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A unified architecture for efficient data and Non-Data Aided frequency estimation for FPGA implementation and application to satellite communications

机译:用于FPGA实现和应用于卫星通信的高效数据和非数据辅助频率估计的统一架构

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Modern codes such as Turbo and LDPC codes operate at low signal-to-noise ratios, which makes carrier synchronization a challenging problem. Hence in many waveforms, some known symbols are inserted periodically into the data stream to achieve Data-Aided (DA) synchronization. However, these known symbols decrease the throughput of the transmissions. The data symbols which are unknown can also be used for synchronization, in which case it is known as Non-Data Aided (NDA) synchronization. In this paper, we present an efficient structure which is almost the same for both the DA and NDA methods,especially suitable for implementation on Field Programmable Gate Arrays (FPGA). We discuss the implementation complexity and trade-offs involved in the FPGA implementation of this structure. We illustrate its utility by applying it a satellite communications waveform, popularly known as DVB-S2.
机译:涡轮和LDPC代码等现代代码以低信噪比运行,使载波同步成为一个具有挑战性的问题。 因此,在许多波形中,一些已知符号被周期性地插入到数据流中以实现数据辅助(DA)同步。 然而,这些已知符号降低了传输的吞吐量。 未知的数据符号也可以用于同步,在这种情况下,它被称为非数据辅助(NDA)同步。 在本文中,我们提出了一种高效的结构,对于DA和NDA方法几乎相同,特别适用于现场可编程门阵列(FPGA)的实现。 我们讨论了涉及FPGA实施该结构的实现复杂性和权衡。 我们通过将其应用卫星通信波形,俗称DVB-S2来说明其实用程序。

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