星机双基地SAR空间几何关系与信号模型
Study on Geometry and Signal Model of Spaceborne/Airborne Bi-static SAR
- 2008年第5期 页码:750-758
纸质出版日期: 2008
DOI: 10.11834/jrs.20080597
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纸质出版日期: 2008 ,
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[1]周鹏,皮亦鸣.星机双基地SAR空间几何关系与信号模型[J].遥感学报,2008(05):750-758.
ZHOU Peng1, PI Yi-ming1. Study on Geometry and Signal Model of Spaceborne/Airborne Bi-static SAR[J]. Journal of Remote Sensing, 2008,(5):750-758.
星机双基地SAR是近年来在国外出现的一种新型空间对地观测传感器。由于卫星平台与飞机平台在飞行速度、飞行高度等方面存在巨大差异
其与较早开展的星载双基地SAR、机载双基地SAR等系统相比具有显著的不同。针对星机双基地SAR系统的3个基础性问题
同时也是非常关键的问题开展了研究工作。即:空间几何关系、多普勒特性和信号模型。从提高分辨率、利于直达波的接收和利于空间同步等角度出发
分析了飞机的适宜路线;推导了计算多普勒参数的精确解析公式;建立了系统的信号模型
分析了成像算法设计的难度;验证了在系统满足特定条件时
传统RD算法经适当改进后仍可适用。在此基础上
可进一步开展任意飞行模式下的成像算法设计等后继研究工作。
In recent years
spaceborne/airborne bi-static synthetic aperture radar(SA-BSAR) has been proposed as a new kind of microwave remote sensor.The development of SA-BSAR is still at an early stage since there are many challenges faced ahead.Due to the huge difference between the satellites’ and the aircrafts’ velocities and flying altitudes
there are obvious differences between SA-BSAR and the earlier bi-static SAR systems which have symmetrical structures
such as the spaceborne bi-static SAR and the airborne bi-static SAR.Three basic and critical issues in SA-BSAR are discussed
including geometry
Doppler properties and signal model.In the discussion of geometry
the proper coordinate systems are first established to describe the movement of the satellite and the aircraft.Next
the appropriate flight path for the aircraft is quantitatively analyzed in detail from many aspects
including: how to improve the range resolution
how to improve the azimuth resolution
how to receive the direct path signal more conveniently
and how to make the spatial synchronization much easier.The following conclusions are drawn: the aircraft should fly on the same side of the imaging scene with the satellite;the difference angles among the platforms’ course angles can not be too large;the aircraft must be illuminated by the satellite’s main beam within the imaging time;the aircraft must appear at the right position just in time to cooperate with the satellite to implement the spatial synchronization.In the discussion of Doppler properties
several analytical formulae for computing Doppler parameters are first derived using the method of vector analysis.Afterwards
to make the formulae more practical
the derived expressions are transformed to an easy-to-use form that is expressed by orbit elements of the satellite
satellite antenna pointing angles and kinematical parameters of the aircraft.In the discussion of signal model
the model for SA-BSAR is first established based on the model for mono-static SAR and then the great difficulties in designing the imaging algorithm are discussed.Through the analysis for the established model
the following conclusion is drawn: the traditional Range-Doppler(RD) algorithm
after properly modified and extended
can also be applied to the imaging of SA-BSAR when some special conditions are simultaneously met.These special conditions include: the synchronization scheme based on wide-beam illumination is employed;the satellite and the aircraft fly in parallel
and both the transmitter and the receiver are operated in side-looking modes.In order to validate the above conclusions
two simulation experiments were performed.The simulation results verify the accuracy of the derived formulae for the calculation of the Doppler parameters
and also verify the applicability of the RD algorithm when some special conditions are met.On the basis of the research conducted in this paper
the imaging algorithm
when the synchronization scheme based on antenna steering is employed and the flight path of the aircraft is arbitrary
can be further designed in the next step.
星机双基地SAR空间几何关系多普勒参数信号模型
spaceborne/airborne bi-static SARgeometrydoppler parameterssignal model
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