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    • 61. 发明公开
    • ANTENNA
    • 天线
    • EP3322035A1
    • 2018-05-16
    • EP16821151.4
    • 2016-06-07
    • Furuno Electric Co., Ltd.
    • HATAYA, MitsuhikoYANO, KojiSAKAI, Toshifumi
    • H01Q3/08H01Q1/12
    • H01Q1/1264H01Q1/12H01Q1/362H01Q1/405H01Q1/48H01Q3/08
    • Provided is a detailed configuration regarding a method of transmitting a driving force etc., of an antenna adjustable of an elevation-depression angle and an antenna circumferential angle. A weather radar antenna 1 may include an antenna unit 5, a column 40, an elevation-depression-direction drive transmission shaft 41, and a circumferential-direction drive transmission shaft 46. The antenna unit 5 may receive at least an electromagnetic wave. The column 40 may support the antenna unit 5. The elevation-depression-direction drive transmission shaft 41 may transmit a driving force of an elevation-depression-direction drive motor to the antenna. The circumferential-direction drive transmission shaft 46 may transmit a driving force of a circumferential-direction drive motor 23 to the antenna unit 5.
    • 提供了关于仰角俯角和天线周向角度可调的天线的传递驱动力等的方法的详细结构。 气象雷达天线1可以包括天线单元5,立柱40,仰俯方向驱动传动轴41和圆周方向驱动传动轴46.天线单元5可以至少接收电磁波。 柱40可以支撑天线单元5.升降方向驱动传递轴41可以将升降方向驱动马达的驱动力传递到天线。 周向驱动传动轴46可以将周向驱动马达23的驱动力传递至天线单元5。
    • 63. 发明公开
    • STATE CALCULATING APPARATUS, STATE CALCULATING METHOD AND STATE CALCULATING PROGRAM
    • 状态计算装置,状态计算方法和状态计算程序
    • EP3239741A1
    • 2017-11-01
    • EP15872602.6
    • 2015-11-26
    • Furuno Electric Co., Ltd.
    • NAKAMURA, HirakuFUJISAWA, NaomiTODA, HiroyukiNAGANO, Takeshi
    • G01S19/54
    • G01S19/55G01C21/165G01S5/0284G01S13/84G01S19/49G01S19/54
    • A small-sized state calculating device which may acquire a highly-precise state calculation value is provided. The state calculating device 10 may include antennas 100A, 100B and 100C, receiving parts 111A, 111B and 111C, a phase difference calculating part 12 and an operation part 13. The receiving parts 111A, 111B and 111C may calculate carrier phase measurements PY A , PY B and PY C of GNSS signals received by the antennas 100A, 100B and 100C, respectively. The phase difference calculating part 12 may set the antennas 100A, 100B and 100C to be switched between a master antenna and a slave antenna, and calculate the plurality of inter-antenna phase differences Δζ AB , Δζ BC and Δζ CA , for every combination of the master antenna and the slave antenna, using the carrier phase measurements PY A , PY B and PY C . The operation part 13 may calculate an attitude angle AT using the plurality of inter-antenna phase differences Δζ AB , Δζ BC and Δζ CA .
    • 提供了可以获取高精度状态计算值的小型状态计算装置。 状态计算装置10可以包括天线100A,100B和100C,接收部分111A,111B和111C,相位差计算部分12和操作部分13.接收部分111A,111B和111C可以计算载波相位测量值PYA,PYB 和由天线100A,100B和100C分别接收的GNSS信号的PYC。 相位差计算部12可以将天线100A,100B和100C设置为在主天线和从属天线之间切换,并且针对主天线的每个组合计算多个天线间相位差ΔζAB,ΔζBC和ΔζCA 和从属天线,使用载波相位测量PYA,PYB和PYC。 操作部13可以使用多个天线间相位差ΔζAB,ΔζBC和ΔζCA来计算姿态角AT。
    • 65. 发明公开
    • OWN-SHIP SURROUNDING INFORMATION DISPLAY DEVICE AND OWN-SHIP SURROUNDING INFORMATION DISPLAY METHOD
    • 船舶周围信息显示装置和船舶周围信息显示方法
    • EP3196595A1
    • 2017-07-26
    • EP15842695.7
    • 2015-08-04
    • Furuno Electric Co., Ltd.
