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45 Km Horizontal Path Optical Link Experiment

机译:45 Km水平路径光链路实验

摘要

Mountain-top to mountain-top optical link experiments have been initiated at JPL, in order to perform a systems level evaluation of optical communications. Progress made so far is reported. ne NASA, JPL developed optical communications demonstrator (OCD) is used to transmit a laser signal from Strawberry Peak (SP), located in the San Bernadino mountains of California. This laser beam is received by a 0.6 m aperture telescope at JPL's Table Mountain Facility (TMF), located in Wrightwood, California. The optical link is bi-directional with the TMF telescope transmitting a continuous 4-wave (cw) 780 run beacon and the OCD sending back a 840 nm, 100 - 500 Mbps pseudo noise (PN) modulated, laser beam. The optical link path is at an average altitude of 2 km above sea level, covers a range of 46.8 km and provides an atmospheric channel equivalent to approx. 4 air masses. Average received power measured at either end fall well within the uncertainties predicted by link analysis. The reduction in normalized intensity variance (sigma(sup 2, sub I)) for the 4-beam beacon, compared to each individual beam, at SP, was from approx. 0.68 to 0.22. With some allowance for intra-beam mis-alignment, this is consistent with incoherent averaging. The sigma(sup2, sub I) measured at TMF approx. 0.43 +/- 0.22 exceeded the expected aperture averaged value of less than 0.1, probably because of beam wander. The focused spot sizes of approx. 162 +/- 6 microns at the TMF Coude and approx. 64 +/- 3 microns on the OCD compare to the predicted size range of 52 - 172 microns and 57 - 93 microns, respectively. This is consistent with 4 - 5 arcsec of atmospheric "seeing". The preliminary evaluation of OCD's fine tracking indicates that the uncompensated tracking error is approx. 3.3 micro rad compared to approx. 1.7 micro rad observed in the laboratory. Fine tracking performance was intermittent, primarily due to beacon fades on the OCD tracking sensor. The best bit error rates observed while tracking worked were 1E-5 to 1E-6.
机译:JPL发起了从山顶到山顶的光链路实验,以执行光通信的系统级评估。迄今已取得进展。在NASA上,由JPL开发的光通信演示器(OCD)用于传输来自加利福尼亚州圣贝纳迪诺山区的草莓峰(SP)的激光信号。激光束由位于加利福尼亚州赖特伍德的JPL桌山工厂(TMF)的0.6 m孔径望远镜接收。光学链路是双向的,TMF望远镜发送连续的4波(cw)780信标信标,而OCD发送回840 nm,100-500 Mbps伪噪声(PN)调制的激光束。该光链路路径的平均海拔高度为2 km,覆盖范围为46.8 km,并提供相当于大约20 km的大气通道。 4气团。任一端测得的平均接收功率都在链路分析预测的不确定性之内。与每个单独的光束相比,在SP处,4-光束信标的归一化强度方差(sigma(sup 2,sub I))的减少约为。 0.68至0.22。在允许光束内未对准的情况下,这与非相干平均相符。在TMF处测得的sigma(sup2,sub I) 0.43 +/- 0.22超出了预期的小于0.1的孔径平均值,这可能是由于光束漂移所致。聚焦点尺寸约为在TMF Coude处为162 +/- 6微米,约OCD上的64 +/- 3微米分别为52-172微米和57-93微米的预计尺寸范围。这与大气“看见”的4-5 arcsec一致。对OCD的精细跟踪的初步评估表明,未补偿的跟踪误差约为。 3.3微弧度,相比之下。在实验室观察到1.7微拉德。优良的跟踪性能是断断续续的,主要是由于OCD跟踪传感器上的信标褪色。跟踪工作时观察到的最佳误码率是1E-5至1E-6。

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