利用新型双扩散管调制提高自由空间光学在大气湍流下的误码率性能

A. Rahman, S. Aljunid, M. Anuar, H. Fadhil
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引用次数: 2

摘要

本文研究了利用新型双扩散器调制(DDM)技术减轻自由空间光通信中大气湍流的影响。位于发射机上的相位屏扩散器创建“新”波束波,以更有效地通过湍流传播。该技术使用两个发射器和差分模式检测接收器。结果表明,在强湍流条件下,DDM技术在可接受的误码率为10-9时的接收功率性能,与传统强度调制直接检测开关键控(CIM/DD-OOK)和部分相干波束开关键控(PCB-OOK)相比,分别提高了约99%和66%。在2.5 Gbps数据比特率下,DDM技术的误码率提高了12个数量级,相当于提高了100%,而采用扩散器的CIM/DD-OOK仅提高了2个数量级,提高了33%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improve the bit error rate performance of free space optic due to atmospheric turbulence using new dual diffuser modulation
This paper focus on mitigating the atmospheric turbulence effect in free space optical communication using new dual diffuser modulation (DDM) technique. Phase screen diffuser located on transmitter create `new' beam wave to propagate through turbulence more efficiently. This technique uses two transmitter and differential mode detection at the receiver. The result shows that for the receiving power performance at acceptable BER 10-9 under the strong turbulence condition, the improvement of DDM technique approximately 99% and 66% if compare with Conventional intensity modulation for direct detection of On-off keying (CIM/DD-OOK) and Partially coherent beam On-off Keying (PCB-OOK). At 2.5 Gbps data bit rate the magnitude of BER for DDM technique increase with 12 magnitudes or equivalent to 100% improvement and the CIM/DD-OOK with diffuser only 2 magnitudes which give the 33% improvement.
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