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Performance Comparison of Reflector- and Planar-Antenna Based Digital Beam-Forming SAR

机译:基于反射天线和平面天线的数字波束形成SAR的性能比较

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The trend in the conception of future spaceborneradar remote sensing is clearly toward the use of digital beamformingtechniques. These systems will comprise multiple digitalchannels, where the analog-to-digital converter is moved closer tothe antenna. This dispenses the need for analog beam steeringand by this the used of transmit/receive modules for phase andamplitude control. Digital beam-forming will enable SyntheticAperture Radar (SAR) which overcomes the coverage and resolutionlimitations applicable to state-of-the-art systems. On theother hand, new antenna architectures, such as reflectors, alreadyimplemented in communication satellites, are being considered forSAR applications. An open question is the benefit of combiningdigital beam-forming techniques with reflector antennas. Thepaper answers this question by comparing the system architectureand digital beam-forming requirements of a planar and areflector antenna SAR. Further elaboration yields the resultingSAR performance of both systems. This paper considers multiplenovel aspects of digital beam-forming SAR system design, whichjointly flow into the presented system performance.
机译:未来星载雷达遥感概念的趋势显然是朝着数字波束赋形技术的方向发展。这些系统将包括多个数字通道,其中模数转换器移近天线。这消除了对模拟波束转向的需要,并且由此使用了用于相位和幅度控制的发射/接收模块。数字波束形成将启用SyntheticAperture雷达(SAR),从而克服了适用于最新系统的覆盖范围和分辨率限制。另一方面,已经在通信卫星中实现的新天线架构,例如反射器,正在考虑用于SAR应用。一个悬而未决的问题是将数字波束形成技术与反射器天线相结合的好处。本文通过比较平面天线和反射天线SAR的系统架构和数字波束形成要求来回答这个问题。进一步的详细说明将得出两个系统的合成孔径雷达性能。本文考虑了数字波束形成SAR系统设计的多个方面,这些方面共同影响了所提出的系统性能。

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