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    • 2. 发明申请
    • Packaging machine
    • 包装机
    • US20050262805A1
    • 2005-12-01
    • US10505091
    • 2004-01-13
    • Dieter Nagel
    • Dieter Nagel
    • B65B59/00B65B65/00
    • B65B65/00B65B59/00
    • A packaging machine has a machine region and a production region which are separated by a partition. The partition has openings for components which project from the machine region into the production region. In accordance with the invention, the partition is formed from one single plate which has several blind holes on its side facing the machine region, whose closed bottom can be removed to form openings. The bottom on the side facing the production region forms a smooth, continuous, depression-free surface with the adjoining regions of the surface of the plate.
    • 包装机具有由隔板分开的机器区域和生产区域。 分隔件具有从机器区域投射到生产区域中的部件的开口。 根据本发明,隔板由一个单板构成,该板在其面对机器区域的一侧具有多个盲孔,其封闭底部可被移除以形成开口。 面向生产区域的一侧的底部与板的表面的相邻区域形成平滑,连续,无凹陷的表面。
    • 8. 发明授权
    • Method for HPRF-radar measurement
    • HPRF雷达测量方法
    • US06686871B2
    • 2004-02-03
    • US10303057
    • 2002-11-25
    • Hermann RohlingWilhelm GuenerHans HommelDieter Nagel
    • Hermann RohlingWilhelm GuenerHans HommelDieter Nagel
    • G01A1332
    • G01S7/2923G01S7/288G01S13/26G01S13/524G01S2007/2883
    • In a method for HPRF-radar measurement of the range and Doppler frequency of at least one target, a transmit signal is generated which consists of two pulse sequences that are interleaved on a pulse to pulse basis, and have the same pulse repetition frequency PRF and the same transmit frequency. The pulses of a first one of the two pulse sequences have a linearly increasing phase value with a fixed phase difference &phgr;1n (greater than zero) from pulse to pulse with &phgr;1n≧0, while the pulses of the second pulse sequence have a linear increasing phase value with a fixed phase difference &phgr;2n which differs from &phgr;1n. The two received base band signals of each individual pulse sequence are Fourier transformed, and the amplitude peaks of the resulting two Fourier spectra are determined. The amplitude peaks of the two Fourier spectra are then clustered to determine pairs of spectral lines of a Doppler frequency shift of Δ ⁢   ⁢ f = ϕ 2 ⁢ n - ϕ 1 ⁢ n 2 ⁢ π · PRF . The target Doppler frequency is calculated based on two Doppler frequencies of a previously determined spectral line pair, and the target range is calculated based on the phase difference between the two spectral lines of a previously determined spectral line pair.
    • 在用于对至少一个目标的范围和多普勒频率进行HPRF雷达测量的方法中,产生发射信号,其由以脉冲为基础交织的两个脉冲序列组成,并且具有相同的脉冲重复频率PRF和 发射频率相同。 两个脉冲序列中的第一个的脉冲具有线性增加的相位值,具有从脉冲到脉冲的固定相位差phi1n(大于零),而phi1n> = 0,而第二脉冲序列的脉冲具有线性增加 相位值具有与phi1n不同的固定相位差phi2n。 将每个单个脉冲序列的两个接收基带信号进行傅里叶变换,并且确定所得到的两个傅里叶谱的幅度峰值。 然后将两个傅立叶频谱的幅度峰聚合以确定多普勒频移的谱线对,基于先前确定的谱线对的两个多普勒频率来计算目标多普勒频率,并且基于 先前确定的谱线对的两个谱线之间的相位差。
    • 10. 发明授权
    • Radar process for classifying or identifying helicopters
    • 用于分类或识别直升机的雷达过程
    • US07046192B2
    • 2006-05-16
    • US10800692
    • 2004-03-16
    • Dieter Nagel
    • Dieter Nagel
    • G01S7/41G01S13/00
    • G01S7/412G01S13/24
    • A radar method of classifying generating or identifying helicopters, by generating a one-dimensional distance profile of the helicopter to be classified or to be identified by measuring the radar each of the helicopter fuselage, the radar echo of the rotor head of the main rotor and/or the radar echo of the main axis, and the radar echo of the rear rotor axis; determines the aspect angles in the azimuth and elevation directions relative to the axis of the radar antenna and the method also determines helicopter parameters from the measured radar echoes. The determined helicopter parameters are compared with stored helicopter parameters for different helicopter types.
    • 通过生成要分类的直升机的一维距离轮廓或通过测量每个直升机机身的雷达,主转子的转子头的雷达回波和 /或主轴的雷达回波和后转子轴的雷达回波; 确定相对于雷达天线轴的方位角和仰角方向角度,该方法还根据测得的雷达回波确定直升机参数。 将确定的直升机参数与不同直升机类型的存储的直升机参数进行比较。