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Hybrid microtransmitter for free-space optical spacecraft communication - design, manufacturing and characterization

机译:用于自由空间光学航天器通信的混合微型碎片 - 设计,制造和表征

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Optical intra-communication links are investigated by several currently operational qualification missions. Compared with RF communication systems, the optical domain obtains a wider bandwidth, enables miniaturized spacecraft and reduced power consumption. In this project, a microtransmitter is designed and manufactured for formation flying spacecraft with transmission rates of 1 Gbit/s. Simulations in Matlab and Simulink show that a BER of 10-9 can be achieved with aperture sizes of 1 cm and a transmitter output peak power of 12 mW for a distance of 10 km. The results show that the performance of the communication link decreases due to mechanical vibrations in the spacecraft together with a narrow laser beam. A dual-axis microactuator designed as a deflectable mirror has been developed for the laser beam steering where the fabrication is based on a double-sided, bulk micromachining process. The mirror actuates by joints consisting of v-grooves filled with SU-8 polymer. The deflection is controlled by integrated resistive heaters in the joints causing the polymer to expand thermally. Results show that the mirror actuates 20-30° in the temperature interval 25-250°C. Flat Fresnel lenses made of Pyrex 7740 are used to collimate the laser beam. These lenses are simulated in the Comsol software and optimized for a 670 nm red VCSEL. The lenses are manufactured using lithography and reactive ion etching. All tests are made in a normal laboratory environment, but the effect of the space environment is discussed.
机译:通过几个目前的运营资格特派团研究了光学内部通信链路。与RF通信系统相比,光学域获得更宽的带宽,使得小型化的航天器和降低的功耗降低。在该项目中,设计和制造了Microtransmitter,用于形成飞行航天器,传输速率为1 Gbit / s。 MATLAB和SIMULINK中的模拟表明,通过1厘米的光圈尺寸和变送器输出峰值功率为12 MW,可实现10-9的BER,距离为10公里。结果表明,通信链路的性能由于航天器和窄激光束在一起而导致的振动减小。设计为可偏转镜子的双轴微耦合器已经开发用于激光束转向,其中制造基于双面,散装微加工过程。镜子通过由填充有SU-8聚合物的V槽组成的关节致动。偏转由接头中的集成电阻加热器控制,导致聚合物热膨胀。结果表明,镜子在温度间隔25-250°C中致动20-30°。由Pyrex 7740制成的扁平菲涅耳透镜用于加热激光束。这些镜头在COMSOL软件中模拟,并针对670nm红色vcsel进行了优化。使用光刻和反应离子蚀刻制造镜片。所有测试都在正常的实验室环境中进行,但讨论了空间环境的效果。

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