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    • 3. 发明专利
    • On-vehicle relay device and communication system
    • 车载继电器和通信系统
    • JP2014195143A
    • 2014-10-09
    • JP2013070221
    • 2013-03-28
    • Auto Network Gijutsu Kenkyusho:Kk株式会社オートネットワーク技術研究所Sumitomo Wiring Syst Ltd住友電装株式会社Sumitomo Electric Ind Ltd住友電気工業株式会社
    • NODA TETSUYAOKADA HIROSHI
    • H04L12/46B60R16/023H04W4/04H04W12/02
    • H04L12/40006H04L67/12H04L2012/40273
    • PROBLEM TO BE SOLVED: To provide an on-vehicle relay device and a communication system that can restrain transmission of identification information, which can identify a vehicle, to the outside of the vehicle.SOLUTION: A security controller 10 selects either a vehicle specific ID 17b stored in a storage unit 17 or a temporary ID generated based on a random number or the like, and communicates with a server device via a road-side communication device 3 by use of the selected ID. If the communication using the generated temporary ID is finished, the security controller 10 discards this temporary ID. The security controller 10 executes an information transmission processing program at a CPU 11 to transmit information from an on-vehicle device 50 to a server device 5. The security controller 10 stores an access authority level table 17c, in which an access authority level for each information transmission program is set, in the storage unit 17, and determines which should be used for communication, the vehicle specific ID 17b or the temporary ID, depending on the access authority level of an information transmission program.
    • 要解决的问题:提供一种可以将能够识别车辆的识别信息传输到车辆外部的车载中继设备和通信系统。解决方案:安全控制器10选择车辆特定ID 17b存储在存储单元17中或基于随机数等生成的临时ID,并且经由路侧通信设备3通过使用所选择的ID与服务器设备进行通信。 如果使用所生成的临时ID的通信完成,则安全控制器10丢弃该临时ID。 安全控制部10在CPU11执行信息发送处理程序,将车载装置50的信息发送到服务器装置5.安全控制部10存储访问权限级别表17c, 信息发送程序被设定在存储单元17中,并且根据信息传输程序的访问权限级别来确定哪个应当用于通信,车辆特定ID 17b或临时ID。
    • 5. 发明专利
    • 運転特徴判定システム
    • 驱动特性决定系统
    • JP2015022499A
    • 2015-02-02
    • JP2013149781
    • 2013-07-18
    • 株式会社オートネットワーク技術研究所Auto Network Gijutsu Kenkyusho:Kk住友電装株式会社Sumitomo Wiring Syst Ltd住友電気工業株式会社Sumitomo Electric Ind Ltd
    • WATABE MASASHIOKADA HIROSHIUSAMI AKINORIADACHI NAOKINAKAJIMA TATSUYANODA TETSUYA
    • G08G1/16B60W40/09G06Q40/08G08G1/00G08G1/09
    • 【課題】車輌に搭載したカメラが撮像した周辺の画像に基づいて、精度よく運転者の運転の特徴を判定することができる運転特徴判定システムを提供する。【解決手段】車輌1の車載カメラ2が撮像した周辺の画像に基づいて、車輌1に対するユーザの運転の特徴を判定する。車載通信装置10は、車載カメラ2、車速センサ3、加速度センサ4及びGPS受信機5等から得られる情報、並びに、アクセル又はウインカー等に対する操作情報を運転特徴判定装置40へ送信する。運転特徴判定装置40は、車載通信装置10から受信した車載カメラ2の撮像画像に基づいて、車輌1の走行に係るイベントの発生を検出し、このイベントに対して適切な運転操作がなされたか否かを運転特徴として判定する。運転特徴判定装置40は、車載カメラ2の撮像画像に基づいて、例えば加速操作判定、車線変更ウインカー操作判定及び右左折ウインカー操作判定等を行う。【選択図】図1
    • 要解决的问题:提供一种驱动特性确定系统,其能够基于由装载在车辆上的照相机成像的周围图像,以高精度确定驾驶员的驾驶特性。解决方案:车辆1的驾驶特性为 基于由车辆1的车载摄像机2拍摄的周围图像来确定。车载通信设备10发送从车载摄像机2获得的信息; 车速传感器3; 加速度传感器4; 和GPS接收机5等; 以及加速器或方向指示灯等的操作信息提供给驾驶特性确定装置40.驾驶特性确定装置40通过基于成像的图像检测关于车辆1的行驶的事件的发生来确定驾驶特性 通过从车载装载通信装置10接收到的车载装载摄像机2,以及基于从车载装载通信装置10接收的车载装载摄像机2的摄像图像是否进行适当的驾驶操作。驾驶特性判定装置40 基于车载装载摄像机2的成像图像,进行加速度运算判定,车道改变方向指示灯操作判定以及左右转弯指示灯操作判定等。
    • 6. 发明专利
