Turbo编/解码器的FPGA设计与实现

M. A. Fleah, Q. Al-Doori
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引用次数: 6

摘要

Turbo码用于减少通过通信通道发送消息时发生的错误。他们通过检测和纠正这些错误来做到这一点。由于具有良好的性能,可以达到信道容量的香农极限,因此被广泛应用于需要在噪声信道上可靠传输信息的应用中。本工作将利用MATLAB编程,通过Simulink和m.f iler两种编程方法来设计turbo码。使用Simulink设计构建turbo码,并使用VHDL代码在FPGA器件上实际实现。而在m .文件是用来衡量turbo码的误码率(BER)方面的性能。通过改变turbo码的参数,如码长、迭代次数,以及采用不同的速率和不同的解码算法来测试误码率。并介绍了穿刺和不穿刺操作的效果。然后将所得到的仿真结果进行比较,讨论在设计turbo码电路时,哪些参数能达到最佳的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of Turbo encoder/ decoder using FPGA
Turbo codes are used to reduce the errors that occur when sending a message through a communication channel. They do that by detecting and correcting these errors. They are widely used in applications that need to transmit the information reliably over a noisy channel, due to their good performance that reaches to the Shannon limit of the channel capacity. This work will design the turbo codes using MATLAB program by two programming methods Simulink and M.file. The Simulink design is used to build the turbo codes and to implement them practically on an FPGA device using VHDL code. While in M.file is used to measure the turbo code performance in terms of Bit Error Rate (BER). BER is tested by changing the parameters of the turbo codes like the codes length, the iteration numbers, also by taking different rates, and the different decoding algorithms. The effect of the puncturing and non-puncturing operation is also presented. Then the obtained simulation results can be compared with each other to discuss which parameters can be used to give the best performance in designing the turbo codes circuit.
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