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    • 31. 发明授权
    • Internal-resistance measuring device for response-delay type fuel cell
    • 用于响应延迟型燃料电池的内阻测量装置
    • US08426045B2
    • 2013-04-23
    • US12921985
    • 2008-10-29
    • Akira YamazawaYoshiyuki UenoKazuya WatanabeTakefumi Shimoyama
    • Akira YamazawaYoshiyuki UenoKazuya WatanabeTakefumi Shimoyama
    • H01M8/16
    • H01M8/16G01R31/3662H01M8/04544H01M8/04634H01M8/04895Y02E60/527
    • One object is to provide a measuring device configured to evaluate the power generation characteristics of a response-delay type fuel cell automatically, precisely, and with excellent reproducibility with consideration of the response delay against power load fluctuations, and effectively acclimatize and develop microorganisms that are provided to generate power. A potentio-galvanostat is connected to a microbial fuel cell provided as an exemplary response-delay type fuel cell. Further, an automatic measuring device is connected to the potentio-galvanostat. The automatic measuring device has a program function and measures the internal resistance of the microbial fuel cell at set time. The internal resistance measurement is executed through the automatic measuring device that instructs the potentio-galvanostat to change a current value flowing to the microbial fuel cell and that repeatedly executes the process of measuring and recording a voltage value of the microbial fuel cell and the current value while changing a current control value in stages after the voltage value is stabilized.
    • 一个目的是提供一种测量装置,其被配置为考虑到对电力负载波动的响应延迟来自动,精确地且以优异的再现性来评估响应延迟型燃料电池的发电特性,并且有效地适应和开发微生物 提供发电。 电位恒温器连接到作为示例性响应延迟型燃料电池提供的微生物燃料电池。 此外,自动测量装置连接到电位恒流器。 自动测量装置具有程序功能,并在设定的时间测量微生物燃料电池的内部电阻。 通过自动测量装置执行内部电阻测量,该自动测量装置指示电位计电位器改变流向微生物燃料电池的电流值,并且重复执行测量和记录微生物燃料电池的电压值和当前值的过程 同时在电压值稳定后分阶段改变电流控制值。
    • 33. 发明授权
    • Vehicle surrounding recognition support system for vehicle
    • 车辆周边识别支持系统
    • US08164430B2
    • 2012-04-24
    • US12543036
    • 2009-08-18
    • Noboru NagamineKazuya Watanabe
    • Noboru NagamineKazuya Watanabe
    • B60Q1/00
    • B60W50/08B60W2540/20G08G1/166G08G1/167
    • A vehicle surrounding recognition support system for a vehicle includes a contact detection device detecting whether or not a driver of the vehicle touches a turn signal operating lever or moves his/her hand close to the turn signal operating lever, an object position detecting device detecting a position of an object existing around the vehicle, an object information identification device identifying information relating to the object in accordance with a result of detection of the object position detecting device, and a warning device warning the driver about the existence of the object in accordance with the information of the object, identified by the object information identification device, when the contact detection device detects that the driver touches the turn signal operating lever or moves his/her hand close to the turn signal operating lever.
    • 车辆周围的车辆识别支援系统的车辆包括接触检测装置,检测车辆的驾驶员是否接触到转向信号操作杆,或者将他/她的手靠近转向信号操作杆,检测物体位置检测装置 存在于车辆周围的物体的位置,根据物体位置检测装置的检测结果识别与物体有关的信息的对象信息识别装置,以及根据对象物体的存在向驾驶员警告对象的存在的警告装置 由对象信息识别装置识别的物体的信息,当接触检测装置检测到驾驶员接触转向信号操作杆或将他/她的手靠近转向信号操作杆时。
    • 34. 发明申请
    • MICROBIAL FUEL CELL AND MEMBRANE CASSETTE FOR MICROBIAL FUEL CELLS
    • 用于微生物燃料电池的微生物燃料电池和膜
    • US20120003504A1
    • 2012-01-05
    • US12998383
    • 2008-10-15
    • Akira YamazawaYoshiyuki UenoMasahiro TataraYoji KitajimaKazuya WatanabeTakefumi ShimoyamaToshikazu IshiiShoko Komukai
    • Akira YamazawaYoshiyuki UenoMasahiro TataraYoji KitajimaKazuya WatanabeTakefumi ShimoyamaToshikazu IshiiShoko Komukai
    • H01M8/16H01M8/04H01M8/10
    • H01M8/16Y02E60/527
    • [PROBLEMS] To provide a microbial fuel cell whose parts can be replaced without lowering the energy recovery efficiency and a membrane cassette for microbial fuel cells. [MEANS FOR SOLVING PROBLEMS] A negative electrode (10) supporting anaerobic microorganisms (11) is immersed in an organic substrate (S). A positive electrode (15) sealed together with an electrolyte (D) in a closed hollow cassette (20) having an outer shell (25) at least a part of which is formed of an ion-permeable membrane (21), an inlet (22), and an outlet (23) or connected to the inner side of an ion-permeable membrane (21) is inserted into the organic substrate (S). While oxygen (O) is supplied into the cassette (20) through the inlet (22) and the outlet (23), electricity is taken out through a circuit (18) electrically interconnecting the negative and positive electrodes (10, 15). Preferably, the outer shell (25) of the closed hollow cassette (20) is a hollow outer shell frame (25) having an opening (26) which is closed by stretching an ion-permeable membrane (21), an inlet (22), and an outlet (23), and the ion-permeable membrane (21) is a membrane/electrode assembly (MEA) formed integrally with the positive electrode (15).
