전기자동차의 에코 드라이빙 시스템 및 그 방법
    2.
    发明公开
    전기자동차의 에코 드라이빙 시스템 및 그 방법 有权
    电动车生态驱动系统及方法

    公开(公告)号:KR1020130065433A

    公开(公告)日:2013-06-19

    申请号:KR1020110132281

    申请日:2011-12-09

    Abstract: PURPOSE: An eco-driving system for electric vehicles is provided to unite the road information and the electric vehicle information, thereby providing a route to minimize the electric energy. CONSTITUTION: An eco-driving system(100) comprises: an in/output displaying part(110), a route producing part(120), a data collecting part(170), an energy consumption output part(140), a driver's style gripping part(150), a database part(160), and a controlling part(170). The in/output displaying part receives destination information for producing a route. The route producing part grasps the current location of the electric vehicle through a GPS, and receives a destination from the driver, and produces possible routes for the destination. The route producing part transmits 3D geographical information about each possible route by dividing the route into a fixed distance unit to the energy consumption output part. The data collecting part collects real-time traffic and weather information by gearing with an external communication network. The energy consumption output part calculates the energy consumed for each possible route based on the 3D geographical information, the weather information, and the cooperation loading amount of the vehicle. [Reference numerals] (100) Eco-driving system; (110) In/output displaying part; (120) Route producing part; (130) Data collecting part; (140) Energy consumption output part; (150) Driver's style gripping part; (160) Database part; (170) Controlling part

    Abstract translation: 目的:提供电动汽车的环保驱动系统,以整合道路信息和电动汽车信息,从而提供最小化电能的途径。 构成:生态驱动系统(100)包括:输入/输出显示部分(110),路线产生部分(120),数据收集部分(170),能量消耗输出部分(140),驾驶员风格 夹持部件(150),数据库部件(160)和控制部件(170)。 输入/输出显示部分接收用于产生路线的目的地信息。 路线产生部通过GPS掌握电动车辆的当前位置,并且从驾驶员接收目的地,并且产生目的地的可能的路线。 路线生成部通过将路线划分为能量消耗输出部的固定距离单位来发送关于每个可能路线的3D地理信息。 数据采集​​部分通过外部通信网络进行收集实时流量和天气信息。 能量消耗输出部分基于3D地理信息,天气信息和车辆的合作装载量来计算每个可能路线消耗的能量。 (附图标记)(100)生态驱动系统; (110)输入/输出显示部分; (120)路线生产部分; (130)数据收集部分; (140)能耗输出部分; (150)司机式握把部分; (160)数据库部分; (170)控制部

    전기자동차의 타행 주행 제어 방법
    3.
    发明公开
    전기자동차의 타행 주행 제어 방법 有权
    控制电动汽车在燃烧情况下的装置和方法

    公开(公告)号:KR1020140029640A

    公开(公告)日:2014-03-11

    申请号:KR1020120094728

    申请日:2012-08-29

    Abstract: The present invention relates to a coasting driving control device and method of an electric vehicle and, more specifically, to a coasting driving control device and method of an electric vehicle capable of maximizing a driving distance using road and traffic information during the driving. In the other words, the present invention determines an area in which coasting driving is possible using information which is obtained through all kinds of traffic information (the volume of traffic, traffic flow) during the actual road driving, road information (grade, road curvature, and intersection etc.) of 3D map, a vehicle position obtained by GPS, and a clearance sensor. The present invention controls a motor and a regenerative breaking system through a controller (VCU) in the area in which coasting driving is possible. Accordingly, the present invention provides the coasting driving control device and method of the electric vehicle capable of maximizing the driving distance of the electric vehicle. [Reference numerals] (12) Vehicle speed sensor; (20) Coasting driving possible area calculation; (22) GPS receiving unit; (26) Clearance sensor; (32) Motor; (AA) Acceleration pedal (APS); (BB) Brake pedal (BPS); (CC) Vehicle speed; (DD) Vehicle speed > Specific vehicle speed; (EE) Road grade / Curvature crossroad location; (FF) Coasting driving possible?; (GG) Coasting driving mode ON; (HH) Acceleration calculation; (II) Acceleration > 0; (JJ) Regenerative breaking ON; (KK) Regenerative breaking OFF