    • Wear detection system, transmitter, tire and wheel
    • 磨损检测系统,发射器,轮胎和车轮
    • JP2014166820A
    • 2014-09-11
    • JP2013039645
    • 2013-02-28
    • Auto Network Gijutsu Kenkyusho:Kk株式会社オートネットワーク技術研究所Sumitomo Wiring Syst Ltd住友電装株式会社Sumitomo Electric Ind Ltd住友電気工業株式会社
    • NODA TETSUYA
    • B60C11/24B60C19/00
    • PROBLEM TO BE SOLVED: To provide a wear detection system, a transmitter, a tire and a wheel in which wear of a tire can be detected without requiring battery replacement operation.SOLUTION: In a wear detection system 100 which comprises a transmitter 1 that transmits repetitively a signal based on a wear situation of a tread of a tire 4, and a receiver 2 that receives the signal transmitted by the transmitter 1 and detects the wear situation of the tire 4 from the signal, the transmitter 1 comprises an electric power generation part which generates electric power by receiving force generated through running of a vehicle 3, a wiring which supplies the generated electric power, and a transmitting part which transmits a signal with the electric power received from the wiring; and the receiver 2 comprises a reception part which receives the signal from the transmitting part, a reception determination part which determines whether the reception part has received the signal or not, a timing part which counts the time during which determination of no signal received has continued, a time determination part which determines whether the time counted by the timing part is not less than a predetermined time or not, and a notification part which notifies the outside when the time determination part determines as not less than the predetermined time.
    • 要解决的问题:提供一种可以在不需要电池更换操作的情况下检测轮胎的磨损的磨损检测系统,发射机,轮胎和车轮。解决方案:在磨损检测系统100中,其包括发射机1 重复地基于轮胎4的胎面的磨损情况的信号,以及接收由发送器1发送的信号并从该信号检测轮胎4的磨损情况的接收机2,发送器1包括发电 通过接收通过车辆3的行驶产生的力产生电力的部分,提供所产生的电力的布线和发送具有从布线接收的电力的信号的发送部; 并且接收机2包括接收来自发送部分的信号的接收部分,确定接收部分是否已经接收到信号的接收确定部分,对接收到的无信号进行确定的时间进行计数的定时部分 确定由定时部分计数的时间是否不小于预定时间的时间确定部分,以及当时间确定部分确定为不小于预定时间时通知外部的通知部分。
    • 7. 发明专利
    • Optical connector
    • 光学连接器
    • JP2014123056A
    • 2014-07-03
    • JP2012279769
    • 2012-12-21
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • NODA TETSUYATAMEKUNI YOSHIAKISASAKI MASARU
    • G02B6/38
    • PROBLEM TO BE SOLVED: To provide an optical connector which enables proper insertion of a coated optical fiber.SOLUTION: An optical connector 1 includes: a ferrule 10 for holding a built-in fiber F; a mechanical splice section 12 which is coupled to a rear end section of the ferrule 10 to couple the built-in fiber F with a glass fiber 7 face to face; a wedge member 14 mounted on the mechanical splice section 12; a plug frame 16 which accommodates the ferrule 10; a spring 18 though which the mechanical splice section 12 is inserted; and a stop ring 20 through which the mechanical splice section 12 is inserted and which limits movement of the spring 18 by touching a rear end of the spring 18. A rear end 12a of the mechanical splice section 12 is located posterior to a rear end 20a of the stop ring 20.
