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    • 2. 发明专利
    • Quick charge system for electric vehicle and control method of the same
    • 电动车快速充电系统及其控制方法
    • JP2012210046A
    • 2012-10-25
    • JP2011073474
    • 2011-03-29
    • Nagoya Electric Works Co Ltd名古屋電機工業株式会社
    • YAGI TADAOKAWAURA HISAYUKIOTSUKA HISANARI
    • B60L11/18H02J7/00
    • Y02T10/7005Y02T90/16Y02T90/168Y04S30/12
    • PROBLEM TO BE SOLVED: To provide a quick charge system for electric vehicle, which can quickly charge any electric vehicle with a battery in a state of discharge on the road only by a necessary electric quantity required for travel to the nearest charging stand, and its control method.SOLUTION: This quick charge system for electric vehicle 1 comprises a vehicle type information acquiring means connected with a geographic information server 6 to acquire vehicle type information of the electric vehicle 9, a power feed rate computing means which calculates a power feed rate required for the electric vehicle 9 to travel towards the nearest charging stand based on the acquired vehicle type information, information on stopped position/traveling direction and positional information of the charging stand, and a control means for controlling charge with a quick charger. The power feed rate is corrected depending on traffic congestion or weather condition. The quick charge system can be consisted of a battery charger 2 equipped with the vehicle type information acquiring means, the quick charger and the control means, and a central control unit 3 including the power feed rate computing means.
    • 要解决的问题:提供一种电动汽车的快速充电系统,可以使用电动汽车快速充电的方式,只有通过行驶到最近的充电架所需的必要电量才能在道路上的排放状态下充电 ,及其控制方法。 解决方案:电动车辆1的快速充电系统包括与地理信息服务器6连接以获取电动车辆9的车辆类型信息的车辆类型信息获取装置,计算供电速率的供电速率计算装置 基于取得的车辆类型信息,关于停止位置/行进方向的信息,充电台的位置信息以及用快速充电器控制充电的控制装置,电动汽车9向最近的充电座行驶所需的电力。 供电速率根据交通拥堵或天气情况进行修正。 快速充电系统可以由配备有车辆类型信息获取装置,快速充电器和控制装置的电池充电器2和包括供电速率计算装置的中央控制单元3组成。 版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • Vehicle photographing method and apparatus therefor
    • 车辆摄影方法及其设备
    • JP2006119846A
    • 2006-05-11
    • JP2004306050
    • 2004-10-20
    • Nagoya Electric Works Co Ltd名古屋電機工業株式会社
    • NAKAMURA KAORIAKATSUKA KOICHIYAMADA MUNEOYAGI TADAO
    • G06T1/00G06T3/00G06T5/00G08G1/04H04N5/225H04N5/232H04N5/243
    • PROBLEM TO BE SOLVED: To solve a problem that it becomes necessary to brightly illuminate an entire vehicle by preventing an excessive increase in brightness value for a license plate or to illuminate only a driver's seat, in order to simultaneously photograph a driver on the driver's seat and the license plate different in brightness values. SOLUTION: This vehicle photographing method comprises steps for: previously storing a picture formed by extracting the license plate from an original photographed picture; acquiring a picture obtained by γ-correcting the original picture with a predetermined γ value; combining the γ-corrected original picture with the stored original picture of the license plate; and extracting the picture clarifying the number of the license plate and the face of a driver on the driving seat. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题为了解决通过防止车牌的亮度值的过度增加或仅照亮驾驶员座位而需要对整个车辆进行明亮照明的问题,为了同时对驾驶员进行拍摄 司机座位和车牌的亮度不同。 该车辆拍摄方法包括以下步骤:预先存储通过从原始拍摄图像中提取车牌而形成的图像; 获取通过以预定的γ值γ校正原始图像而获得的图像; 将γ校正的原始图像与车牌的存储的原始图像组合; 并提取说明驾驶座椅上的车牌号码和驾驶员面部的图片。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • On-vehicle type salt concentration measuring instrument and salt concentration measuring method
