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针对逆合成孔径雷达波束内多个平稳飞行目标在距离上重叠的情况探讨多运动目标成像.首先建立多目标回波模型,由分析得出某一目标的回波在一个距离门内对应一组线性调频信号、信号参数在不同距离门内呈规律性变化的结论.据此提出一种基于Radon-Wigner变换(RWT)对多目标信号进行参数估计及分离的多目标成像算法.仿真结果说明了该方法的有效性. 相似文献
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郑华盛 《南昌航空工业学院学报》1998,(1):8-11
本文将文[1]所构造的差分格式推广到方程组情形。数值实验结果表明,格式具有高效分辨激波的能力。 相似文献
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本文构造了一维非线性双曲型守恒方程的一类MmB差分格式,并推广到方程组情形。数值计算结果表明,格式具有高分辨率且不会产生数值为振荡。 相似文献
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本文系统阐述了邓小平同志指导党史研究、正确处理历史遗留问题的六大原则:“向前看”原则;“宜粗不宜细”原则;“有错必纠”原则;客观性原则;分析个人责任与分析复杂背景相结合的原则;总结成功经验与汲取失败教训相结合的原则。文章深入分析了上述原则的内涵、要求及其意义。 相似文献
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Yong-Liang Wang Zheng Bao Ying-Ning Peng 《IEEE transactions on aerospace and electronic systems》2000,36(2):609-620
Space-time adaptive processing (STAP) has been widely discussed for airborne radar systems to improve the system performance of detecting targets. This is especially true for airborne early warning (AEW) radar, which should find long-range and small radar cross section (RCS) targets such as the stealth aircraft and missiles. However, in existing airborne radar literature, STAP is mainly considered for clutter and jamming rejection in side-looking airborne radar (SLAR) applications. There have been fewer discussions on airborne radar with non-side-ways looking array radar (non-SLAR). The STAP of non-SLAR such as forward looking array radar is also very important and can not be avoided for airborne radar to detect targets in all directions. The STAP of the non-SLAR is studied here. A scheme has been proposed, which is processed by the way of STAP combined with multiple staggered medium pulse repetition frequencies (PRFs). We further study the selection of PRFs in order to make the scheme more available for non-SLAR radar. We analyze two typical non-SLAR cases, i.e., inclined-sideways looking array and forward looking array. We examine this scheme by comparing the performances of three processing systems under the criteria of range-velocity blind zone minimization. Computer simulation results show the multiple-PRFs STAP scheme is feasible for non-SLAR and can be applied to phased-array AEW radar systems 相似文献
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Yihua Zheng Anthony T.Y. Lui Mei-Ching Fok Brian J. Anderson Pontus C. Brandt Donald G. Mitchell 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2008,41(8):1234-1242
One essential component of magnetosphere and ionosphere coupling is the closure of the ring current through Region 2 field-aligned current (FAC). Using the Comprehensive Ring Current Model (CRCM), which includes magnetosphere and ionosphere coupling by solving the kinetic equation of ring current particles and the closure of the electric currents between the two regions, we have investigated the effects of high latitude potential, ionospheric conductivity, plasma sheet density and different magnetic field models on the development of Region 2 field-aligned currents, and the relationship between R2 FACs and the ring current. It is shown that an increase in high latitude potential, ionospheric conductivity or plasma sheet density generally results in an increase in Region 2 FACs’ intensity, but R2 FACs display different local time and latitudinal distributions for changes in each parameter due to the different mechanisms involved. Our simulation results show that the magnetic field configuration of the inner magnetosphere is also an important factor in the development of Region 2 field-aligned current. More numerical experiments and observational results are needed in further our understanding of the complex relationship of the two current systems. 相似文献