Optimal MISO UWB pre-equalizer design with spectral mask constraints

Hamed Mohsenian Rad, J. Mietzner, R. Schober, V. Wong
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Abstract

In this paper, we propose a novel optimization-based pre-equalization filter (PEF) design for multiple-input single-output (MISO) direct-sequence ultra-wideband (DS-UWB) systems with pre-Rake combining. The key feature in our design is that we explicitly take into account spectral mask constraints which are usually imposed by telecommunications regulation and standardization bodies. This avoids the need for an inefficient power back-off, which is necessary for existing pre-equalizer and pre-Rake designs that are designed solely based on average transmit power constraints. Simulation results confirm that the proposed PEF design leads to significant performance gains over UWB PEF structures without any explicit spectral mask considerations. Furthermore, the use of multiple transmit antennas is shown to provide substantial combining gains compared to single-antenna transmitter structures. We also investigate the impact of certain system and optimization parameters on the performance of the proposed PEF design.
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具有频谱掩模约束的MISO超宽带预均衡器优化设计
本文提出了一种基于优化的多输入单输出(MISO)直接序列超宽带(DS-UWB)系统预rake组合预均衡滤波器(PEF)设计。我们设计的关键特征是我们明确考虑了频谱掩码约束,这些约束通常是由电信法规和标准化机构施加的。这避免了对低效率功率回退的需求,这对于现有的仅基于平均发射功率约束设计的预均衡器和预rake设计是必要的。仿真结果证实,在没有任何明确的频谱掩模考虑的情况下,所提出的PEF设计比UWB PEF结构带来了显着的性能提升。此外,与单天线发射机结构相比,使用多个发射天线可以提供可观的组合增益。我们还研究了某些系统和优化参数对所提出的PEF设计性能的影响。
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High-efficiency super-gain antenna arrays Order-recursive precoding for cooperative multi-point transmission Frequency prediction of the channel transfer function in multiple antenna systems Optimal MISO UWB pre-equalizer design with spectral mask constraints Synchronization aspects while using reciprocity for precoding in MIMO-OFDM
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