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    • 12. 发明申请
    • Omnidirectional Sonde and Line Locator
    • 全向探头和线定位器
    • US20110037472A1
    • 2011-02-17
    • US12902551
    • 2010-10-12
    • Mark S. OlssonRay MerewetherDavid A. CoxMichael J. MartinBradley D. BarnicoatThomas R. KolbRandall P. Hilton
    • Mark S. OlssonRay MerewetherDavid A. CoxMichael J. MartinBradley D. BarnicoatThomas R. KolbRandall P. Hilton
    • G01V3/08
    • G01V3/15
    • At least one antenna array including three mutually orthogonal antennas each sharing a common center point senses an electromagnetic signal emitted by a buried object such as a utility line, pipe or sonde. A circuit at least partially mounted in a housing is connected to the array and determines a location of the buried object by measuring signal strength and field angles in three dimensions without having to align the antenna array relative to the buried object while eliminating nulls and false peaks. A graphical user interface (GUI) has user-friendly icons, symbols, menus, numbers and graphical and auditory representation of signal strength. A SEARCH view indicates signal strength by showing a rotating strength indicator, a trace mode MAP view in which line location is shown by a line that moves side-to-side, and a sonde mode MAP view in which sonde location is shown by a moving line, pole and equator.
    • 每个共享公共中心点的包括三个相互正交的天线的至少一个天线阵列感测由诸如公用事业线,管道或探测器的掩埋物体发射的电磁信号。 至少部分地安装在壳体中的电路连接到阵列并且通过在三维中测量信号强度和场角来确定掩埋物体的位置,而不必相对于掩埋物体对准天线阵列,同时消除零峰和假峰 。 图形用户界面(GUI)具有用户友好的图标,符号,菜单,数字以及信号强度的图形和听觉表示。 SEARCH视图通过显示旋转强度指示器,跟踪模式MAP视图来指示信号强度,其中线路位置由侧向移动的线示出,以及探空模式MAP视图,其中探测器位置由移动 线,极和赤道。
    • 14. 发明授权
    • Compact line illuminator for locating buried pipes and cables
    • 用于定位埋管和电缆的紧凑型线照明器
    • US07557559B1
    • 2009-07-07
    • US11455563
    • 2006-06-19
    • Mark S. OlssonPriscilla S. McLaughlinJan Soukup
    • Mark S. OlssonPriscilla S. McLaughlinJan Soukup
    • G01R19/00G01V3/08
    • G01V3/081
    • A compact line illuminator for applying an oscillating signal to buried or otherwise inaccessible pipes, cables and conductors so that their location can be traced by detecting an electromagnetic signal emitted by these buried objects. The illuminator includes a circuit for generating a signal suitable for tracing a buried conductor and a holder for a portable power source that can energize the circuit. First and second leads each have a first end connected to the circuit and a second end connected to a corresponding mechanism such as an alligator clip for attaching to a buried conductor. A case encloses the circuit and the portable power source holder and is configured for having the first and second leads wrapped around an exterior of the case. Mechanisms are provided for holding the leads wrapped around the exterior of the case.
    • 一种紧凑型线照明器,用于将振荡信号施加到掩埋或其他不可接近的管道,电缆和导体,使得它们的位置可以通过检测由这些被埋物体发射的电磁信号来跟踪。 照明器包括用于产生适于跟踪掩埋导体的信号的电路和用于为电路通电的便携式电源的保持器。 第一和第二引线各自具有连接到电路的第一端和连接到相应机构的第二端,例如用于连接到掩埋导体的鳄鱼夹。 壳体包围电路和便携式电源支架,并且被配置为使第一和第二引线缠绕在外壳的外部。 提供用于保持围绕外壳外部缠绕的引线的机构。
    • 16. 发明授权
    • Omnidirectional sonde and line locator
    • 全向探头和定位仪
    • US07498816B1
    • 2009-03-03
    • US11932205
    • 2007-10-31
    • Mark S. OlssonRay MerewetherDavid A. CoxMichael J. MartinBradley D. BarnicoatThomas R. KolbRandall P. Hilton
    • Mark S. OlssonRay MerewetherDavid A. CoxMichael J. MartinBradley D. BarnicoatThomas R. KolbRandall P. Hilton
    • G01V3/11
    • G01V3/15
    • At least one antenna array including three mutually orthogonal antennas each sharing a common center point senses an electromagnetic signal emitted by a buried object such as a utility line, pipe or sonde. A circuit at least partially mounted in a housing is connected to the array and determines a location of the buried object by measuring signal strength and field angles in three dimensions without having to align the antenna array relative to the buried object while eliminating nulls and false peaks. A graphical user interface (GUI) has user-friendly icons, symbols, menus, numbers and graphical and auditory representation of signal strength. A SEARCH view indicates signal strength by showing a rotating strength indicator, a trace mode MAP view in which line location is shown by a line that moves side-to-side, and a sonde mode MAP view in which sonde location is shown by a moving line, pole and equator.
