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    • 2. 发明授权
    • Radiating coaxial radio-frequency cable
    • 辐射同轴射频电缆
    • US06426685B2
    • 2002-07-30
    • US09816382
    • 2001-03-26
    • Erhard MahlandtMark Davies
    • Erhard MahlandtMark Davies
    • H01Q1320
    • H01Q13/203
    • A radiating coaxial radio-frequency cable is specified, that comprises an inner conductor, a dielectric surrounding the latter and a tubular outer conductor disposed above the latter and concentric with the inner conductor. In the outer conductor, mutually separated openings (5) are provided that are disposed in a mutually offset manner in the circumferential direction of the cable and, in the longitudinal direction of the latter, are disposed along surface lines extending mutually in parallel in rows (R1, R2, R3) extending over the entire length of the cable. All the openings (5) extend essentially in the circumferential direction of the cable. For as broadband an operation of the cable as possible, in a first row (R1 ) for operating a frequency range used in mobile radio, openings (5) are disposed in groups (G) in a constantly repeating pattern whose first openings (5), viewed in each case in the axial direction of the cable, are at a mutual spacing (A1) corresponding to half the wavelength of the lowest frequency to be transmitted in the frequency range. In addition, in each group (G), further openings (5) are provided to take account of integral multiples of the lowest frequency to be transmitted in the frequency range. Further openings (5) are situated in at least one second row (R2 ) on a surface line other than that of the openings (5) of the first row (R1) and are disposed over the entire length of the cable at mutual constant spacing that is less than half the wavelength of the highest frequency to be transmitted over the cable.
    • 规定了辐射同轴射频电缆,其包括内导体,围绕其的电介质和布置在其上方的管状外导体,并与内导体同心。 在外导体中,设置相互分开的开口(5),它们沿着电缆的圆周方向以相互偏移的方式设置,并且沿其纵向方向沿着彼此平行延伸的行线设置(行 R1,R2,R3)在电缆的整个长度上延伸。 所有开口(5)基本上在电缆的圆周方向上延伸。 对于作为宽带的电缆的操作,在用于操作在移动无线电中使用的频率范围的第一行(R1)中,开口(5)以不断重复的模式被布置成组(G),其中第一开口(5) 在每个情况下沿着电缆的轴向观察,处于与在频率范围内要传输的最低频率的波长的一半相对的间隔(A1)。 此外,在各组(G)中,提供进一步的开口(5)以考虑在频率范围内要发送的最低频率的整数倍。 另外的开口(5)位于除了第一排(R1)的开口(5)之外的表面线上的至少一个第二排(R2)中,并且以相互恒定间隔设置在电缆的整个长度上 小于通过电缆传输的最高频率的波长的一半。
    • 5. 发明授权
    • Geophysical data processing systems
    • 地球物理数据处理系统
    • US08473264B2
    • 2013-06-25
    • US12863754
    • 2008-01-21
    • Gary James BarnesJohn Morris LumleyMark DaviesJoseph Jean Barraud
    • Gary James BarnesJohn Morris LumleyMark DaviesJoseph Jean Barraud
    • G06F17/10
    • G01V7/16
    • A method of processing geophysical data including at least measured potential field data from a potential field survey of a surveyed region of the earth to provide a representation of the geology of said surveyed region, the method comprising generating a first model of said surveyed region by fitting data predicted by said first model to said measured data for a specified frequency range; predicting full range potential field data for all measured frequencies using said generated first model; comparing said full range predicted data to said measured potential field data to provide full range residual data representing a difference between the full range predicted data and the full range measured data, and interpreting said full range residual data to provide a representation of said geology of said surveyed region.
    • 一种处理地球物理数据的方法,所述方法包括至少测量的来自地球测量区域的潜在现场勘测的势场数据,以提供所述被测区域的地质的表示,所述方法包括通过拟合来生成所述被测区域的第一模型 由所述第一模型预测的数据对于指定频率范围的所述测量数据; 使用所述生成的第一模型预测所有测量频率的全范围电势场数据; 将所述全范围预测数据与所述测量的电位场数据进行比较,以提供表示全范围预测数据与全范围测量数据之间的差异的全范围残差数据,以及解释所述全范围残差数据以提供所述全范围预测数据的所述地质学 受访地区。