Journal of Systems Engineering and Electronics ›› 2012, Vol. 34 ›› Issue (2): 385-390.doi: 10.3969/j.issn.1001-506X.2012.02.32

• 通信与网络 • 上一篇    下一篇

Gamma-Gamma模型下采用PPM调制的MIMO-FSO系统误时隙率分析

王红星, 徐建武, 孙晓明, 胡昊, 吴晓军   

  1. 海军航空工程学院电子信息工程系, 山东 烟台 264001
  • 出版日期:2012-02-15 发布日期:2010-01-03

Performance analysis of MIMO-FSO systems based on PPM modulation and Gamma-Gamma distribution model

WANG Hongxing, XU Jianwu, SUN Xiaoming, HU Hao, WU Xiaojun   

  1. Department of Electronics and Information Engineering, Naval Aeronautical and 
    Astronautical University, Yantai 264001, China
  • Online:2012-02-15 Published:2010-01-03

摘要:

分析了在Gamma-Gamma分布下基于脉冲位置调制(pulse position modulation, PPM)方式的多输入输出自由空间光学(multiple input multiple output free space optics, MIMO-FSO)通信系统模型。首先推导了单输入单输出(single input single output, SISO)-PPM系统的误时隙率(slot error rate, SER)计算公式,以此作为参考,在独立同分布和独立分布参数不同情况下,分别推导出MISO-PPM、SIMO-PPM和MIMO-PPM系统的平均SER计算公式,并用数值仿真的方法,分析了它们的平均SER性能。仿真结果表明,在Gamma-Gamma分布模型下,采用多发多收的方法确实能有效提高FSO系统的平均SER性能,如在误时隙率为10 -4 时,M = 2、N =2 的MIMO-PPM系统在信道分布参数相同和不同时,与SISO-PPM相比,分别能节省信噪比50 dB和65 dB左右。实际应用中,M N 分别取3或4就基本足够,对无线光通信系统的理论分析和系统设计具有一定的指导意义。

Abstract:

he multiple input multiple output free space optics (MIMO-FSO) system model is analyzed under the Gamma-Gamma distribution channels and pulse position modulation (PPM). The SER calculating formula of single input single output (SISO)-PPM systems is derived firstly, then as a benchmark, under the cases of both independent with identical distribution (IID) and independent with different distributions(IDD), the average slot error rates (SER) of MISO-PPM, SIMO-PPM and MIMO-PPM systems are derived respectively. Simulations of the average SER performances of these systems are done. The simulation results show that, under GammaGamma distribution, the average SER is indeed improved in MIMO systems. When SER is at 10-4, the average SER of the MIMO-PPM system with  M=2 and N=2 is improved by about 50 dB and 65 dB under IID and IDD respectively. In practical designs, M and N are enough to set to 3 or 4 respectively. The obtained conclusion is significant to the analysis and design of FSO systems.