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    • 81. 发明授权
    • Automatic ground marking method and apparatus
    • 自动地面标记方法和装置
    • US07029199B2
    • 2006-04-18
    • US10669555
    • 2003-09-25
    • Ian MayfieldMatthew J Johnson
    • Ian MayfieldMatthew J Johnson
    • E01C23/07
    • A63C19/06A63C19/08G05D1/0236G05D1/028
    • An automatic ground marking apparatus including a carriage (1) responsive to carriage control signals for traversing the ground (5), the carriage having a controllable steering and drive system, a controllable marking system and a position determining system (6) arranged to determine the position of the carriage. The ground marking apparatus further includes a processor (8) responsive to the position determining system and operatively executing a software product for generating the carriage control signals to cause the carriage (1) to mark out a predetermined sign (14) on the ground. The position determining system (6) suitably employs a laser beam (4) and reflective tracking prism (2), and the predetermined sign may be defined by data points stored in a file (9) accessed by the processor (8) (FIG. 1).
    • 一种自动接地标记装置,包括响应于用于横穿地面(5)的滑架控制信号的滑架(1),具有可控转向和驱动系统的滑架,可控制的标记系统和位置确定系统(6) 马车的位置 地面标记装置还包括响应位置确定系统并可操作地执行软件产品的处理器(8),用于产生滑架控制信号以使滑架(1)在地面上标出预定的符号(14)。 位置确定系统(6)适当地使用激光束(4)和反射跟踪棱镜(2),并且预定符号可以由存储在由处理器(8)访问的文件(9)中的数据点定义(图3)。 1)。
    • 82. 发明申请
    • Road surface sensor and monitoring control method for road surface
    • 路面传感器及路面监控方法
    • US20050047864A1
    • 2005-03-03
    • US10923800
    • 2004-08-24
    • Tadayuki YamadaKouji YamamotoMakoto Goto
    • Tadayuki YamadaKouji YamamotoMakoto Goto
    • E01C11/26E01C23/07G01N21/17G01N21/47G01W1/00G01W1/14G08B19/02E01C7/00
    • G01W1/14G08B19/02
    • In order to melt snow and prevent freezing without consuming energy wastefully and to monitor a road surface state remotely, a road surface sensor includes: a rotating stand provided so as to be reciprocatingly rotatable upward on the road surface; a snow-melting/freezing heat quantity measurement dummy road surface having an electric heater buried therein and to use as a reference road surface for heat quantity measurement to derive a melting heat quantity for snow falling on the surface and a heat quantity required for freezing prevention; a reference light irradiating/reflected light receiving device that is attached so as to be rotatable with the rotating stand; a space reflected light receiving device; a non-contact road temperature measuring device; a non-contact snow cover depth measuring device; a road surface image pickup device; and a moisture sensor. The reference light irradiating/reflected light receiving device includes a reference light irradiating device for irradiating reference light and a reflected light receiving device for receiving reflected light of the reference light from the road surface, and the reflected light receiving device separates and receives only reflected light of the reference light out of the reflected light from the road surface.
    • 为了融雪,防止冻结而不浪费能量消耗能量并远程监测路面状态,路面传感器包括:设置成在路面上向上可往复移动的旋转支架; 具有埋入其中的电加热器的雪融冰冷冻热量测量虚拟路面,并且用作用于热量测量的基准路面,以导出雪落在地面上的雪的熔化热量和防止冷冻所需的热量 ; 参考光照射/反射光接收装置,其被安装成可旋转的支架旋转; 空间反射光接收装置; 非接触式道路温度测量装置; 非接触式雪盖深度测量装置; 路面图像拾取装置; 和湿度传感器。 参考光照射/反射光接收装置包括用于照射参考光的参考光照射装置和用于接收来自路面的参考光的反射光的反射光接收装置,并且反射光接收装置仅分离和接收反射光 的来自路面的反射光的参考光。
    • 84. 发明授权
    • Pavement-vehicle convoy
    • 路面车辆车队
    • US5921708A
    • 1999-07-13
    • US940331
    • 1997-09-30
    • Roland GrundlAlfred Ulrich
    • Roland GrundlAlfred Ulrich
    • E01C19/48G05D1/00G05D1/02E01C23/07B60T7/16
    • G05D1/0272E01C19/48G05D1/0293E01C2301/04G05D1/024G05D1/0255G05D1/0257G05D2201/0202
    • A pavement-vehicle convoy for applying a cover layer of a paving material on a traffic area, such as a roadway. The convoy has at least two independently driven units with at least one of the units being a road-surface finisher and each other unit in the convoy being either a finisher or a charger. One of the units is a command unit that has a remote control used to help maintain a predetermined desired longitudinal distance between the convoy units and which can be used to help maintain a predetermined desired lateral distance from a reference line. The remote control includes a speed correcting device that utilizes signals from a distance sensor on at least one of the units that is used to detect changes from the desired distance so that speed correction signals can be generated and provided to an operation control device on at least one of the units. A remote-control link is provided between the operation control device of the command unit and the operation control device of other convoy units so that operation-related signals can be communicated to a master travel controller that controls a travelling mechanism of the command unit and a travelling mechanism of the other convoy units. Control preferably is effected from the driver's cabin of the command unit to the driver's cabin and operation control device of all other convoy units.
