基于FLC技术的2D-WH/TS OCDMA PON ONU接收机设计

Lakshmi Prasad, A. Raj
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引用次数: 26

摘要

本文运用模糊逻辑预测无源光网络(PON)中二维跳波/扩频光码分多址(2D-WH/TS OCDMA)码的信道响应。采用模糊逻辑控制(FLC)来降低接收端2D-WH/TS OCDMA PON的误码率。该FLC预测了发生在传输链路中的环境温度变化效应,这种效应会影响接收端2D-WH/TS OCDMA码的自相关峰值的预期幅度。FLC系统利用传感器估计的信道内的传播距离和温度变化作为输入变量,来预测接收机处的自相关峰值。这种自相关降低的信息需要在接收端动态调整阈值检测器的阈值水平。FLC的设计要求对2D-WH/TS OCDMA信道的解析响应具有先验知识。利用MATLAB中的模糊库,利用隶属函数对FLC进行仿真。仿真结果表明,所建立的通道响应解析模型可准确预测环境温度对通道响应的影响,精度达92.1%。
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Design of 2D-WH/TS OCDMA PON ONU Receiver with FLC Technique
This paper exercises fuzzy logic for the prediction of channel response to a two dimensional-wavelength hopping /time spreading optical code division multiple access (2D-WH/TS OCDMA) code in a passive optical network (PON). A fuzzy logic control (FLC) is employed for the reduction of bit error rate of 2D-WH/TS OCDMA PON at the receiver. This FLC predicts the environmental temperature variation effects that occur in the transmission links which impact the expected magnitude of the autocorrelation peak of 2D-WH/TS OCDMA code at the receiver. The FLC system, uses propagation distance and the temperature changes in channel which is estimated by sensors, as input variables, to predict the auto-correlation peak at the receiver. This information on the reduction of auto correlation requires to dynamically adjust the threshold level of threshold detector at the receiver. The design of the FLC demands a priory knowledge of the analytic response of the 2D-WH/TS OCDMA channels. The simulation of FLC was done by using membership functions in MATLAB using fuzzy libraries. The simulation results show that the effect of environmental temperature can be predicted with the accuracy of 92.1% from the analytic model available for channel response.
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