选择性干扰下电离层信道M-CPFSK信号迭代处理的算法阐述

M. M. Tolkachev, E. M. Lobov, N. A. Kandaurov
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引用次数: 3

摘要

文中给出了基于连续相移频键(CPFSK-64、CPFSK-256、CPFSK-1024)的低速turbo码信码结构。在仿真过程中,用高级语言c++开发了调制器、解调器、编码器和解码器的程序模型,用于spectr2数字通信系统的仿真建模。根据以下代码关系选择代码5/16、6/32、7/64。所述调制器和解调器具有用户窗口,从该用户窗口可以选择调制类型、调制指数和码率。在信号同步的系统M-FSK模型中,在信息块的传输过程中使用同步序列。通过传输一个同步序列,可以实现分段m序列的传输。在进行分析时,应该研究加性高斯白噪声和存在选择性干扰的沃特森信道中的SCC。在程序复杂的spectre -2图中使用了内置的高斯白噪声发生器模型、沃特森通道模型和用于数据输出的测量单元。在本文中,信号占用的信道带宽为40000 kHz。选择性干扰占所有信号带宽的25%。SKK的处理包括一种滤波器输出响应的归一化算法,用于在检测和恢复信号的情况下减少选择性干扰的影响。随着CPFSK中频率数的增加,信号在接收部分的处理出现困难。为了解决这一问题,采用移频键控256是在解调器中改变基准发生器,从而计算一个复杂信号的值。它允许减少系统spectr2的一个时钟周期内计算的操作次数。然而,对于CPFSK-1024的调制,需要完全改变接收信号的数字处理。在数字银行滤波器的应用中找到了解决方案。作为原型滤波器,选择带通范围为150hz,弹幕频带为300hz,抑制为70db。滤波器原型的阶数为32768。通过仿真得到了不同情况下的误码率和帧误码率的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Algorithm elaboration of iterative processing of M-CPFSK signals in the ionospheric channel with selective interferences
In the report signal and code constructions (SCC) on the basis of continuous phase frequency shift key (CPFSK-64, CPFSK-256, CPFSK-1024) using low-speed turbo codes are provided. In the course of simulation program models of the modulator, demodulator, coder and decoder on a high-level language C++ were developed for application in system of simulation modeling of the digital communication systems Spectr-2. Codes were selected with the following code relations 5/16, 6/32, 7/64. The modulator and the demodulator has the user window from which it is supposed to select a type of modulation, modulation index and code rate. Sequences of synchronization was used during transmission of an information block in model of the system M-FSK of signal`s synchronization. By transmission of a sequence of synchronization, it is supposed to transfer the sectional M-sequences. When carrying out the analysis it was supposed to research SCC in Watterson's channel with additive white Gaussian noise, and in the presence of selective interferences. Built-in models of the generator of white Gaussian noise, model of the channel of a Waterson and measuring units for data output were used in the diagram of the program complex Spectr-2. In this paper, the signal occupied bandwidth of the channel 40000 kHz. Selective interferences made 25 percent from bandwidth of all signal. Processing of SKK includes an algorithm of normalization of output responses of filters for reduction of influence of selective interferences in case of detection and restoration of a signal. With growth of number of frequencies in CPFSK, there was a difficulty of processing of a signal in a receiving part. For the solution of this problem of using frequency shift-keying 256 is change of the reference generator in the demodulator, which makes calculation of values of a complex signal. It allowed to reduce the number of the operations calculated for 1 clock period of the system Spectr-2. However, for modulation of CPFSK-1024 it was required to completely, change digital processing of the accepted signal. The solution was found in application digital the filter of bank. As a prototype the filter with band pass range of 150 Hz and a band of a barrage of 300 Hz with suppression 70 dB was selected. The order of the filter prototype is 32768. Characteristics of bit error rate and frame error rate in different conditions were received because of simulation.
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