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关于雷达的论文题目有哪些英文

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luojunli1983

雷达(radar)概念形成于20世纪初。雷达是英文radar的音译,为Radio Detection And Ranging的缩写,意为无线电检测和测距的电子设备。各种雷达的具体用途和结构不尽相同,但基本形式是一致的,包括:发射机、发射天线、接收机、接收天线,处理部分以及显示器。还有电源设备、数据录取设备、抗干扰设备等辅助设备。工作原理:1、测量距离实际是测量发射脉冲与回波脉冲之间的时间差,因电磁波以光速传播,据此就能换算成目标的精确距离。 2、测量目标方位是利用天线的尖锐方位波束测量。测量仰角靠窄的仰角波束测量。根据仰角和距离就能计算出目标高度。 3、测量速度是雷达根据自身和目标之间有相对运动产生的频率多普勒效应原理。雷达接收到的目标回波频率与雷达发射频率不同,两者的差值称为多普勒频率。从多普勒频率中可提取的主要信息之一是雷达与目标之间的距离变化率。当目标与干扰杂波同时存在于雷达的同一空间分辨单元内时,雷达利用它们之间多普勒频率的不同能从干扰杂波中检测和跟踪目标。
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被伤过的心

HF radar ship detection through clutter cancellationHigh-frequency over-the-horizon (HF-OTH) radar uses ionospheric refraction to detect targets at thousands of A timely surveillance of large areas requires relatively short dwells (coherent integration times) of less than 10 The resulting resolution in the Doppler Fourier transform is sufficient for detecting fast targets such as aircraft, but slow targets such as ships require integration times 12-30 seconds long to distinguish the ship peaks from the much more powerful ocean By modeling the first-order clutter as sinusoidal and subtracting it, we are able to expose ships in dwells as short as 3 seconds that would otherwise be masked by the mainlobe spread of the This technique is applied to data from the US Navy's relocatable OTHR (ROTHR) This approach is an alternative to superresolution techniques and may sometimes be more
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