaP)要求严格。微型光通信收发器(MOCT)是一款紧凑型光收发器,旨在为SWaP受限平台(如纳米卫星)提供适度的数据速率。本文将介绍MOCT放大器设计的光学放大器特性和模拟性能,该设计产生1 kW峰值功率脉冲,并关闭三个光学链路,包括低地球轨道(LEO)到地球,LEO到LEO以及月球到地球。此外,该放大器设计的台式版本可以在500 mW的泵浦功率下产生具有1.37 W峰值功率的放大脉冲,包括35.7%的传输光学损耗。最后,将调制器,种子激光器,放大器,接收器和时间数字转换器一起使用,以测量误码率(BER),对于176nW的接收光峰值功率,该误码率是0.00257。

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