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SAR polarimetry for sea oil slick observation

机译:SAR极化仪用于观察浮油

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摘要

In this article, a review of polarimetric synthetic aperture radar (SAR) methods for sea oil slick observation is presented. Marine oil pollution monitoring is a topic of great applicative and scientific relevance. In this framework, the use of remotely sensed measurements is of special interest and, in particular, the SAR because of its almost all-weather and all-day imaging capability at fine spatial resolution is the most effective tool. Conventional single-polarization SAR oil spill monitoring techniques are limited in their capability to detect oil slicks since they strongly rely on suitable thresholds, training samples, and ancillary information. Hence, an expert image analyst is due. The launch of a number of polarimetric SAR missions, along with the understanding of the peculiar physical mechanisms governing the scattering by an oil slick, led to a new paradigm (known as physical processing) that fostered a set of polarimetric algorithms particularly robust and efficient. Hence, suitable polarimetric models that exploit the departure from the slick-free sea Bragg scattering have been developed to effectively address oil slick monitoring. A set of polarimetric features extracted following such electromagnetic models have been proved to be reliable for oil slick monitoring. Polarimetric SAR observations led to a significant improvement in sea oil slick observation since they allow distinguishing oil slicks from a broad class of lookalikes in an unsupervised way. In addition, deeper information on the damping properties of the pollutant can be also inferred, which is of paramount importance for remediation purposes. Such physical processing has been demonstrated to be robust at variance of microwave carrier frequency, e.g. L-, C-, and X-band, and suitable to be exploited to extract information by dual-polarized, full-polarized, and compact modes. All these make such a physical approach of operational interest since it is able to exploit a larger set of SAR measurements building up a virtual constellation. In this review all these are detailed.
机译:在本文中,对用于海水浮油观测的极化合成孔径雷达(SAR)方法进行了综述。海洋油污染监测是一个具有广泛应用和科学意义的主题。在这种框架下,使用遥感测量值特别受关注,尤其是SAR,因为它几乎可以在全天候和全天的高分辨率空间分辨率下成像,因此是最有效的工具。常规的单极化SAR溢油监测技术检测浮油的能力受到限制,因为它们强烈依赖于合适的阈值,训练样本和辅助信息。因此,应聘请专业的图像分析师。大量极化SAR任务的启动,加上对控制浮油散射的特殊物理机制的理解,催生了新的范式(称为物理处理),该范式催生了一套特别健壮和高效的极化算法。因此,已经开发出了利用与无油海布拉格散射相背离的合适的极化模型,以有效地解决油污监测问题。已经证明,遵循此类电磁模型提取的一组极化特征对于浮油监测是可靠的。极化SAR观测导致了浮油观察的显着改善,因为它们允许以无监督的方式将浮油与各种类油油区分开。此外,还可以推断出有关污染物的阻尼特性的更深层信息,这对于补救目的至关重要。已经证明,这种物理处理在微波载波频率的变化(例如,200MHz)下是鲁棒的。 L波段,C波段和X波段,适合用于通过双极化,全极化和紧凑模式提取信息。所有这些都使这种具有实际操作意义的物理方法成为可能,因为它能够利用更多的SAR测量集来建立虚拟星座。在这篇评论中,所有这些都是详细的。

著录项

  • 来源
    《International journal of remote sensing》 |2015年第12期|3243-3273|共31页
  • 作者单位

    Univ Napoli Parthenope, Ctr Direz Isola C4, Dipartimento Ingn, Naples, Italy;

    Univ Napoli Parthenope, Ctr Direz Isola C4, Dipartimento Ingn, Naples, Italy;

    Univ Napoli Parthenope, Ctr Direz Isola C4, Dipartimento Ingn, Naples, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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