会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Method of predicting energy consumption, apparatus for predicting energy consumption, and terminal apparatus
    • 能耗预测方法,能耗预测装置及终端设备
    • US20110060495A1
    • 2011-03-10
    • US12805846
    • 2010-08-20
    • Toshiaki KonoTakumi Fushiki
    • Toshiaki KonoTakumi Fushiki
    • G06F7/00G01C21/36
    • G01C21/3469G08G1/096833
    • An object of the invention is to predict energy consumptions of a vehicle, using geographic characteristic values which are independent from particular driving patterns and vehicle parameters and unique to respective links. A navigation server predicts energies which are consumed when a vehicle runs on links. The navigation server calculates geographic characteristic values of respective links, the geography of the each link affecting the consumption energy with the geographic characteristic values, the calculation being based on energy consumptions collected from probe vehicles, and calculates predicted energy consumption of each link selected as a processing target, based on the geographic characteristic values. A navigation terminal obtains these predicted energy consumptions and performs route search with the obtained predicted energy consumptions as costs.
    • 本发明的一个目的是使用独立于特定驾驶模式和车辆参数并且对各个链路独特的地理特征值来预测车辆的能量消耗。 导航服务器预测当车辆在链路上运行时消耗的能量。 导航服务器计算各个链路的地理特征值,利用地理特征值影响消耗能量的每个链路的地理位置,计算基于从探测车辆收集的能量消耗,并且计算被选择为每个链路的每个链路的预测能量消耗 处理目标,根据地理特征值。 导航终端获得这些预测能量消耗,并以获得的预测能量消耗作为成本进行路线搜索。
    • 2. 发明授权
    • Method of predicting energy consumption, apparatus for predicting energy consumption, and terminal apparatus
    • 能耗预测方法,能耗预测装置及终端设备
    • US08694232B2
    • 2014-04-08
    • US12805846
    • 2010-08-20
    • Toshiaki KonoTakumi Fushiki
    • Toshiaki KonoTakumi Fushiki
    • G06F19/00G01C21/00G08G1/123
    • G01C21/3469G08G1/096833
    • An object of the invention is to predict energy consumptions of a vehicle, using geographic characteristic values which are independent from particular driving patterns and vehicle parameters and unique to respective links. A navigation server predicts energies which are consumed when a vehicle runs on links. The navigation server calculates geographic characteristic values of respective links, the geography of the each link affecting the consumption energy with the geographic characteristic values, the calculation being based on energy consumptions collected from probe vehicles, and calculates predicted energy consumption of each link selected as a processing target, based on the geographic characteristic values. A navigation terminal obtains these predicted energy consumptions and performs route search with the obtained predicted energy consumptions as costs.
    • 本发明的一个目的是使用独立于特定驾驶模式和车辆参数并且对各个链路独特的地理特征值来预测车辆的能量消耗。 导航服务器预测当车辆在链路上运行时消耗的能量。 导航服务器计算各个链路的地理特征值,利用地理特征值影响消耗能量的每个链路的地理位置,计算基于从探测车辆收集的能量消耗,并且计算被选择为每个链路的每个链路的预测能量消耗 处理目标,根据地理特征值。 导航终端获得这些预测能量消耗,并以获得的预测能量消耗作为成本进行路线搜索。
    • 3. 发明申请
    • Car navigation system
    • 汽车导航系统
    • US20110060517A1
    • 2011-03-10
    • US12805838
    • 2010-08-20
    • Toshiaki KonoTakumi Fushiki
    • Toshiaki KonoTakumi Fushiki
    • G06F19/00
    • G01C21/3469
    • A car navigation system solves the problem that the emission test cycle fuel consumption rate indicates the energy consumption per unit distance covered following a prescribed emission test cycle procedure, and therefore, cannot produce a highly accurate prediction value reflecting the landform and the traffics along a route. So, the test cycle characteristic values independent of the vehicle model for vehicle energy consumption in a specified running condition are calculated, and the vehicle energy consumption parameter of the engine or the motor is estimated from the basic vehicle specifications such as the vehicle weight, the power supply type, the emission test cycle fuel consumption rate, the test cycle characteristic values in the emission test cycle and the vehicle characteristics. Using the basic vehicle specifications and the energy consumption parameter, the energy consumption is predicted taking the landform and traffics into consideration.
