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Performance analysis of the bit-interleaved coded modulation using turbo equalization with single carrier frequency domain equalization using subblock signal processing over fast fading channels

机译:快速衰落信道上使用子块信号处理的Turbo均衡与单载波频域均衡的比特交织编码调制的性能分析

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We investigate the impact of the subblock signal processing on the performance of the bit-interleaved coded modulation using turbo equalisation with single carrier frequency domain equalisation (BICM TE-SC-FDE) over frequency selective fading channels. We focus on the impact of the subblock signal processing to mitigate the impact of the residual intersymbol interference (ISI) on the convergence behaviour using the extrinsic information transfer (EXIT) chart technique. We first show that BICMTE-SC-FDE with subblock signal processing can effectively mitigate the residual ISI impacting not only the error floor but also the convergence behaviour. Then, we show that the Gaussian assumption modelling of the soft information within the TE-SC-FDE with subblock signal processing can accurately track the flow of the extrinsic information in the iterative procedure. We parameterize the inter-subblock interference as a function of the ratio between the channel's length and fast Fourier transform blocksize, channel's power delay profile and the soft estimate obtained from the channel decoder. This leads to an analytical model where the product of the Doppler spread and transmit block length and the number of subblocks signal processing are crucial parameters affecting the transfer function of the equalizer and hence the convergence behavior of the TE-SC-FDE with subblock signal processing. The accuracy of our EXIT chart prediction is verified by the simulation. Performance evaluation using the EXIT chart analytical technique is much faster than the exhaustive BER simulation of the overall system.
机译:我们研究了子块信号处理对在频率选择性衰落信道上使用带有单载波频域均衡(BICM TE-SC-FDE)的Turbo均衡的比特交织编码调制性能的影响。我们专注于子块信号处理的影响,以使用外部信息传递(EXIT)图表技术减轻符号间残留干扰(ISI)对收敛行为的影响。我们首先表明,具有子块信号处理功能的BICMTE-SC-FDE可以有效地减轻残留ISI的影响,不仅影响误差底限,而且影响收敛性能。然后,我们表明,采用子块信号处理的TE-SC-FDE中软信息的高斯假设建模可以在迭代过程中准确地跟踪非本征信息的流动。我们将子块间干扰参数化为信道长度与快速傅立叶变换块大小之间的比率,信道的功率延迟曲线以及从信道解码器获得的软估计的函数。这导致了一个分析模型,其中多普勒扩展和发射块长度的乘积与子块信号处理的数量是影响均衡器传递函数并因此影响TE-SC-FDE与子块信号处理的收敛行为的关键参数。 。通过仿真验证了我们的EXIT图表预测的准确性。使用EXIT图表分析技术进行性能评估比对整个系统进行详尽的BER仿真要快得多。

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