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Dynamically reconfigurable LTE-compliant OFDM modulator for downlink transmission

机译:用于下行链路传输的动态可重新配置的符合LTE的OFDM调制器

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As the number of wireless devices, services, communication standards and respective modes of operation rapidly grows, the design of reconfigurable digital baseband processing systems for radio devices becomes more important and challenging. Long Term Evolution (LTE) is among the most relevant wireless systems in 4G communications and its waveform is OFDM-based. According to the LTE mode of operation, OFDM parameters may change and influence baseband processing operations. This paper presents a dynamically reconfigurable LTE-compliant OFDM modulator for Downlink transmission able to adapt its internal hardware organization on-demand according to the digital modulation scheme and OFDM parameters, such as number of data subcarriers, IFFT size, Cyclic Prefix and window length. System reconfiguration is performed by employing FPGA-based Dynamic Partial Reconfiguration (DPR) techniques. The worst-case DPR latencies measured are 895 μs and 1.192 ms for digital modulation and channel bandwidth adaptation, respectively. These results show that the adopted design approach is feasible in wireless baseband processing systems. Power estimations suggest that circuit specialization at run-time can potentially improve system power efficiency.
机译:作为无线设备的数量,服务,通信标准和各自的操作模式迅速增长,用于无线电设备的可重新配置数字基带处理系统的设计变得更加重要和具有挑战性。长期演进(LTE)是4G通信中最相关的无线系统之一,其波形是基于DM的。根据LTE操作模式,OFDM参数可以改变和影响基带处理操作。本文介绍了一种动态可重构的LTE标准的OFDM调制器,用于使下行链路传输能够根据数字调制方案和OFDM参数调整其内部硬件组织,例如数据子载波的数量,IFFT大小,循环前缀和窗口长度。通过采用基于FPGA的动态部分重新配置(DPR)技术来执行系统重新配置。测量的最坏情况下降延迟分别为895μs和1.192ms,分别用于数字调制和通道带宽适配。这些结果表明,采用的设计方法是无线基带处理系统的可行性。功率估计表明运行时的电路专业化可能会提高系统功率效率。

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