    • MORITA, YuKUBOTA, YugoKAIDA, Hidetoshi
    • G01C21/20B63B49/00G01S7/12G01S13/93G08G3/02
    • A ship vicinity information display device is provided, which is capable of displaying a position etc. of a destination of another ship based on information of the destination obtained from the other ship, in a mode which is intuitively easy to understand. A radar indicator may include a display unit 15, an AIS interface, and processing circuitry. The display unit 15 may be capable of displaying an image of a situation in the vicinity of one ship. The AIS interface may receive the information of the destination of the other ship. The processing circuitry may acquire a longitude and latitude of the destination based on the destination information of the other ship and graphically display at least one of the position of the destination of the other ship and a direction of the destination from the other ship (other-ship destination symbol S3), on the display unit 15.
    • 提供一种船舶附近信息显示装置,其能够以直观容易理解的模式,基于从其他船舶获得的目的地的信息来显示另一船的目的地的位置等。 雷达指示器可以包括显示单元15,AIS接口和处理电路。 显示单元15可以能够显示一艘船附近的情况的图像。 AIS接口可以接收另一艘船的目的地的信息。 处理电路可以基于另一艘船的目的地信息来获取目的地的经度和纬度,并以图形方式显示另一艘船的目的地的位置和来自另一艘船的目的地的方向中的至少一个 出货目的地符号S3)显示在显示单元15上。
    • 66. 发明公开
    • VESSEL CHARACTERISTIC ESTIMATION DEVICE AND AUTOMATIC STEERING DEVICE
    • 信号转换器,视频转换器,发射信号
    • EP3176068A1
    • 2017-06-07
    • EP15826886.2
    • 2015-07-01
    • Furuno Electric Co., Ltd.
    • KAWASAKI, ChizuIMASAKA, MasashiMAENO, Hitoshi
    • B63B9/00B63H25/04G01P5/00
    • B63H25/04B63B49/00B63B2213/02B63H25/382B63H2025/045B63J2099/006G01P3/00G01P5/00G01P5/06G05D1/0206
    • To easily grasp a relationship of parameter values which influence a log velocity of a ship, with the log velocity of the ship caused by the parameters, a ship characteristic estimating device (9b) is provided, which includes a data output unit (6) configured to output a plurality of parameter data (D 1 , D 2 , D 3 , ..., ) respectively including rotational speed data (R 1 ) of a propeller of a ship, and wind velocity vector data (V WD1 , V WD2 , V WD3 , ..., ) of wind force that may act on the ship, and an estimator (12) configured to receive the plurality of parameter data (D 1 , D 2 , D 3 , ...,) outputted from the data output unit (6), estimate values corresponding to the respective parameter data (D 1 , D 2 , D 3 , ..., ) to be log velocity vectors (V WT1 , V WT2 , V WT3 , ..., ) of the ship, and output them as first output values. The rotational speed data (R 1 ) are same as each other and the wind velocity vector data (V WD1 , V WD2 , V WD3 , ...,) are different from each other.
    • 为了容易地掌握影响船舶的对数速度的参数值与由参数引起的船舶对数速度的关系,提供了一种船舶特性估计装置(9b),其包括配置在船舶特征估计装置 分别输出包括船舶的螺旋桨的转速数据(R 1)的多个参数数据(D 1,D 2,D 3,...)和风速矢量数据(V WD1,V WD2, 可以作用在船上的风力的V(V WD3,...),以及估计器(12),被配置为接收从所述船舶输出的多个参数数据(D 1,D 2,D 3,...) 数据输出单元(6)将对应于各个参数数据(D 1,D 2,D 3,...)的估计值作为对数速度矢量(V WT1,V WT2,V WT3,...) 并将其作为第一个输出值输出。 转速数据(R 1)彼此相同,并且风速矢量数据(V WD1,V WD2,V WD3,...)彼此不同。
    • 67. 发明公开
    • ANALYZER
    • 分析仪
    • EP3168622A1
    • 2017-05-17
    • EP16198464.6
    • 2016-11-11
    • FURUNO ELECTRIC CO., LTD.