    • 汽车导航系统解决排放测试循环燃油消耗率表示按照规定的排放测试循环程序覆盖的每单位距离的能耗的问题,因此不能产生反映地形和沿着路线的交通的高度准确的预测值 。 因此,计算与指定运行条件下的车辆能量消耗的车辆模型无关的测试循环特性值,并且根据基本车辆规格来估计发动机或电动机的车辆能耗参数,例如车辆重量, 电源类型,排放测试循环燃油消耗率,排放测试循环中的测试循环特征值和车辆特性。 使用基本的车辆规格和能耗参数,考虑到地形和交通流量的能耗。
    • 4. 发明授权
    • Navigation device and method for route calculation
    • 导航设备和路线计算方法
    • US08515655B2
    • 2013-08-20
    • US12805831
    • 2010-08-20
    • Takumi FushikiTomoaki HirutaToshiaki Kono
    • Takumi FushikiTomoaki HirutaToshiaki Kono
    • G06F19/00G08G1/123
    • G01C21/3469
    • A navigation device includes: a position detecting unit; a remaining energy level detecting unit; a storage unit that stores map information including position information of a charging point of a drive energy; an energy consumption amount calculation unit that calculates a consumption amount of the drive energy when a vehicle travels along any link included based upon the map information; a route calculation unit that calculates a route from a current position to a destination point; and a route guidance unit. The route calculation unit calculates a recommended route with a minimum attainment cost among routes in which the remaining level does not fall below a predetermined threshold level based upon the map information, the remaining level on departure of the vehicle detected by the remaining energy level detecting unit, and the consumption amount calculated by the energy consumption amount calculation unit.
    • 导航装置包括:位置检测单元; 剩余能量检测单元; 存储单元,存储包括驱动能量的充电点的位置信息的地图信息; 能量消耗量计算单元,其基于所述地图信息计算当车辆沿着包括的任何链路行进时的驱动能量的消耗量; 计算从当前位置到目的地点的路线的路线计算单元; 和路线引导单元。 路线计算单元基于地图信息计算剩余电平不低于预定阈值电平的路径中具有最小达标成本的推荐路线,剩余电量检测单元检测到的车辆离开时的剩余电平 以及由能量消耗量计算单元计算出的消耗量。
    • 5. 发明授权
    • Car navigation system
    • 汽车导航系统
    • US08239127B2
    • 2012-08-07
    • US12805838
    • 2010-08-20
    • Toshiaki KonoTakumi Fushiki
    • Toshiaki KonoTakumi Fushiki
    • G06F19/00
    • G01C21/3469
    • A car navigation system solves the problem that the emission test cycle fuel consumption rate indicates the energy consumption per unit distance covered following a prescribed emission test cycle procedure, and therefore, cannot produce a highly accurate prediction value reflecting the landform and the traffics along a route. So, the test cycle characteristic values independent of the vehicle model for vehicle energy consumption in a specified running condition are calculated, and the vehicle energy consumption parameter of the engine or the motor is estimated from the basic vehicle specifications such as the vehicle weight, the power supply type, the emission test cycle fuel consumption rate, the test cycle characteristic values in the emission test cycle and the vehicle characteristics. Using the basic vehicle specifications and the energy consumption parameter, the energy consumption is predicted taking the landform and traffics into consideration.
