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Investigation on the bit error rate performance of 40 Gb/s space optical communication system based on BPSK scheme

机译:基于BPSK方案的40 Gb / s空间光通信系统的误码率性能研究

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Space optical communication technique is attracting increasingly more attention because it owns advantages such as high security and great communication quality compared with microwave communication. As the space optical communication develops, people have already achieved the communication at data rate of Gb/s currently. The next generation for space optical system have goal of the higher data rate of 40Gb/s. However, the traditional optical communication system cannot satisfy it when the data rate of system is at such high extent. This paper will introduce ground optical communication system of 40Gb/s data rate as to achieve the space optical communication at high data rate. Speaking of the data rate of 40Gb/s, we must apply waveguide modulator to modulate the optical signal and magnify this signal by laser amplifier. Moreover, the more sensitive avalanche photodiode (APD) will be as the detector to increase the communication quality. Based on communication system above, we analyze character of communication quality in downlink of space optical communication system when data rate is at the level of 40Gb/s. The bit error rate (BER) performance, an important factor to justify communication quality, versus some parameter ratios is discussed. From results, there exists optimum ratio of gain factor and divergence angle, which shows the best BER performance. We can also increase ratio of receiving diameter and divergence angle for better communication quality. These results can be helpful to comprehend the character of optical communication system at high data rate and contribute to the system design.
机译:空间光通信技术与微波通信相比,具有安全性高,通信质量高等优点,因此受到越来越多的关注。随着空间光通信的发展,目前人们已经以Gb / s的数据速率实现了通信。下一代空间光学系统的目标是达到40Gb / s的更高数据速率。然而,当系统的数据速率如此之高时,传统的光通信系统不能满足它。本文将介绍40Gb / s数据速率的地面光通信系统,以实现高数据速率的空间光通信。说到40Gb / s的数据速率,我们必须使用波导调制器来调制光信号并通过激光放大器放大该信号。此外,更灵敏的雪崩光电二极管(APD)将用作检测器,以提高通信质量。基于以上通信系统,分析了数据速率为40Gb / s时空间光通信系统下行链路的通信质量特征。讨论了误码率(BER)性能(证明通信质量合理的重要因素)与某些参数比率之间的关系。从结果可知,存在最佳的增益因子和发散角比,显示出最佳的BER性能。我们还可以增加接收直径和发散角的比率,以获得更好的通信质量。这些结果有助于理解高数据速率下光通信系统的特性,并有助于系统设计。

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