    • 每个共享公共中心点的包括三个相互正交的天线的至少一个天线阵列感测由诸如公用事业线,管道或探测器的掩埋物体发射的电磁信号。 至少部分地安装在壳体中的电路连接到阵列并且通过在三维中测量信号强度和场角来确定掩埋物体的位置,而不必相对于掩埋物体对准天线阵列,同时消除零峰和假峰 。 图形用户界面(GUI)具有用户友好的图标,符号,菜单,数字以及信号强度的图形和听觉表示。 SEARCH视图通过显示旋转强度指示器,跟踪模式MAP视图来指示信号强度,其中线路位置由侧向移动的线示出,以及探空模式MAP视图,其中探测器位置由移动 线,极和赤道。
    • 17. 发明授权
    • Locator with apparent depth indication
    • 具有明显深度指示的定位器
    • US07332901B2
    • 2008-02-19
    • US11106894
    • 2005-04-15
    • Mark S. OlssonMichael J. MartinChristoph H. MaierPaul G. Stuart
    • Mark S. OlssonMichael J. MartinChristoph H. MaierPaul G. Stuart
    • G01V3/08G01V3/12
    • G01R29/0871G01R29/0878G01V3/15
    • A human-portable utility locator system for locating and tracing a buried utility line characterized by an electromagnetic field emission. The locator may include a horizontal spaced sensor pair for detecting the horizontal field asymmetry of the emitted field in one or more independent frequency bands, which is employed to assist in determining an accurate “virtual depth” measurement for producing detection events. An event detector may be disposed to detect events corresponding to extremum in the B-field gradient with respect to time and a user interface (UI) coupled to the event detector signals the detected event to a user. In a preferred embodiment, one pair of spaced-apart 3D magnetic sensor arrays is disposed substantially orthogonal to another intermediate spaced-apart pair of sensors.
    • 一种人造便携式实用定位系统,用于定位和跟踪以电磁场发射为特征的埋地公用事业线。 定位器可以包括用于检测一个或多个独立频带中的发射场的水平场不对称性的水平间隔传感器对,其用于帮助确定用于产生检测事件的精确“虚拟深度”测量。 可以设置事件检测器以相对于时间检测对应于B场梯度中的极值的事件,并且耦合到事件检测器的用户界面(UI)将检测到的事件发信号给用户。 在优选实施例中,一对间隔开的3D磁传感器阵列基本上与另一中间间隔开的传感器对正交设置。
    • 18. 发明授权
    • Locator antenna with conductive bobbin
    • 定位天线带导电线轴
    • US08400154B1
    • 2013-03-19
    • US12367254
    • 2009-02-06
    • Mark S. OlssonStephen M. BenchRyan B. LevinRay Merewether
    • Mark S. OlssonStephen M. BenchRyan B. LevinRay Merewether
    • G01V3/08
    • G01V15/00
    • An antenna useful in an antenna array of a man-portable buried utility locator includes a flexible bobbin made of copper foil. The bobbin has a plurality of axially spaced grooves and an axially extending gap formed therein. A layer of insulation surrounds an outer surface of the bobbin. A conductive wire is disposed in the grooves and wound around the bobbin over the layer of insulation to form a plurality of axially spaced sub-coils. A layer of copper-foil tape having an insulating backing is wound about the conductive wire and has a second gap aligned with the gap in the bobbin. A layer of a low dielectric material is wound about the copper-foil tape. The antenna provides more antenna wire surface for an equivalent coil cross-sectional area, compared to prior art antennas, thus yielding greater sensitivity. The construction of the antenna provides a series of Faraday-shielded sub-coils, which yield a greater useful antenna bandwidth by moving the inherent resonance of each coil to a higher frequency. The construction of the antenna also reduces inherent winding capacitance and provides a self-shielding effect that further improves sensitivity.
    • 用于便携式埋地式实用定位器的天线阵列中的天线包括由铜箔制成的柔性线轴。 线轴具有多个轴向隔开的槽和在其中形成的轴向延伸间隙。 绝缘层围绕线轴的外表面。 导线布置在沟槽中并围绕线轴缠绕在绝缘层上以形成多个轴向隔开的子线圈。 具有绝缘背衬的一层铜箔带卷绕在导线上,并且具有与线轴中的间隙对准的第二间隙。 一层低介电材料缠绕在铜箔带上。 与现有技术的天线相比,天线为等效线圈横截面积提供更多的天线导线表面,从而产生更高的灵敏度。 天线的结构提供了一系列法拉第屏蔽子线圈,通过将每个线圈的固有谐振移动到更高的频率,产生更大的有用的天线带宽。 天线的结构也降低固有的绕组电容,并提供进一步提高灵敏度的自屏蔽效果。