    • 车辆类型盐浓度测量仪器和盐浓度测量方法
    • JP2007057286A
    • 2007-03-08
    • JP2005240693
    • 2005-08-23
    • Nagoya Electric Works Co LtdYuki Center名古屋電機工業株式会社社団法人 雪センター
    • SHIMOMURA CHUICHINOGUCHI TAKANORIONODERA HIROSHIUEDA KOJIYAGI TADAO
    • G01N27/04
    • PROBLEM TO BE SOLVED: To provide an on-vehicle type salt concentration measuring instrument capable of stably and accurately measuring the concentration of the salt in the moisture on a road surface regardless of difference in the state of the road surface and capable of eliminating the state unmeasurable owing to freezing, and a salt concentration measuring method. SOLUTION: As shown in Fig. 1, electrodes 30, which are directly brought into contact with brine, are supported so as not to be brought into contact with the road surface A but to be almost brought into contact with a rotating tire 40. Accordingly, the amount of brine held between the electrodes 30 becomes constant regardless of the condition of a stagnancy of brine on the road surface A. As a result, the resistor R2 between the electrodes 30 is varied only by the effect due to a change in the amount of brine without receiving the effect due to a change in the amount of brine and the voltage value varied by the resistor R2 is measured to accurately judge the concentration of brine on the road surface A. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种车载式盐浓度测量仪器,能够稳定且准确地测量路面上的水分中的盐的浓度,而与路面状态的差异无关,并且能够 消除由于冻结而不可测量的状态,以及盐浓度测定方法。 解决方案:如图1所示。 如图1所示,直接与盐水接触的电极30被支撑为不与路面A接触,但几乎与旋转的轮胎40接触。因此,保持在 无论路面A上的盐水滞留的状况如何,电极30都变得恒定。结果,电极30之间的电阻器R2仅由于盐水量的变化而不受影响而变化 由于盐水量的变化,电阻R2变化的电压值被测量,以准确判断路面A上的盐水浓度。(C)2007年,JPO&INPIT
    • 8. 发明专利
    • Device and method for measuring covering salt water
    • 用于测量覆盖盐水的装置和方法
    • JP2006250634A
    • 2006-09-21
    • JP2005065923
    • 2005-03-09
    • Nagoya Electric Works Co Ltd名古屋電機工業株式会社
    • UEDA KOJIYAGI TADAOTANIZAKI TETSUYAYAMADA MUNEO
    • G01N22/00E01H10/00G01W1/00
    • PROBLEM TO BE SOLVED: To solve the problem wherein accuracy is insufficient, because the concentration or the thickness itself of an antifreezing agent in covering water on the road surface is a parameter, and this portion is required to be supplemented by estimation or the like.
      SOLUTION: In a step S100, while changing the frequency of an oscillator 11 in a radio wave transmission means 1 in a range of about 1 GHz-6GHz, the reflectance at that point is acquired from a transmission/reception variation calculation part 3. In a step S200, a peak value of the reflectance is acquired. In a step S300, a frequency wherein the peak value determined in this way is specified. In a step S400, a corresponding film thickness is acquired on reference to a table or the like stored in a frequency film thickness relation storage part 4 by using the peak frequency as an argument. Consequently, conventional estimation or the like is not required, and the film thickness can be measured accurately.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题为了解决精度不足的问题,由于路面上的覆盖水中的防冻剂的浓度或厚度本身是参数,因此需要通过推定或补充来补充该部分 类似。 解决方案:在步骤S100中,在大约1GHz-6GHz的范围内改变无线电波发送装置1中的振荡器11的频率的同时,从发送/接收变化计算部分 在步骤S200中,获取反射率的峰值。 在步骤S300中,指定以这种方式确定的峰值的频率。 在步骤S400中,通过使用峰值频率作为参数,参考存储在频率膜厚度关系存储部分4中的表等获取相应的膜厚度。 因此,不需要常规的估计等,能够精确地测定膜厚。 版权所有(C)2006,JPO&NCIPI