    • 汽车导航系统解决排放测试循环燃油消耗率表示按照规定的排放测试循环程序覆盖的每单位距离的能耗的问题,因此不能产生反映地形和沿着路线的交通的高度准确的预测值 。 因此,计算与指定运行条件下的车辆能量消耗的车辆模型无关的测试循环特性值,并且根据基本车辆规格来估计发动机或电动机的车辆能耗参数,例如车辆重量, 电源类型,排放测试循环燃油消耗率,排放测试循环中的测试循环特征值和车辆特性。 使用基本的车辆规格和能耗参数,考虑到地形和交通流量的能耗。
    • 6. 发明申请
    • Navigation device and method for route calculation
    • 导航设备和路线计算方法
    • US20110077854A1
    • 2011-03-31
    • US12805831
    • 2010-08-20
    • Takumi FushikiTomoaki HirutaToshiaki Kono
    • Takumi FushikiTomoaki HirutaToshiaki Kono
    • G01C21/00
    • G01C21/3469
    • A navigation device includes: a position detecting unit; a remaining energy level detecting unit; a storage unit that stores map information including position information of a charging point of a drive energy; an energy consumption amount calculation unit that calculates a consumption amount of the drive energy when a vehicle travels along any link included based upon the map information; a route calculation unit that calculates a route from a current position to a destination point; and a route guidance unit. The route calculation unit calculates a recommended route with a minimum attainment cost among routes in which the remaining level does not fall below a predetermined threshold level based upon the map information, the remaining level on departure of the vehicle detected by the remaining energy level detecting unit, and the consumption amount calculated by the energy consumption amount calculation unit.
    • 导航装置包括:位置检测单元; 剩余能量检测单元; 存储单元,存储包括驱动能量的充电点的位置信息的地图信息; 能量消耗量计算单元,其基于所述地图信息计算当车辆沿着包括的任何链路行进时的驱动能量的消耗量; 计算从当前位置到目的地点的路线的路线计算单元; 和路线引导单元。 路线计算单元基于地图信息计算剩余电平不低于预定阈值电平的路径中具有最小达标成本的推荐路线,剩余电量检测单元检测到的车辆离开时的剩余电平 以及由能量消耗量计算单元计算出的消耗量。
    • 7. 发明申请
    • ROUTE SEARCHING METHOD AND ROUTE SEARCHING SYSTEM
    • 路由搜索方法和路由搜索系统
    • US20080319645A1
    • 2008-12-25
    • US12143512
    • 2008-06-20
    • Masatoshi KumagaiTomoaki HirutaToshiaki Kono
    • Masatoshi KumagaiTomoaki HirutaToshiaki Kono
    • G01C21/34
    • G01C21/3461G01C21/3484G08G1/01G08G1/096811G08G1/096844
    • It is an object of the present invention to provide a route searching which can reflect know-how such as easiness of running included in the probe car data in an entire route from departure place to destination.A center device detects main branch nodes from probe car data received from an in-vehicle terminal device by means of a main branch node detecting section. A probe car data dividing section divides the probe car data into probe segments by the main branch nodes. A route dividing section divides an initial route generated by a initial route generating section based on specified departure place and destination, and a derived route generating section substitutes probe segments for the divided routes so as to generate derived routes. The route selecting section scores the derived routes and select one so as to provide a recommended route in which know-how such as easiness of running included in the probe car data is reflected.
    • 本发明的目的是提供一种能够在从出发地到目的地的整个路线中反映包括在探测车数据中的运行容易性的专有技术的路线搜索。 中央设备通过主分支节点检测部分从车载终端设备接收的探测车数据中检测主分支节点。 探测车数据分割部通过主分支节点将探测车数据分割成探头段。 路线分割部根据指定的出发地和目的地,对由初始路线生成部生成的初始路线进行分割,导出路线生成部将代入分割路线的探测段代入导出路线。 路线选择部分对得到的路线进行评分,并选择一个路径,以提供其中反映了探测车辆数据中包括的运行容易性等专有技术的推荐路线。