ANORDNUNG UND VERFAHREN ZUR EINSTELLUNG DER HÖHE ÜBER SEE EINER RADARANTENNE
    3.
    发明公开
    ANORDNUNG UND VERFAHREN ZUR EINSTELLUNG DER HÖHE ÜBER SEE EINER RADARANTENNE 有权
    装置和方法用于设置金额超过雷达天线LAKE

    公开(公告)号:EP2993487A1

    公开(公告)日:2016-03-09

    申请号:EP15001948.7

    申请日:2015-07-01

    IPC分类号: G01S13/02 G01S7/40

    摘要: Die Erfindung betrifft eine Anordnung zur Einstellung der Höhe über See (S) einer Radarantenne, umfassend einen Antennenmast (2) eine Radarantenne (3), wobei die Radarantenne (3) an dem Antennenmast (2) höhenverschiebbar angeordnet ist, eine erste Eingangsschnittstelle (4), die ausgebildet ist, um ein erstes Sensorsignal (6a) zu empfangen, das zum Vorhandensein einer Subrefractions-Schicht über See (S) und zu einer Höhe und Dicke der Subrefractions-Schicht über See (S) korrespondiert, eine zweite Eingangsschnittstelle (5), die ausgebildet ist, um ein zweites Sensorsignal (7a) zu empfangen, das zum Vorhandensein einer Evaporation-Duct-Schicht über See (S) und zu einer Höhe und Dicke der Evaporation-Duct-Schicht über See (S) korrespondiert, eine Auswerteeinrichtung (9), die ausgebildet ist, um basierend auf dem ersten Sensorsignal (6a) und dem zweiten Sensorsignal (7a) eine Antennenhöhe über See (S) zu ermitteln, welche zu einer maximalen Detektionsreichweite der Radarantenne (3) korrespondiert, eine Ausgangsschnittstelle (10), die ausgebildet ist, um ein Steuersignal (10a) auszugeben, das das Verschieben der Radarantenne (3) auf die von der Auswerteeinrichtung (9) bestimmte Antennenhöhe bewirkt. Die Erfindung betrifft ferner ein entsprechendes Verfahren zur Einstellung der Höhe über See (S) einer Radarantenne.

    摘要翻译: 本发明涉及一种装置,用于调节上述雷达天线的海(S)的高度,其包括天线杆(2)是一个雷达天线(3),其中,所述雷达天线(3)上的天线塔架(2)被设置成可上下移动的,第一输入接口(4- ),其被设计为接收第一传感器信号(图6A),其对应(为一个Subrefractions层上方湖泊S的存在)和所述Subrefractions层的湖(S),第二输入接口的高度和厚度(5 ),其被设计成接收第二传感器信号(7a)的相应S)和一个高度和蒸发管层(超过湖S的厚度),以蒸发型管道层的存在(约湖, 评估其适于基于所述第一传感器信号(6a)的装置(9)和第二传感器信号(图7A),以确定天线高度海拔(S),这在雷达天线的最大检测范围 (3)对应,其由评估装置(9)的具体的天线高度对所述雷达天线(3)的变速的输出接口(10),其适于输出控制信号(10a)中。 本发明还涉及一种用于调节上述雷达天线的海(S)的高度的相应方法。

    METHOD TO CONTROL A SPACE INCLUDING A PLURALITY OF MOBILE OR NOT MOBILE STATIONS
    4.
    发明公开
    METHOD TO CONTROL A SPACE INCLUDING A PLURALITY OF MOBILE OR NOT MOBILE STATIONS 审中-公开
    控制程序具有移动或不移动台的各种面积

    公开(公告)号:EP2946225A1

    公开(公告)日:2015-11-25

    申请号:EP14706329.1

    申请日:2014-01-13

    发明人: RIZZI, Gaetano

    摘要: The invention describes a method and a system for controlling a space (1). The method comprises the steps of: performing measurements (m2, m22) of at least one physical parameter in a plurality of stations (2, 22) which are installed or mobile in said space; transmitting the measurements (m2, m22) to a control centre (3) interconnected to the stations (2, 22), each measurement (m2, m22) being associated with a position (S2, S22) of the station (2, 22) which performed the measurement (m2, m22); calculating, in the control centre (3), virtual measurements (v2, v22) of the physical parameter, associated with respective positions (S2, S22) of the stations (2, 22) in the space, the virtual measurement (v2) of each station (2) being calculated by means of the measurements (m22) of the physical parameters received from the other stations (22) in the space; transmitting the virtual measurement (v2, v22) to each station (2, 22) in the respective position (S2, S22).

