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首页> 外文期刊>Frontiers of Information Technology & Electronic Engineering >A block zero-padding method based on DCFT for L1 parameter estimations in weak signal and high dynamic environments
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A block zero-padding method based on DCFT for L1 parameter estimations in weak signal and high dynamic environments

机译:基于DCFT的块零填充方法在弱信号和高动态环境下的L1参数估计

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weak L1 signal acquisition in a high dynamic environment primarily faces a challenge: the integration peak is negatively influenced by the possible bit sign reversal every 20 ms and the frequency error. The block accumulating semi-coherent integration of correlations (BASIC) is a state-of-the-art method, but calculating the inter-block conjugate products restricts BASIC in a low signal-to-noise ratio (SNR) acquisition. We propose a block zero-padding method based on a discrete chirp-Fourier transform (DCFT) for parameter estimations in weak signal and high dynamic environments. Compared with the conventional receiver architecture that uses closed-loop acquisition and tracking, it is more suitable for open-loop acquisition. The proposed method combines DCFT and block zero-padding. In this way, the post-correlation signal is coherently post-integrated with the bit sequence stripped off, and the high dynamic parameters are precisely estimated using the threshold set based on a false alarm probability. In addition, the detection performance of the proposed method is analyzed. Simulation results show that compared with the BASIC method, the proposed method can precisely detect the high dynamic parameters in lower SNR when the length of the received signal is fixed.
机译:在高动态环境中,较弱的L1信号采集首先面临一个挑战:每20 ms可能发生的位符号反转和频率误差会对积分峰值产生负面影响。块累积相关的半相干积分(BASIC)是一种最新方法,但是计算块间共轭乘积会限制BASIC的低信噪比(SNR)采集。我们提出了一种基于离散线性调频-傅立叶变换(DCFT)的块零填充方法,用于弱信号和高动态环境中的参数估计。与使用闭环采集和跟踪的常规接收器体系结构相比,它更适合于开环采集。所提出的方法结合了DCFT和块零填充。以这种方式,将后相关信号进行相干后积分,并去除掉比特序列,并使用基于虚警概率的阈值集精确估算高动态参数。另外,分析了该方法的检测性能。仿真结果表明,与BASIC方法相比,该方法可以在接收信号长度固定的情况下,以较低的信噪比精确检测高动态参数。

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