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Evaluation of SAR sensor design parameters on remote sensing missions

机译:遥感任务中SAR传感器设计参数的评估

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Purpose The purpose of this study is to investigate the design parameters of an optimal SAR satellite sensor on remote sensing missions. Synthetic aperture radar (SAR) satellite missions, with the advantages of using all weather conditions, repetition of a pass, high spatial resolution and adequate balance, can not only provide timely coverage in disaster areas but also environmental monitoring and accident assessment. It also provides resources. The product of images depicts the needs of government organizations not only before and after the crisis but also during the crisis. Therefore, low-cost SAR satellite loading efforts have begun with SAR satellites and key technologies. Design/methodology/approach Information about the basic parameters of SAR satellites such as antenna dimensions, image resolution, pulse and relationship repetition, as well as the tradeoff between required parameters and design needs' evaluation was achieved. In this paper, the tradeoff methods between some technical requirements are presented, and the limitations in the design of a SAR prototype sensor in the X band are examined. Diagrams can provide a complete overview of the predicted fluctuations and tradeoffs between them for a designer. Findings Analysis of findings reveals that data transmission rate with PRFmin is independent of antenna incidence angle, but in contrast, it is dependent on PRFmax, and afterward its relationship was analyzed. Drawn diagrams approved presented design and calculations. Other important parameters in the design of the SAR sensor such as antenna dimensions, tilt angle, amplitude and resolution of azimuth can be achieved as significant elements in systematic design according to the results of this paper. Regarding the displayed diagrams, it can be understood that the angle of the antenna should not be from 15 to 60 degrees. Originality/value This paper provides an overview of the new observational capability offered by the second generation of SAR sensors, especially in the field of remote sensing applications. The built-in antenna is built for the small SAR sensor. This array antenna is designed with a parallel screen to work in X-frequency with vertical polarity.
机译:目的本研究的目的是研究遥感任务上最佳SAR卫星传感器的设计参数。合成孔径雷达(SAR)卫星任务,具有使用所有天气条件的优势,重复通行证,高空间分辨率和充分的余额,不仅可以在灾区提供及时覆盖,还可以在环境监测和事故评估中提供。它还提供资源。图像的产品不仅在危机期间和危机之前和之后的情况下描述了政府组织的需求。因此,低成本的SAR卫星装载努力已经开始使用SAR卫星和关键技术。实现了关于SAR卫星基本参数的设计/方法/方法,例如天线尺寸,图像分辨率,脉冲和关系重复,以及所需参数和设计需求之间的权衡。在本文中,提出了一些技术要求之间的权衡方法,检查了X波段中SAR原型传感器的设计的限制。图表可以为设计人员提供预测的波动和权衡的完整概述。结果分析结果表明,使用PRFMIN的数据传输速率与天线入射角无关,但相比之下,它取决于PRFMAX,然后分析其关系。绘制的图已批准呈现的设计和计算。根据本文的结果,可以在系统设计中实现SAR传感器设计中的其他重要参数,例如天线尺寸,倾斜角度,幅度和方位角的分辨率。关于所显示的图,可以理解的是,天线的角度不应该是15到60度。原创性/值本文概述了第二代SAR传感器提供的新的观测能力,尤其是遥感应用领域。内置天线是为小型SAR传感器构建的。该阵列天线设计有一个并行屏幕,以在具有垂直极性的X频率下工作。

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