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Performance analysis of time-diversity scheme through atmospheric turbulence by using beam tracking antenna

机译:波束跟踪天线对大气湍流时分方案的性能分析

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Free space optical(FSO) communication can provide high bandwidth, high security communication services. it is attractive for its convenient establish the communication link and low power consuming. As the active received area of optical fiber is very small, when using optical fiber technology in FSO system, we must consider the effects of angle of arrival. Tracking subsystem is an effective method to mitigate the effects of turbulence. Using tracking system FSO demonstration, We found that when the turbulence is strong, the received power intensity fluctuation is very large. This is because when the turbulence is strong, the tracking error tracking subsystem increased a lot; therefore sometime the tracking system cannot focus the optical signal into the fiber. The bit error rate of communication system increase a lot. Time diversity is a useful technology for the time varied channel. We use theoretical analysis and did numerical simulations on the new scheme of time diversity FSO system with tracking antenna; The independent time interval of the system is also discussed. we found the new scheme can improve the throughput performance of conventional FSO system.
机译:自由空间光(FSO)通信可以提供高带宽,高安全性的通信服务。它以其方便的建立通信链接和低功耗而吸引人。由于光纤的有效接收面积很小,因此在FSO系统中使用光纤技术时,必须考虑入射角的影响。跟踪子系统是减轻湍流影响的有效方法。通过跟踪系统FSO的演示,我们发现当湍流较强时,接收功率强度的波动很大。这是因为在湍流较强的情况下,跟踪误差跟踪子系统增加了很多;因此,有时跟踪系统无法将光信号聚焦到光纤中。通信系统的误码率大大提高。时间分集是时变频道的有用技术。利用理论分析,对带跟踪天线的时间分集FSO系统的新方案进行了数值模拟。还讨论了系统的独立时间间隔。我们发现新方案可以提高常规FSO系统的吞吐性能。

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