    IMAGE PROCESSING APPARATUS, RADAR APPARATUS, IMAGE PROCESSING METHOD, AND IMAGE PROCESSING PROGRAM
    6.
    发明公开
    IMAGE PROCESSING APPARATUS, RADAR APPARATUS, IMAGE PROCESSING METHOD, AND IMAGE PROCESSING PROGRAM 审中-公开
    图像处理装置,雷达装置,图像处理和图像处理程序

    公开(公告)号:EP2790032A4

    公开(公告)日:2015-07-15

    申请号:EP12855639

    申请日:2012-12-04

    发明人: NISHIYAMA KOJI

    摘要: An image processing device which generates an image where a target object can be discriminated from an object other than the target object. An image processor 15, for echo signals read from a sweep memory 14, calculates a ratio of echo signals indicating a predetermined level or higher among the echo signals of a predetermined number of samples, and generates image data having a display element according to the calculated ratio. This ratio indicates a lower value as it indicates an object more isolated, such as a ship, and a higher value as it indicates an object existing as a larger mass, such as inland. The image processor 15 acquires color values (values of R, G and B) according to the calculated ratio. Since the target object, such as a ship, is an isolated object and the ratio becomes low, the color values indicate red, and since inland is an object existing as a large mass and the ratio becomes high, the color values indicate green.

    Vehicle position validation
    7.
    发明公开
    Vehicle position validation 审中-公开
    Fahrzeugpositionsvalidierung

    公开(公告)号:EP2840357A1

    公开(公告)日:2015-02-25

    申请号:EP14171200.0

    申请日:2014-06-04

    发明人: Ballou, Philip J.

    IPC分类号: G01C21/00 G01S7/22

    摘要: Methods and computer-readable media are described herein for providing an automated validation of vehicle positioning and corresponding error notification. According to various aspects, a first position of a vehicle may be determined using a first positioning system. A second position of the vehicle may be determined using a second positioning system. An offset between the first and second positions of the vehicle may be determined. If the offset exceeds a threshold offset, a notification may be provided to indicate a potential error in the position of the vehicle.

    摘要翻译: 本文描述了方法和计算机可读介质,用于提供车辆定位和对应的错误通知的自动验证。 根据各方面,可以使用第一定位系统来确定车辆的第一位置。 可以使用第二定位系统来确定车辆的第二位置。 可以确定车辆的第一和第二位置之间的偏移。 如果偏移超过阈值偏移,则可以提供通知以指示车辆位置的潜在误差。

    SYSTEM FOR A MARINE VESSEL OR A MARINE INSTALLATION
    10.
    发明授权
    SYSTEM FOR A MARINE VESSEL OR A MARINE INSTALLATION 有权
    SYSTEM FOR容器或国际海事组织

    公开(公告)号:EP2070068B1

    公开(公告)日:2011-12-14

    申请号:EP07803480.8

    申请日:2007-09-13

    IPC分类号: G08G3/02

    摘要: A system for a vehicle is provided for allowing a user of the vehicle or installation to obtain advanced and up-to-date information about the surroundings of the vehicle or installation and the vehicle or installation itself. The system may be located on a marine vessel and it integrates information from a number of different information sources, located both on and off the vessel, including information from advanced radar and sonar subsystems on the ship, information from conventional instruments and sensors and information from onshore and offshore installations and EO satellites accessed via a control centre onshore. The system may communicate with the control centre via a communication satellite and/or wireless Internet, if available. A data processing apparatus for processing and presenting the data is also provided. The data is received, processed and presented in three dimensions in space and updated in real time or near real time such that time provides a fourth dimension to the data. A graphical user interface for presenting the data is also provided. The graphical user interface provides functionality for reporting an error in the system if the end user's own observations do not match the presented data. Additionally, a system for collecting data comprising more than one ship, the control centre and means for the ships and the control centre to communicate is provided. The system comprises a catalogue and storage network for storing collected data. All data is stored with an associated quality measure of the data.