窄带波形编码连续相位调制的新视角:迭代与非迭代解决方案

Adrien Le Naour, Elie Janin, C. Poulliat
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引用次数: 1

摘要

窄带波形(NBWF)常用于甚高频或超高频战术通信中。对于这些类型的波形,低延迟和稳健的数据速率导致短码字长度,这在信道编码方面具有挑战性。在NBWF的背景下,通常考虑串行级联卷积码和连续相位调制(CC-CPM)方案。当评估可实现的速率时,CC-CPM方案显示出1到4 dB的最大余量。在本文中,我们研究了两种新的基于稀疏图的信道编码策略,试图减少这种退化的可实现率。还解决了短码字长度的一些实现问题。为此,我们首先考虑了一种串行连接的CPM方案,其中外部代码是一种优化的低密度奇偶校验码(LDPC),该LDPC基于最近引入的一些针对此类应用的方法。优化后的LDPC方案在使用二进制cpm时具有良好的误码率。这种新设计具有更低的计算复杂性和更大的灵活性。其次,为了避免迭代检测和解码的繁琐,我们研究了最近引入的可以实现接近最佳性能的预编码CPM,我们称之为实用CPM (P-CPM)。对于这种预编码的CPM方案,我们将展示相关的EXIT图表曲线具有平坦性。这意味着,为了获得良好的性能,P-CPM可以与LDPC Accumulate Repeat Jagged Accumulate (ARJA)或Turbo codes等标准容量逼近码一起使用,而无需迭代解码。误码率仿真验证了P-CPM是一种可靠的NBWF替代方案,兼容多种现代信道码。由于P-CPM是非迭代的,因此实现起来更容易。在加性高斯白噪声中,两种方案都是实用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New perspectives for coded continuous phase modulations for narrowband waveforms: Iterative versus non-iterative solutions
NarrowBand Waveforms (NBWF) are often used in VHF or UHF tactical communications. For these kinds of waveforms, low latency and robust data rates result in short codeword lengths that are challenging in terms of channel coding. Usually, serially concatenated convolutional code and continuous phase modulation (CC-CPM) schemes are considered in the context of NBWF. When evaluating the achievable rates, CC-CPM schemes show a 1 to 4 dB maximum margin. In this paper, we investigate on two new sparse graph-based channel coding strategies, trying to reduce this degradation for the achievable rate. Some implementation issues with short codeword lengths are also addressed. To this end, we first consider a serially concatenated CPM scheme where the outer code is an optimized Low-Density Parity-Check code (LDPC) based on some recently introduced methods for this kind of applications. The optimized LDPC scheme exhibits a good bit error rate when binary CPMs are used. This new design comes with lower computational complexity and greater flexibility. Second, in order to avoid the cubersome of iterative detection and decoding, we investigate on recently introduced precoded CPM that can achieve near optimal performance, referred to us as Pragmatic CPM (P-CPM). For this kind of precoded CPM schemes, we will show that associated EXIT chart curves have the flat property. It means that, to achieve good performance, P-CPM can be used with standard capacity approaching codes like LDPC Accumulate Repeat Jagged Accumulate (ARJA) or Turbo Codes without the need for iterative decoding. Bit error rate simulations confirm that P-CPM is a reliable alternative NBWF scheme compatible with versatile modern channel codes. As P-CPM is non-iterative, implementation is made easier. In additive white Gaussian noise, both schemes are found practical.
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