    • KOMATSU, ShinyaHARI, KenjiHARA, EijiTSUNO, AkihiroSUGIYAMA, KeisukeTAKASHIMA, IkumiHAYASHI, HirotakaYAMANAKA, ManabuYOSHIDA, Nagayasu
    • G01N35/04
    • G01N35/04G01N2035/0443G01N2035/0455G01N2035/0474G01N2035/0484
    • An analyzer (1) is provided, which includes a casing (10), a first shaft member (75) supported by the casing (10) to be rotatable, and formed with a first through-hole (75a), a second shaft member (85) inserted into the first through-hole (75a) and supported by the casing (10) via the first shaft member (75) to be rotatable with respect to the casing (10) and the first shaft member (75), a first rotational support (31A, 33A) capable of supporting a container (32, 34) and coupled to the first shaft member (75) to be integrally rotatable with the first shaft member (75), a second rotational support (31B, 33B) capable of supporting another container (32, 34) and coupled to the second shaft member (85) to be integrally rotatable with the second shaft member (85), and first and second drive mechanisms (65, 66) configured to rotate the first and second shaft members (75, 85), respectively.
    • 本发明提供一种分析装置(1),该分析装置(1)具备:壳体(10);第一轴部件(75),其以能够转动的方式被壳体(10)支承并形成有第一贯通孔(75a);第二轴部件 (75)插入并通过第一轴构件(75)由壳体(10)支撑以相对于壳体(10)和第一轴构件(75)可旋转的第一轴构件(85),a 第一旋转支承部31A,33A,其能够支承容器32,34并与第一轴部件75一体旋转;第二旋转支承部31B, ,能够支撑另一容器(32,34)并且与第二轴构件(85)连接以与第二轴构件(85)一体旋转;以及第一驱动机构和第二驱动机构(65,66),其被构造成使第一轴和第二轴 第二轴构件(75,85)。
    • 69. 发明公开
    • UNDERWATER DETECTION APPARATUS
    • UNTERWASSERDETEKTIONSVORRICHTUNG
    • EP3086137A1
    • 2016-10-26
    • EP16160723.9
    • 2016-03-16
    • Furuno Electric Co., Ltd.
    • Shiraki, RikaMatsuhiro, NorioHanda, Minoru
    • G01S15/96G01S7/539
    • G01S7/539G01S15/96
    • An underwater detection apparatus is provided. The underwater detection apparatus includes a transmitter (2), a receiver (2), a target detector (11), a density index value estimator (12, 15, 16) and a size index value calculator (13). The transmitter (2) transmits a transmission wave. The receiver (2) obtains a receive signal based on a reflection of the transmission wave. The target detector (11) detects an underwater target object based at least in part on the receive signal. The density index value estimator (12, 15, 16) estimates a density index value of objects within a given area in a vicinity of the underwater target object. The size index value calculator (13) calculates a size index value of the underwater target object based at least in part on the density index value and a target object signal intensity representing a maximum intensity of the receive signal corresponding to the underwater target object.
    • 提供了一种水下检测装置。 水下检测装置包括发射器(2),接收器(2),目标检测器(11),密度指数值估计器(12,15,16)和尺寸索引值计算器(13)。 发送器(2)发送发送波。 接收机(2)基于发射波的反射获得接收信号。 目标检测器(11)至少部分地基于接收信号来检测水下目标物体。 密度指数值估计器(12,15,16)估计水下目标物体附近的给定区域内物体的密度指数值。 尺寸索引值计算器(13)至少部分地基于密度指标值和表示与水下目标物体对应的接收信号的最大强度的目标物体信号强度来计算水下目标物体的尺寸指标值。