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On the influence of non-ideal interpolation on the chip synchronization performance of bandlimited direct-sequence spread-spectrum signals

机译:非理想插值对带限直序扩频信号码片同步性能的影响

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The article deals with the chip synchronization performance of a fully digitally implemented receiver, operating on a direct-sequence spread-spectrum signal with bandlimited (instead of rectangular) chip pulses. The considered digital receiver operates on samples of the received noisy signal, taken by a fixed clock which is not synchronized to the transmitter clock. The synchronized samples needed for the chip synchronization algorithm are computed by interpolating between the available non-synchronized samples. Because of finite memory, interpolation is non-ideal; hence, some amount of distortion is introduced, which affects the performance of the chip synchronizer. By means of a theoretical analysis, we investigate the tracking performance of a specific non-coherent early-late chip synchronizer, assuming interpolation of orders zero, one and two. We demonstrate that non-ideal interpolation can give rise to a loop noise spectrum containing spectral lines, that mainly occur near f=0 when the sampling frequency is very close to an integer multiple of the chip rate. Unless a sufficiently small loop bandwidth is chosen, the contribution of these spectral lines could dominate the tracking error variance, which then becomes much larger than for synchronized sampling.
机译:该物品涉及完全数字实施的接收器的芯片同步性能,在具有带状(代替矩形)芯片脉冲的直接序列扩频信号上操作。所考虑的数字接收器在接收的嘈杂信号的样本上运行,由固定时钟拍摄,该时钟不与发射机时钟同步。通过在可用的非同步样本之间内插来计算芯片同步算法所需的同步样本。由于有限内存,插值是非理想的;因此,引入了一些失真,这影响了芯片同步器的性能。通过理论分析,我们研究了特定的非相干早期芯片同步器的跟踪性能,假设零点的插值为零,一个和两个。我们证明了当采样频率非常接近芯片速率的整数倍数时,非理想的内插可以产生频谱线的环噪声频谱,其主要发生在F = 0附近。除非选择了足够小的环路带宽,否则这些光谱线的贡献可以占据跟踪误差方差,然后该频率变得远远大于同步采样。

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