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Low-complexity iterative demapping for rotated QAM constellations in DVB-T2 system

机译:DVB-T2系统中旋转QAM星座图的低复杂度迭代解映射

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Bit-Interleaved Coded Modulation (BICM) with rotated constellation is utilized to increase the signal space diversity in the second generation digital video broadcasting system, i.e., DVB-T2. However, at the receiver side, the complexity increases with product of the number of constellation points and the modulation order. In this paper, we propose a low-complexity iterative demapping algorithm which uses the hard decision results as the feedback input. Comprehensive simulation is conducted with different channel models, modulation orders and channel coding rates. Results show that the proposed algorithm performs well for both Ricean and Rayleigh fading channels. It can achieve performance gains for all 4-,16-,64- and 256-QAM modulation types and different LDPC coding rates. At least 4dB gain on required Signal to Noise Ratio (SNR) can be achieved after 5 iteration in DVBT-P Rayleigh fading channels for each modulation type.
机译:具有旋转星座图的比特交织编码调制(BICM)被用于增加第二代数字视频广播系统即DVB-T2中的信号空间分集。但是,在接收机侧,复杂度随着星座点数和调制阶数的乘积而增加。在本文中,我们提出了一种低复杂度的迭代解映射算法,该算法使用硬判决结果作为反馈输入。使用不同的信道模型,调制阶数和信道编码率进行全面的仿真。结果表明,该算法对Ricean和Rayleigh衰落信道均表现良好。对于所有4-,16-,64-和256-QAM调制类型以及不同的LDPC编码速率,它都可以实现性能提升。在每种调制类型的DVBT-P Rayleigh衰落信道中,经过5次迭代后,至少可以获得4dB的所需信噪比(SNR)增益。

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