    • [问题]提供一种能够在不降低能量回收效率的情况下更换其部件的微生物燃料电池和用于微生物燃料电池的膜盒。 用于解决问题的手段将负载有厌氧微生物(11)的负极(10)浸渍在有机基板(S)中。 一种正电极(15),其与电解质(D)一起封闭在具有外壳(25)的封闭中空盒(20)中,所述外壳(25)的至少一部分由离子透过膜(21),入口 22),并且与离子透过膜(21)的内侧连接的出口(23)插入到有机基板(S)中。 当氧气(O)通过入口(22)和出口(23)供应到盒(20)中时,通过电气互连负极和正电极(10,15)的电路(18)取出电。 优选地,封闭的中空盒(20)的外壳(25)是中空的外壳框架(25),其具有通过拉伸离子透过膜(21)而封闭的开口(26),入口(22) ,和出口(23),离子透过膜(21)是与正极(15)一体形成的膜/电极组件(MEA)。
    • 35. 发明授权
    • Parking assistance device
    • 停车辅助装置
    • US08049778B2
    • 2011-11-01
    • US12531391
    • 2008-05-20
    • Tsuyoshi KuboyamaKazuya Watanabe
    • Tsuyoshi KuboyamaKazuya Watanabe
    • H04N7/00H04N7/18
    • B62D15/0275B60W30/06G06K9/00812G06T1/0007
    • An imaging device mounted on a vehicle (30) acquires image data resulting from capturing an image of a scene around the vehicle (30). A parking section (E) corresponding to the desired parking position is set. The image data is subjected to an image-converting process that includes at least one of viewpoint conversion and distortion correction. A deflection angle (λ) between the vehicle (30) and the parking section (E) is calculated. The image data is outputted until the deflection angle (λ) becomes equal to or less than a predetermined reference deflection angle, the image data being outputted to a display adapted for installation in the vehicle (30). Once the deflection angle (λ) has become equal to or less than the reference deflection angle, converted image data that has been subjected to the image-converting process is outputted.
    • 安装在车辆(30)上的成像装置获取通过捕获车辆周围的场景的图像而产生的图像数据。 设置与期望的停车位置对应的停车部(E)。 对图像数据进行包括视点转换和失真校正中的至少一个的图像转换处理。 计算车辆(30)与停车部(E)之间的偏转角(λ)。 输出图像数据直到偏转角(λ)变得等于或小于预定的参考偏转角,图像数据被输出到适于安装在车辆(30)中的显示器。 一旦偏转角(λ)变得等于或小于参考偏转角,则输出已经经过图像转换处理的转换图像数据。
    • 36. 发明申请
    • PARKING SUPPORT DEVICE
    • 停车支援装置
    • US20110102196A1
    • 2011-05-05
    • US12934002
    • 2009-05-08
    • Jun KadowakiKazuya WatanabeTakashi Yamanaka
    • Jun KadowakiKazuya WatanabeTakashi Yamanaka
    • B60Q1/48
    • B62D15/0275
    • A parking support device capable of reliably supporting a parking driving operation by a driver, comprising an image acquisition portion for acquiring an image peripheral to a vehicle captured by a vehicle-mounted image pickup device; an image display portion for displaying the peripheral image; and an indicator output portion for superimposedly displaying an indicator, comprising a pair of left and right vehicle width extension lines extending rearwards of the vehicle, on the peripheral image in order to guide a driver during a parking operation by the driver. The parking support device supports parallel parking, comprising a first turning step, in which the vehicle is reversed while being turned and driven into a parking area, and a second turning step, in which the vehicle is aligned in a parallel direction while being turned in a direction opposite to that in the first turning step. The indicator output portion superimposedly displays, during the second turning step, only the vehicle width extension line that is on an outside of the turn.
