基于多相结构的电子监控数字定标

Zhaogui Ding, Yufei Wang
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引用次数: 0

摘要

在电子监控系统中,一种常用的方法是将采样数据变换到频域进行信号检测。高速采样率通常依赖于时间交错技术,但交错通道的不一致性往往导致采样性能的恶化。传统的ADC器件不一致校正算法不依赖于数字接收机架构,需要增加单独的校正模块,增加了器件资源的利用率。在传统数字接收机结构的基础上,设计了一种新的基于多相结构的校正算法。该算法不仅实现了ADC的不一致校正,而且降低了电子监控系统设备资源的利用率。理论分析和仿真结果表明了该算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital Calibration Based on Polyphase Structure for Electronic Surveillance
In electronic surveillance systems, one common method is to transform the sampled data to frequency domain for signal detection. High speed sampling rate usually relies on time interleaving technology, but the inconsistency of interleaving channels often leads to the deterioration of sampling performance. The traditional ADC device inconsistency correction algorithm is independent of the digital receiver architecture, and needs to add a separate correction module, which increases the device resource utilization. Based on the traditional digital receiver architecture, this paper designs a new correction algorithm based on polyphase structure. This algorithm not only realizes the inconsistent correction of ADC, but also reduces the utilization of device resources of electronic surveillance system. Theoretical analysis and simulation results show the effectiveness of the proposed algorithm.
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