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Pulse design for maximizing SIR in partially equalized OFDM/BFDM systems

机译:在部分均衡的OFDM / BFDM系统中使SIR最大化的脉冲设计

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Mobile wave propagation undergoes severe distortions caused by inter symbol interference (ISI) and inter carrier interference (ICI), which are due to multipath and high mobility. OFDM/BFDM techniques have a good ability to overcome ISI limiting quality effects whereas ICI can be increased for severe Doppler spreading. In this paper, we study the use of well localized time-frequency pulse shaping to reduce the effect of these interferences. The linear combination of several of the first most localized Hermite waveforms enables the design of an optimal transmit/receive pulse. By subtracting the interferences coming from some neighborhood symbols that will be treated by a partial equalization scheme, considerable gain in the signal to interference ratio (SIR) is achieved. With a reduced complexity OFDM system, partial equalization of the interference coming from 2-frequency neighbor symbols results in a gain of about 20 dB in the SIR, at high spectral efficiency and severe channel spreading. More gain in the desired ratio is achieved by optimizing the time-frequency spacing of the underlying lattice.
机译:移动波传播经历由符号干扰(ISI)和跨载波干扰(ICI)引起的严重扭曲,这是由于多径和高移动性。 OFDM / BFDM技术具有良好的克服ISI限制质量效应的能力,而ICI可以增加以进行严重多普勒蔓延。在本文中,我们研究了良好的定位时频脉冲整形来降低这些干扰的效果。第一最初最局部化的Hermite波形中的几个线性组合使得能够设计最佳发射/接收脉冲。通过减去将通过部分均衡方案对其进行处理的一些邻域符号的干扰,实现了信号与干扰比(SIR)的相当大的增益。随着OFDM系统的复杂性降低,来自2频邻符号的干扰的部分均衡导致SIR中的大约20dB的增益,以高光谱效率和严重的信道扩展。通过优化底层晶格的时频间隔来实现所需比率的更多增益。

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