    Abstract translation: 本发明涉及一种电动车辆的惯性驾驶控制装置和方法,更具体地说,涉及一种能够在驾驶期间使用道路和交通信息最大化驾驶距离的电动车辆的惯性驾驶控制装置和方法。 换句话说,本发明使用通过实际道路行驶中的各种交通信息(交通量,交通流量)获得的信息来确定可能进行惯性驾驶的区域,道路信息(坡度,路面曲率 ,交叉点等),通过GPS获得的车辆位置和间隙传感器。 本发明通过可以进行惯性驾驶的区域中的控制器(VCU)控制电动机和再生断路系统。 因此,本发明提供能够使电动车辆的行驶距离最大化的电动车辆的惯性驾驶控制装置和方法。 (附图标记)(12)车速传感器; (20)惯性驾驶可能区域计算; (22)GPS接收单元; (26)间隙传感器; (32)电机; (AA)加速踏板(APS); (BB)制动踏板(BPS); (CC)车速; (DD)车速>具体车速; (EE)道路坡度/曲率十字路口位置; (FF)驾驶可能吗? (GG)惯性驾驶模式ON; (HH)加速度计算; (II)加速度> 0; (JJ)再生断开; (KK)再生断开

    전기 자동차용 친환경 드라이빙 운전자 지원 시스템 및 지원 방법
    4.
    发明授权
    전기 자동차용 친환경 드라이빙 운전자 지원 시스템 및 지원 방법 有权
    电动汽车生态驾驶员反馈系统及其反馈方法

    公开(公告)号:KR101294087B1

    公开(公告)日:2013-08-08

    申请号:KR1020110132280

    申请日:2011-12-09

    Abstract: 본 발명은 전기 자동차용 친환경 드라이빙 운전자 지원 시스템 및 지원 방법에 관한 것으로서, 상기 지원 시스템은 전기 자동차의 외부 또는 차량 자체 정보를 취득하는 정보 수집부, 상기 수집된 정보를 바탕으로 목적지에 대한 경로 설정과 전기 자동차의 운행 중 구동 제어를 위한 제어 로직 및 설정 모델을 생성하는 제어 로직부, 상기 경로 설정에 대한 제어 로직 및 설정 모델을 바탕으로 목적지에 대한 복수의 주행 경로를 설정하고, 상기 복수의 주행 경로 중 에너지 효율이 높은 추천 주행 경로를 설정하는 경로 설정부, 및 상기 차량 구동 제어 로직 및 설정 모델을 바탕으로 상기 경로 설정부에서 설정된 추천 주행 경로에 따라 실제 주행 시 전기 자동차 내의 차량 상태를 감시하여 차량 구동을 제어하는 차량 구동 제어부를 포함한다.

    전비맵을 기반으로 하는 에코루트 산출방법
    6.
    发明公开
    전비맵을 기반으로 하는 에코루트 산출방법 审中-实审
    使用SOC消耗比决定生态路线的方法

    公开(公告)号:KR1020130136781A

    公开(公告)日:2013-12-13

    申请号:KR1020120060460

    申请日:2012-06-05

    CPC classification number: G01C21/3469

    Abstract: The present invention relates to a method for calculating an eco-route based on an electricity efficiency map to select a route with the minimum electric consumption among a plurality of routes firstly selected for electric cars only. According to the invention, the method for calculating the eco-route based on the electricity efficiency map comprises an eco-driving logic which is applied with a cost function to select the eco-route in navigation and outputs the optimum eco-route of the cost function from the electricity efficiency map having information on mileage in comparison with the SOC consumption rate. The eco-driving logic provides the calculated eco-route as a driving route for electric cars. [Reference numerals] (S110) Determine information;(S120) Searching a route;(S130) Calculating the consumption rate of SOC;(S140) Outputting an eco-route

    Abstract translation: 本发明涉及一种用于基于电力效率图计算生态路线的方法,以选择仅针对电动车辆首先选择的多条路线中具有最小电力消耗的路线。 根据本发明,基于电力效率图的计算生态路线的方法包括一种应用成本函数的生态驾驶逻辑,以选择导航中的生态路线并输出成本的最佳生态路线 具有与SOC消耗率相比的具有里程信息的电力效率图的功能。 生态驾驶逻辑提供了计算生态路线作为电动汽车的行车路线。 (S110)确定信息;(S120)搜索路线;(S130)计算SOC的消耗率;(S140)输出生态路线

    차량의 운전 모드 안내 시스템 및 그 방법
    8.
    发明公开
    차량의 운전 모드 안내 시스템 및 그 방법 有权
    用于车辆和货物的驱动模式指导系统

    公开(公告)号:KR1020130066161A

    公开(公告)日:2013-06-20

    申请号:KR1020110132874

    申请日:2011-12-12

    Abstract: PURPOSE: A drive mode guide system for a vehicle is provided to guide optimum driving mode corresponding to driving path of a vehicle, thereby providing a driving mode to minimize energy consumption at driving a vehicle. CONSTITUTION: A drive mode guide system(1) for a vehicle comprises an input part(10) which is input with the traveling destination of a user; a real time information storage part(30) receiving and storing environmental information; a vehicle information storage part(40) storing information about the vehicle; a control part(50) obtaining a driving available path and operation mode; and an output part(60) which outputs the driving available path and operation mode. [Reference numerals] (10) Input part; (20) Road information storage part; (30) Real time information storage part; (40) Vehicle information storage part; (50) Control part; (60) Output part

