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Development of SAR transmitter for nanosatellite-based remote sensing application

机译:基于纳米卫星遥感应用的SAR发射器的开发

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Synthetic Aperture Radar (SAR) is one of radar techniques which is usually applied to improve the resolution of azimuth detection using smaller antenna size. One of its applications is for space-based remote sensing using satellite since it can get larger observation area than other SAR platforms. However, the payload of space-based SAR using satellite should satisfy some requirements in mass, power, and dimension. This paper discusses the development of SAR transmitter for nanosatellite-based remote sensing application. It is developed based on frequency modulated continuous wave (FMCW) waveform as a chirp generator which is implemented using a direct digital synthesizer (DDS) technique. Here, the use of DDS technique is to simplify the development of SAR transmitter circuit. The DDS component used in the development is an integrated circuit of AD9850 from Analog Device controlled by an ARM-based μcontroller. The chirp bandwidth FMCW waveform is 10MHz with 1 μs duration which has the range resolution of 15m.
机译:合成孔径雷达(SAR)是雷达技术之一,通常应用于使用较小的天线尺寸改善方位角检测的分辨率。其中一个应用程序用于使用卫星基于空间的遥感,因为它可以获得比其他SAR平台更大的观察区域。然而,使用卫星的基于空间的SAR的有效载荷应满足质量,功率和尺寸的一些要求。本文讨论了基于纳米卫星的遥感应用的SAR变送器的开发。它基于频率调制的连续波(FMCW)波形作为啁啾发生器开发,其使用直接数字合成器(DDS)技术实现。这里,使用DDS技术是简化SAR发射器电路的开发。开发中使用的DDS组件是AD9850的集成电路,由由基于ARM的μController控制的模拟设备。啁啾带宽FMCW波形为10MHz,具有1μs持续时间,其范围分辨率为15米。

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