    • 要解决的问题:提供一种能够正确插入涂覆光纤的光连接器。解决方案:光连接器1包括:用于保持内置光纤F的套圈10; 机械接头部分12,其联接到套圈10的后端部分,以将内置纤维F与玻璃纤维7面对面地接合; 安装在机械接头部分12上的楔形件14; 容纳套圈10的插头框架16; 弹簧18,其中插入机械接合部分12; 以及止动环20,机械接头部分12穿过该止动环20,并且通过接触弹簧18的后端来限制弹簧18的移动。机械接合部分12的后端12a位于后端20a的后面 的止动环20。
    • 9. 发明专利
    • Optical fiber connection device
    • 光纤连接器件
    • JP2011242709A
    • 2011-12-01
    • JP2010116976
    • 2010-05-21
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • NODA TETSUYAYAMAUCHI TAKAYASUNISHIOKA DAIZO
    • G02B6/255G02B6/38
    • PROBLEM TO BE SOLVED: To provide an optical fiber connection device capable of reliably and smoothly guiding optical fibers into a receiving groove and satisfactorily holding the optical fibers to connect the optical fibers to each other.SOLUTION: An optical connector 11 is provided with insertion guiding sections 28 and 33 at an insertion port for inserting coated optical fibers into a receiving groove 26 located at the rear end of a base member 22 and a press member 23. In the insertion guiding sections 28 and 33, guide faces 29 and 34 with inner diameter formed to be smaller toward the receiving groove 26 are formed on the base member 22 and the press member 23 respectively. The press member 23 is formed with a projection 35 in which the guide face 34 extends toward the other guide face 29. When clamping faces 22a and 23a of the base member 22 and the press member 23, which oppose each other against an energizing force of a leaf spring member, are allowed to separate from each other, no space is left between the clamping faces 22a and 23a as receiving groove 26 is viewed from an axial direction from the insertion guiding sections 28 and 33.
    • 解决的问题:提供一种光纤连接装置,其能够将光纤可靠且平稳地引导到接收槽中,并令人满意地保持光纤以将光纤彼此连接。 解决方案:光连接器11在插入端口处设有插入引导部分28和33,用于将涂覆的光纤插入到位于基部构件22的后端的接收槽26和压力构件23中。在 插入引导部28,33分别在基部构件22和按压构件23上分别形成有朝向容纳槽26形成为较小的内径的引导面29,34。 按压构件23形成有突起35,引导面34朝向另一个引导面29延伸。当基部构件22的夹持面22a和23a与压力构件23抵抗相反的力的作用力时 板簧构件被允许彼此分离,在从插入引导部分28和33的轴向方向观察到收容槽26时,夹紧面22a和23a之间没有空间留下。 )2012,JPO&INPIT
    • 10. 发明专利
    • Optical core fiber identification device
    • 光纤光纤识别装置
    • JP2011059075A
    • 2011-03-24
    • JP2009212102
    • 2009-09-14
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • ITO KENSUKEHONMA TOSHIHIKOISHIZUKA MASATAKANODA TETSUYA
    • G01M11/00
    • PROBLEM TO BE SOLVED: To provide an optical core fiber identification device capable of performing more precise optical core fiber identification without receiving an effect of external disturbance light.
      SOLUTION: The optical core fiber identification device includes: an optical core fiber identification head 20 in which a curved part for leaking a light signal by partly bending the optical fiber is formed; and a body 10 detachably mounted with the optical core fiber identification head 20. The body 10 includes: a light receiving element holding part 5 holding a first light receiving element and a second light receiving element at both sides in the vicinity near a tip center where a recessed part engaged with the curved part of the optical core fiber identification head 20 is formed; an operation lever 3 moving the light receiving element holding part 5 to the body part 10; and an external disturbance light sensor 1a detecting the light entering the inside of the device from the outside.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够执行更精确的光纤光纤识别而不会受到外部干扰光的影响的光纤纤芯识别装置。 光纤纤维识别装置包括:光纤纤维识别头20,其中形成用于通过部分弯曲光纤而泄漏光信号的弯曲部分; 以及可拆卸地安装有光纤纤维识别头20的主体10.主体10包括:光接收元件保持部5,其保持靠近尖端中心附近的两侧的第一受光元件和第二光接收元件, 形成与光纤纤维识别头20的弯曲部接合的凹部; 将光接收元件保持部5移动到主体部10的操作杆3; 以及外部扰动光传感器1a,从外部检测进入设备内部的光。 版权所有(C)2011,JPO&INPIT