首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >A Triangle-Oriented Spatial–Temporal Phase Unwrapping Algorithm Based on Irrotational Constraints for Time-Series InSAR
【24h】

A Triangle-Oriented Spatial–Temporal Phase Unwrapping Algorithm Based on Irrotational Constraints for Time-Series InSAR

机译:时间序列InSAR的基于非旋转约束的面向三角形的时空相位展开算法

获取原文
获取原文并翻译 | 示例

摘要

The sparse 3-D phase unwrapping (PU) is a significant problem in the time-series interferometric synthetic aperture radar (TSInSAR), which is a popular technique on the extraction of the ground deformation. The popular 1-D 2-D strategies in 3-D PU provide an initial temporal estimation of the phase gradients followed by a spatial integration procedure. However, the temporal PU (TPU) solution is prone to be spatially inconsistent, which increases the difficulty of the subsequent spatial PU (SPU). To solve the problem, in this article, an improved global TPU formulation targeting at a totally irrotational phase-gradient field is first proposed, which, however, has a heavy computation complexity, because numerous variables have to be optimized simultaneously. Consequently, a more feasible and practical triangle-oriented TPU (TOTPU) strategy is subsequently suggested, in which a triangle rather than an arc is the elementary unwrapping unit with the spatial irrotational constraints imposed. Furthermore, a residue-minimization algorithm is proposed to settle the problem of the conflict edges introduced by TOTPU, which occurs in just a small portion of arcs. Finally, the improved TPU phase gradients are integrated using an $L{1}$ -norm SPU method with a novel weight function to obtain more reliable unwrapped phases. The proposed triangle-oriented spatialtemporal (TOST) algorithm is validated to be effective and reliable with both the simulated data and the real TerraSAR-X images. Moreover, it can be transplanted into a parallel platform for large-scale applications.
机译:稀疏的3D相位展开(PU)是时间序列干涉合成孔径雷达(TSInSAR)中的一个重要问题,它是提取地面变形的一种流行技术。 3-D PU中流行的1-D 2-D策略提供了相位梯度的初始时间估计,然后进行了空间积分过程。但是,时间PU(TPU)解决方案在空间上倾向于不一致,这增加了后续空间PU(SPU)的难度。为了解决该问题,在本文中,首先提出了一种针对完全不旋转的相位梯度场的改进的全局TPU公式,但是,由于必须同时优化多个变量,因此它具有沉重的计算复杂性。因此,随后提出了一种更可行,更实用的面向三角形的TPU(TOTPU)策略,其中以三角形而不是圆弧为基本展开单元,并施加了空间旋转约束。此外,提出了一种残差最小化算法来解决由TOTPU引入的冲突边缘问题,该冲突边缘仅发生在弧的一小部分中。最后,使用具有新型权函数的$ L {1} $-范数SPU方法对改进的TPU相梯度进行积分,以获得更可靠的未包裹相位。仿真数据和真实TerraSAR-X图像均验证了所提出的面向三角形的时空算法(TOST)是有效且可靠的。而且,可以将其移植到大规模应用的并行平台中。

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