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Development of an Efficient Low-complexity Channel Estimator for Digital Television Terrestrial Broadcasting Systems

机译:用于数字电视地面广播系统的高效低复杂度信道估计器的开发

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Orthogonal frequency division multiplexing (OFDM) is widely used to transmit data in many wireless communication applications including digital television terrestrial broadcasting (DTTB). Although the existing dual pseudo noise padding (DPNP) based time-domain synchronous OFDM (TDS-OFDM) system has low complexity, the spectral efficiency is low. The time-frequency-domain (TFD) based frame structure enhances the system performance of TDS-OFDM over fast time-varying channels by compromising with computational complexity. This paper proposes a novel frame structure for OFDM-based DTTB system which incorporates pilots in the time domain, and retains the cyclic prefix and modulable orthogonal sequence (MOS) from the TFD-based frame structure. Since the proposed frame structure is completely defined in time domain, channel estimation and equalization become easier. Using the new frame structure, a novel channel estimation technique is proposed that works in two stages. In the first stage, the MOS in guard interval is used to estimate the channel delay and gain. In the second stage, the channel gains estimated in first stage are fine-tuned using adaptive algorithms such as least mean square (LMS) or recursive least squares algorithm. The bit-error-rate (BER) performance of the proposed two-stage channel estimation technique is better compared to that of DPNP-based TDS-OFDM. In addition, computational complexity of the proposed LMS-based two-stage channel estimation approach is low compared to TFD-based TDS-OFDM system. Less than 1.5% of the total sub-carriers are used as redundant pilots, and therefore the loss in spectral efficiency is negligible in the proposed approach.
机译:正交频分复用(OFDM)在包括数字电视地面广播(DTTB)在内的许多无线通信应用中被广泛用于传输数据。尽管现有的基于双伪噪声填充(DPNP)的时域同步OFDM(TDS-OFDM)系统具有较低的复杂度,但频谱效率较低。基于时频域(TFD)的帧结构通过降低计算复杂度,提高了快速时变信道上TDS-OFDM的系统性能。本文提出了一种用于基于OFDM的DTTB系统的新型帧结构,该系统在时域中合并了导频,并保留了基于TFD的帧结构中的循环前缀和可调制正交序列(MOS)。由于所提出的帧结构是在时域中完全定义的,因此信道估计和均衡变得更加容易。使用新的帧结构,提出了一种新的信道估计技术,该技术可以分两个阶段工作。在第一阶段,MOS保护间隔用于估算通道延迟和增益。在第二阶段,使用诸如最小均方(LMS)或递归最小二乘算法等自适应算法对在第一阶段估计的信道增益进行微调。与基于DPNP的TDS-OFDM相比,所提出的两阶段信道估计技术的误码率(BER)性能更好。另外,与基于TFD的TDS-OFDM系统相比,所提出的基于LMS的两阶段信道估计方法的计算复杂度较低。少于总子载波的1.5%被用作冗余导频,因此在所提出的方法中频谱效率的损失可以忽略不计。

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