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首页> 外文期刊>Journal of Theoretical and Applied Information Technology >INVESTIGATION ON BER SENSITIVITY TO DESIGN SNR OF BHATTACHARRYA BOUNDS BASED CONSTRUCTION OF POLAR CODES
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INVESTIGATION ON BER SENSITIVITY TO DESIGN SNR OF BHATTACHARRYA BOUNDS BASED CONSTRUCTION OF POLAR CODES

机译:基于BATHARRYA界型极码建设的BER敏感性调查

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摘要

Advanced coding has been widely used to accomplish the high-performance requirements of wireless communications. While adhering to the perspective on energy-spectral efficiency, channel coding is still promising. To deal with such challenge, research initiatives on the linear block error correcting codes have gained accelerating momentum. In this paper we introduce polar codes which have proven to meet the typical use cases of the next generation mobile standard. Such work is motivated by the suitability of polar codes for the coming wireless era. Hence, we investigate the performance of polar codes in terms of bit error rate (BER) for several codeword lengths and code rates. We first perform a discrete search to find the best design signal to noise ratio (SNR) at two different code rates, while varying the blocklength. We find in our extensive simulations that the BER becomes more sensitive to design SNR as long as we increase the blocklength and code rate. Finally, we note that increasing blocklength achieves an SNR gain, while increasing code rate changes the operational SNR domain. This trade-off sorted out must be taken into consideration while designing polar codes for high-throughput application.
机译:先进的编码已被广泛用于实现无线通信的高性能要求。虽然遵守能量谱效率的角度来看,渠道编码仍然有望。为应对此类挑战,线性块误差校正码上的研究举措已经获得了加速的动力。在本文中,我们引入了已证明的极性代码,以满足下一代移动标准的典型用例。这种作品是通过对即将到来的无线时代的极地代码的适用性。因此,我们在几个码字长度和代码率的误码率(BER)方面调查极性代码的性能。我们首先执行离散搜索,以在两个不同的代码率下找到最佳设计信号(SNR),同时改变BlockLength。我们在我们广泛的模拟中发现,只要我们增加BlockLength和Code率,BER对设计SNR更敏感。最后,我们注意到,越来越多的BlockHength实现了SNR增益,同时增加了代码率更改了操作SNR域。必须在为高吞吐量应用程序设计极码时,必须考虑此权衡整理。

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