    • 用于在交通区域(例如道路)上施加铺路材料的覆盖层的路面车辆车队。 车队至少有两个独立驱动的单元,其中至少一个单元是道路表面修整机,车队中的每个单元都是修整机或充电器。 其中一个单元是具有遥控器的命令单元,用于帮助保持车队单元之间预定的期望的纵向距离,并且可以使用该遥控器来帮助保持与参考线的预定的期望横向距离。 遥控器包括速度校正装置,其利用来自距离传感器的信号,所述信号用于检测来自期望距离的变化的单元中的至少一个,使得可以至少产生速度校正信号并将其提供给操作控制装置 其中一个单位。 在命令单元的操作控制装置和其他车队单元的操作控制装置之间提供遥控链路,使得操作相关信号可以传送到控制命令单元的行进机构的主行程控制器,以及 其他车队单位的行车机制。 控制优选地从命令单元的驾驶室到所有其他车队单元的驾驶室和操作控制装置。
    • 87. 发明授权
    • Method and apparatus for road hole repair
    • 道路修理方法及装置
    • US5364205A
    • 1994-11-15
    • US115819
    • 1993-09-03
    • Jerome Lemelson
    • Jerome Lemelson
    • B05B12/12B28B13/02B28B17/00E01C23/06E01C23/07
    • B28B13/021B05B12/122B28B17/00E01C23/06E01C23/07
    • Automated system for pothole repair including apparatus mounted upon a vehicle for detecting the presence of a pothole and alerting and/or slowing and/or halting the vehicle responsive to such detection. Sensors measure the size of the pothole and/or monitor the filling of the pothole to automatically terminate the filling operation when completed. The sensor outputs are used to determine either level of repair material or volume thereof. The sensors and dispenser (or dispensers) are automatically moved to the desired locations. The filled cavity may be compacted and/or cured. Filler material may be selectively delivered from one or more than one dispensing nozzle.
    • 用于坑坑修复的自动化系统,包括安装在车辆上的装置,用于检测坑的存在并响应于这种检测而警告和/或减慢和/或停止车辆。 传感器测量坑洞的大小和/或监视坑洞的填充,以在完成时自动终止填充操作。 传感器输出用于确定修理材料的水平或其体积。 传感器和分配器(或分配器)自动移动到所需的位置。 填充的空腔可以被压实和/或固化。 可以从一个或多于一个的分配喷嘴选择性地递送填料。
    • 89. 发明授权
    • Method and apparatus for dispensing a substance to a work area
    • 将物质分配到工作区域的方法和装置
    • US4878598A
    • 1989-11-07
    • US44302
    • 1987-04-30
    • Dolph W. Ruschhaupt, Jr.
    • Dolph W. Ruschhaupt, Jr.
    • B05B12/02E01C19/17E01C23/07G05D7/06
    • E01C23/07B05B12/02E01C19/17G05D7/0623
    • A method and apparatus for dispensing a substance to a work area in which the method includes the steps of determining the quantity of the substance to be dispensed substantially evenly to the work area, calculating the rate of dispensing the substance to the work area for the quantity determined in the determining step to achieve substantially even dispensing, dispensing the substance to the work area at the calculated rate during movement over the work area, and adjusting the rate of dispensing at intervals during such movement to minimize error in such dispensing. The apparatus has a source of the substance to be dispensed, a dispensing mechanism for dispensing the substance from the source to a work area during movement thereover, a control mechanism operable to control the rate of dispensing the substance from the source, and a control system operable to detect the quantity of substance remaining in the source at intervals during movement over the work area and to adjust the rate of such dispensing so that the substance can be substantially evenly dispensed to said work area.
    • 一种用于将物质分配到工作区域的方法和装置,其中所述方法包括以下步骤:基本上均匀地将待分配的物质的量确定到工作区域,计算将物质分配到工作区域的数量 在确定步骤中确定以实现基本均匀的分配,在移动过程中以计算的速率将物质分配到工作区域,并且在这种运动期间间隔地调整分配速率,以使这种分配中的误差最小化。 该装置具有要分配的物质的源,用于在物体的运动期间将物质从源传送到工作区域的分配机构,可操作以控制从源引发物质的速率的控制机构,以及控制系统 可操作地在工作区域内移动期间间隔地检测源中剩余的物质的量,并调整这种分配的速率,使得物质可以基本均匀地分配到所述工作区域。