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Signaling Basis with High Inter-Symbol Interference Rejection Pilots in Doubly Dispersive Channels

机译:信号基于双分散通道中的高符号间干扰抑制导频

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In pilot aided transmissions over doubly dispersive channels, channel estimation is impaired due to contamination of pilot symbols by leakage from neighboring data symbols in rectangular window based block transmissions; no overlap in time between pulses corresponding to neighboring symbols. Block transmissions can be viewed as a basis consisting of time-frequency shifts of a prototype window shape, commonly known as Gabor bases, where the window shape controls the time-frequency confinement; better confinement is obtained when non-rectangular window shapes are used, however at the loss of orthogonality. In this work, a non-Gabor basis comprised of discrete prolate spheroidal sequences is considered for signaling due to the resilience of its high order sequences to time-frequency spread; beyond a certain sequence order, the higher the order the better the resilience. By using such high order sequences as pilots, the pilot energy relative to data symbol energy needed to overcome interference from data leakage can be lowered while maintaining good channel estimation accuracy.
机译:在通过双分散通道上的导频辅助传输中,由于基于矩形窗口的块传输中的矩形窗口中的相邻数据符号泄漏而污染导频符号,扰动信道估计;与与相邻符号对应的脉冲之间没有重叠。块传输可以被视为由原型窗形状的时光偏移的基础,通常称为Gabor底座,其中窗口形状控制时频限制;然而,当使用非矩形窗口形状时,获得更好的限制,但是在正交性丧失时。在这项工作中,由于其高阶序列的弹性而被认为是信号传导的信号传导,因此考虑了由离散的脯氨酸球序列组成的非Gabor基础。超出某个序列顺序,顺序越高,弹性越好。通过使用这种高阶序列作为飞行员,可以降低相对于克服数据泄漏干扰所需的数据符号能量的导频能量,同时保持良好的信道估计精度。

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