On Hardware Implementations of Stepped-Carrier OFDM Radars

B. Schweizer, Daniel Schindler, Christina Knilll, J. Hasch, C. Waldschmidt
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引用次数: 12

Abstract

Orthogonal frequency-division multiplexing (OFDM) is a promising candidate for future digital-centric radar systems. One major limitation for practical implementations is the required sampling rate in the order of GHz, which can be solved by using a stepped-carrier technique in combination with OFDM signals of smaller bandwidth, theoretically resulting in the same resolution as a conventional OFDM scheme. However, a signal source capable of generating such a carrier has to fulfill several constraints. In this paper, the effects of deterministic and random inaccuracies of the carrier generation as well as effects of phase noise are described and evaluated. A transient model that describes the switching between carriers is given and all effects are verified using a radar demonstrator at 77 GHz.
阶梯载波OFDM雷达的硬件实现
正交频分复用(OFDM)是未来以数字为中心的雷达系统的一个很有前途的候选者。实际实现的一个主要限制是所需的GHz数量级的采样率,这可以通过使用阶跃载波技术与较小带宽的OFDM信号相结合来解决,理论上可以获得与传统OFDM方案相同的分辨率。然而,能够产生这种载波的信号源必须满足几个限制条件。本文描述和评估了载波产生的确定性和随机不准确性以及相位噪声的影响。给出了描述载波切换的瞬态模型,并利用77 GHz的雷达演示器验证了所有效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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