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    • 61. 发明授权
    • Co-located antennas
    • 同轴天线
    • US07286091B2
    • 2007-10-23
    • US11256226
    • 2005-10-21
    • Kuo-Chiang ChenThomas D. Barber
    • Kuo-Chiang ChenThomas D. Barber
    • H01Q1/04G01V3/28
    • G01V13/00G01V3/30H01Q7/00H01Q7/08H01Q21/24
    • Techniques for implementing antenna configurations with substantially co-located axes are disclosed. A method for constructing co-located antennas includes winding a first antenna on a support, the first antenna having a first magnetic dipole in a first orientation; and winding a second antenna on the support through a first set of openings in the support, the second antenna having a second magnetic dipole in a second orientation, wherein the first orientation is different from the second orientation, and wherein a center of the first magnetic dipole substantially co-locates with a center of the second magnetic dipole.
    • 公开了用于实现具有基本上同位置的轴的天线配置的技术。 用于构造同位置天线的方法包括:将第一天线缠绕在支撑件上,所述第一天线具有第一方位的第一磁偶极子; 并且通过所述支撑件中的第一组开口将第二天线缠绕在所述支撑件上,所述第二天线具有第二取向的第二磁偶极子,其中所述第一取向不同于所述第二取向,并且其中所述第一磁体的中心 偶极子与第二磁偶极子的中心基本上共定位。
    • 62. 发明授权
    • RF communication device and method of using it and antenna construction for use in the device and method
    • RF通信设备及其使用方法和天线结构用于设备和方法
    • US07202828B2
    • 2007-04-10
    • US11159996
    • 2005-06-23
    • Ilan ZehngutOvadia GrossmanHaim Slotin
    • Ilan ZehngutOvadia GrossmanHaim Slotin
    • H01Q1/04G08B23/00
    • H01Q1/2233H01Q1/04H01Q1/22
    • A device comprising a RF transmitter, a casing for the RF transmitter and, connected to and extending from the RF transmitter, an antenna for radiating RF signals produced by the RF transmitter, the antenna comprising an elongated member having a first portion and a second portion each of which comprises a first conductor, a second conductor and an insulator between the first conductor and the second conductor, and, between the first portion and the second portion, a third portion comprising a first conductor, wherein the first conductor of each of the first portion, the second portion and the third portion is a common conductor connected to the RF transmitter and wherein the second conductor of the first portion and the second conductor of the second portion are electrically isolated from one another.
    • 一种包括RF发射器的装置,用于所述RF发射器的壳体,并且连接到所述RF发射器并且从所述RF发射器延伸,用于辐射由所述RF发射器产生的RF信号的天线,所述天线包括细长构件,所述细长构件具有第一部分和第二部分 其中每个包括第一导体,第二导​​体和在第一导体和第二导体之间的绝缘体,并且在第一部分和第二部分之间,包括第一导体的第三部分,其中, 第一部分,第二部分和第三部分是连接到RF发射器的公共导体,并且其中第一部分的第二导体和第二部分的第二导体彼此电隔离。
    • 67. 发明授权
    • Submerged object detection and classification system
    • 淹没物体检测和分类系统
    • US5886661A
    • 1999-03-23
    • US48101
    • 1993-04-16
    • Richard W. HarrisonJohn F. Scarzello
    • Richard W. HarrisonJohn F. Scarzello
    • G01S7/41G01S13/32G01S13/88H01Q1/04H01Q1/40H01Q9/30G01S13/04
    • G01S13/88G01S13/32G01S7/411H01Q1/04H01Q1/40H01Q9/30
    • A detection and classification system for underwater objects uses a transting unit and a receiving unit. The transmitting unit comprises a waveform generator, a power amplifier, and a transmitting antenna. The receiving unit comprises a receiving antenna, a pre-amplifier, a first harmonic suppressor, a digitizer, and a computer. The transmitting unit radiates an analog electromagnetic wave signal into a conductive medium such as seawater which the receiving unit detects and analyzes by a differential spectral analysis after conversion of the signal into binary code.The system uses a signal-processing method which includes the steps of determining the size of the underwater object to be detected, transmitting an electromagnetic wave with a wavelength proportioned to the size of the object, performing a spectral analysis of the received signal, performing a spectral analysis at a different time or different location, comparing the two spectra performed, and analyzing the difference between the two spectra.
    • 水下物体的检测和分类系统使用发射单元和接收单元。 发送单元包括波形发生器,功率放大器和发送天线。 接收单元包括接收天线,前置放大器,第一谐波抑制器,数字转换器和计算机。 发射单元将模拟电磁波信号辐射到诸如海水的导电介质中,接收单元在将信号转换成二进制码之后通过差分光谱分析检测和分析。 该系统使用信号处理方法,该方法包括以下步骤:确定要检测的水下物体的大小,发送具有与物体大小成比例的波长的电磁波,对接收信号进行光谱分析,执行 在不同时间或不同位置的光谱分析,比较所执行的两个光谱,并分析两个光谱之间的差异。