    • 一种能够可靠地支持驾驶员的停车驾驶操作的停车辅助装置,包括:图像获取部,其获取车载摄像装置拍摄的车辆周边的图像; 用于显示周边图像的图像显示部分; 以及指示器输出部分,用于叠加地显示指示器,包括在所述周边图像上向后延伸的一对左右车辆宽度延伸线,以便在驾驶员的停车操作期间引导驾驶员。 所述停车支援装置支持并行停车,其特征在于,包括第一转向步骤,所述第一转向步骤,其中所述车辆在被转动并被驱动到停车区域的同时被反转;以及第二转向步骤,其中所述车辆在转动时沿平行方向对准 与第一转动步骤相反的方向。 指示器输出部分在第二转动步骤期间仅叠加显示位于转弯外侧的车宽延伸线。
    • 38. 发明授权
    • Retractable zoom lens
    • 伸缩变焦镜头
    • US07848029B2
    • 2010-12-07
    • US12389560
    • 2009-02-20
    • Hiroki YamanoSo MiyasakaKazuya Watanabe
    • Hiroki YamanoSo MiyasakaKazuya Watanabe
    • G02B15/14
    • G02B15/173
    • A retractable zoom lens includes sequentially from an object side, a first lens group having positive refractive power, a second lens group having negative refractive power, a third lens group having positive refractive power, and a fourth lens group having positive refractive power. The third lens group includes sequentially from the object side, a first lens that is a positive lens, a second lens that is a positive lens, and a third lens that is a negative lens. The retractable zoom lens performs variable magnification by independently moving the respective lens groups along the optical axis. Further, the retractable zoom lens satisfies given conditions and maintains high optical performance while enabling a wider angle and a reduction of overall length.
    • 可折叠变焦镜头从物体侧顺序地包括具有正折光力的第一透镜组,具有负折光力的第二透镜组,具有正折光力的第三透镜组和具有正折光力的第四透镜组。 第三透镜组从物体侧依次包括作为正透镜的第一透镜,作为正透镜的第二透镜和作为负透镜的第三透镜。 可伸缩变焦透镜通过沿着光轴独立地移动各个透镜组来执行可变放大倍率。 此外,可伸缩变焦透镜满足给定条件并保持高的光学性能,同时能够实现更宽的角度和总长度的减小。
    • 40. 发明申请
    • PARKING ASSIST APPARATUS
    • 停车辅助装置
    • US20100089677A1
    • 2010-04-15
    • US12442474
    • 2007-10-29
    • Yu TanakaJun KadowakiKazuya Watanabe
    • Yu TanakaJun KadowakiKazuya Watanabe
    • B60W30/06
    • B62D15/0285B60W30/06B62D15/027
    • A view in front of a vehicle (1) is captured, and the captured imaged is displayed on a display section. At a predetermined stop position (S1), a target parking position (S4) of the vehicle (1) is set based on the captured image. Then, a reverse guidance route (C2) is calculated. The reverse guidance route (C2) is a route located forward of the vehicle (1), in front of the stop position (S1), and lies from a reverse start position (S2), at which the vehicle (1) starts to reverse for parking, up to the target parking position (S4). Based on the captured image, the reverse start position (S2) is set within a predetermined setting area by an instruction of an occupant of the vehicle (1). A forward travel guidance route (C1) from the stop position (S1) to the reverse start position (S2) is calculated, and conditions of movement of the vehicle (1) are detected. The vehicle (1) is guided from the stop position (S1) up to the reverse start position (S2) based on the forward travel guidance route (C1) and on the movement conditions.
    • 拍摄车辆(1)前方的视野,拍摄的拍摄被显示在显示部上。 在规定的停止位置(S1),基于拍摄图像来设定车辆(1)的目标停车位置(S4)。 然后,计算出反向引导路径(C2)。 反向引导路线(C2)是在停止位置(S1)前方位于车辆(1)前方的路线,并且位于车辆(1)开始反向的反向起始位置(S2) 用于停车,直到目标停车位置(S4)。 基于拍摄图像,通过车辆(1)的乘员的指示将反转开始位置(S2)设定在预定设定区域内。 计算从停止位置(S1)到反向开始位置(S2)的前进行驶引导路线(C1),并且检测车辆(1)的移动条件。 基于前进行驶引导路线(C1)和移动条件,车辆(1)从停止位置(S1)向上推动到反向起始位置(S2)。