首页> 外文会议>IEEE Radar Conference >Auto-regressive spectral gap filling algorithms for photonics-based highly sparse coherent multi-band radars in complex scenarios
【24h】

Auto-regressive spectral gap filling algorithms for photonics-based highly sparse coherent multi-band radars in complex scenarios

机译:复杂场景中基于光子的高稀稀的多带雷达的自动回归光谱间隙填充算法

获取原文

摘要

Auto-regressive gap filling algorithms have been demonstrated for interpolation among spectral gaps created by incoherent dual band radar systems. The required synchronized reconstruction leads to a heavy computational load. The recent use of photonics in microwaves systems, has resulted in coherent multiband radars that allow implementing these auto-regressive algorithms without the need to recover the coherence, and consequently with a reduced computational complexity. In a previous work, a modified auto-regressive algorithm with optimization control for coherent multiband radar has been presented. The algorithm has shown the ability to interpolate among two coherent sub-bands, obtaining the same performance of equivalent radar with a total band equal to the sum of the used sparse sub-bands. Therefore, the application of the modified auto-regressive algorithm to radar with sparse sub-bands overcomes the bandwidth limitations of RF front-ends and the frequency regulation restrictions. In the previous work, the algorithm was verified in simple scenarios and using only two sub-bands. Here, the algorithm using two sub-bands is applied and verified to scenarios with increased complexity, including the case of a boat as target. Moreover, for the first time we extend the algorithm to the case of several sub-bands (more than two) and we analyze the performance. We demonstrate that the benefit of using the auto-regressive gap filling algorithm instead of data fusion, increases as the number of sub-bands gets higher.
机译:已经证明了自动回归间隙填充算法用于由不连贯的双频带雷达系统创建的光谱间隙之间的插值。所需的同步重建导致重型计算负载。最近在微波系统中使用光子,导致了相干的多频雷达,允许实现这些自动回归算法,而无需恢复相干性,并且因此具有降低的计算复杂性。在以前的工作中,已经提出了一种改进的自动回归算法,具有用于相干多频雷达的优化控制。该算法已经示出了在两个相干的子带中插入的能力,获得与总频带等于使用的稀疏子带的总和的等效雷达的相同性能。因此,使用稀疏子频带的修改自动回归算法在雷达的应用克服了RF前端的带宽限制和频率调节限制。在上一项工作中,算法在简单的方案中验证,仅使用两个子带。这里,使用两个子带的算法应用并验证到具有增加复杂性的场景,包括船作为目标的船舶。此外,首次将算法扩展到多个子带(超过两个)的情况,我们分析了性能。我们证明使用自动回归间隙填充算法而不是数据融合的益处随着子带的数量变高而增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号