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Enhanced LDM for Next-Generation Digital Broadcasting Transmission

机译:增强LDM用于下一代数字广播传输

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摘要

In the traditional layered division multiplexing (LDM) system, by simply adjusting the injection level, the reception performance of the core layer (CL) mobile services will be decreased significantly, resulting in the deterioration of system coverage performance. Thus, it is necessary to improve the performance of the enhanced layer (EL) service reception without affecting the reception threshold of CL service. To achieve this, in this paper, an enhanced LDM (En-LDM) scheme that supports multi-service transmission is proposed for the next-generation broadcasting network. In this scheme, at the transmitter end, part of the low-density parity-check (LDPC) coded data stream of fixed service conveyed in the EL will be extracted out through puncturing, and then, it will be transmitted over the CL of the LDM signal along with the original CL data in a frequency domain multiplexing (FDM) manner. At the receiving end, the punctured data of the EL fixed service will be recovered with a higher signal-to-noise ratio (SNR). Compared to the traditional LDM scheme, the proposed En-LDM scheme can significantly improve the reception performance of fixed services without decreasing the SNR threshold of mobile services. Moreover, the En-LDM can achieve a higher channel capacity than that of the traditional LDM for both the fixed services and the overall services. The superiority of the proposed En-LDM scheme over the traditional LDM scheme is validated by the simulation under the additive white Gaussian noise (AWGN) and fading channels.
机译:在传统的分层多路复用(LDM)系统中,通过简单地调整喷射水平,核心层(CL)移动服务的接收性能将显着降低,导致系统覆盖性能的劣化。因此,有必要改善增强层(EL)服务接收的性能而不影响CL服务的接收阈值。为此,本文提出了一种支持多服务传输的增强的LDM(EN-LDM)方案,用于下一代广播网络。在该方案中,在发射机端,通过打孔将通过打孔来提取EL中传送的低密度奇偶校验(LDPC)编码数据流的一部分。然后,它将在CL的CL上传输LDM信号以及原始CL数据以频域多路复用(FDM)方式。在接收端,EL固定服务的刺破数据将以较高的信噪比(SNR)恢复。与传统的LDM方案相比,所提出的en-LDM方案可以显着提高固定服务的接收性能而不会降低移动服务的SNR阈值。此外,EN-LDM可以实现比传统LDM的信道容量,而是针对固定服务和整体服务的传统LDM。通过添加白色高斯噪声(AWGN)和衰落通道下的模拟来验证所提出的en-LDM方案的优越性。

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