    Abstract translation: 目的:提供一种用于车辆的驾驶模式导向系统,用于引导与车辆行驶路径相对应的最佳驾驶模式,从而提供驾驶模式以最小化驾驶车辆时的能量消耗。 构成:用于车辆的驱动模式引导系统(1)包括输入部件(10),其输入用户的行进目的地; 实时信息存储部(30),接收和存储环境信息; 存储关于车辆的信息的车辆信息存储部(40) 获取驱动可用路径和操作模式的控制部分(50); 以及输出驱动可用路径和操作模式的输出部(60)。 (附图标记)(10)输入部; (20)道路信息存储部分; (30)实时信息存储部分; (40)车辆信息存储部分; (50)控制部分; (60)输出部分

    전기 자동차용 친환경 드라이빙 운전자 지원 시스템 및 지원 방법
    9.
    发明公开
    전기 자동차용 친환경 드라이빙 운전자 지원 시스템 및 지원 방법 有权
    电动车用ECO驾驶员反馈系统及其反馈方法

    公开(公告)号:KR1020130065432A

    公开(公告)日:2013-06-19

    申请号:KR1020110132280

    申请日:2011-12-09

    Abstract: PURPOSE: The environment-friendly driving operator support system for the electric vehicle is provided to offer information to a driver to economically drive using minimum energy by uniting all the information about the vehicle while driving a car. CONSTITUTION: The environment-friendly driving operator support system for the electric vehicle(100) comprises the information collecting part(10), information transmitting and receiving section(20), a control logic part(30), the routing section(40), the vehicle driving control section(50), the vehicle state monitor(60). The information collecting part(10) acquires the outside or the vehicle self information of the electric vehicle. The control logic(30) produces the control logic and setup model with the collected information. The routing section(40) sets the multiple driving paths about the destination location according to the control logic and setup model and sets a recommendation driving path with high energy efficiency among the multiple driving paths. The vehicle driving control section(50) controls the vehicle driving by monitoring the state of the inside of the electric vehicle while driving according to the control logic and setup model. The information about driving path and driving control of driving car while driving which was generated from the routing section and the vehicle driving control section is delivered to the information collecting part. [Reference numerals] (1) Vehicle information; (10) Information collecting part; (2) 3-D geographical information; (20) Information transmitting and receiving section; (3) Other information; (30) Control logic part; (4) Routing information; (40) Routing section; (5) Vehicle control information; (50) Vehicle driving control section; (60) Vehicle state monitor; (70) Information storing part; (AA) Vehicle movement information; (BB) Fuel efficiency information; (CC) Battery information; (DD) Vehicle state information; (EE) Map information; (FF) Road information(curvature, grade); (GG) Traffic information; (HH) Driver information; (II) Weather information

    Abstract translation: 目的:提供电动汽车的环保型驾驶操作员支援系统,为司机提供信息,以便在驾驶汽车时统一车辆所有信息,以最小的能源经济驾驶。 规定:电动车辆(100)的环保驾驶操作员支援系统包括信息收集部(10),信息发送接收部(20),控制逻辑部(30),路由部(40) 车辆驾驶控制部(50),车辆状态监视器(60)。 信息收集部(10)获取电动车辆的外部或车辆自身信息。 控制逻辑(30)利用所收集的信息产生控制逻辑和设置模型。 路由部分(40)根据控制逻辑和设置模型设置关于目的地位置的多个驱动路径,并且在多个驱动路径之间设置具有高能量效率的推荐驱动路径。 车辆驾驶控制部(50)根据控制逻辑和设定模型,通过在驾驶时监视电动车辆的内部状态来控制车辆行驶。 从路线部分和车辆驱动控制部分产生的关于行驶中的驾驶汽车的行驶路径和驾驶控制的信息被传送到信息收集部。 (附图标记)(1)车辆信息; (10)资料收集部分; (2)三维地理信息; (20)信息发送和接收部分; (3)其他资料; (30)控制逻辑部分; (4)路由信息; (40)路由部分; (5)车辆控制信息; (50)车辆驾驶控制部; (60)车辆状态监视器; (70)信息存储部; (AA)车辆运动信息; (BB)燃油效率信息; (CC)电池信息; (DD)车辆状态信息; (EE)地图信息; (FF)道路信息(曲率,坡度); (GG)交通信息; (HH)驾驶员资料; (二)天气信息

    주행 반경 표시 장치 및 그 방법
    10.
    发明公开
    주행 반경 표시 장치 및 그 방법 无效
    用于显示驾驶员驾驶室范围的装置和方法

    公开(公告)号:KR1020130063371A

    公开(公告)日:2013-06-14

    申请号:KR1020110129852

    申请日:2011-12-06

    Abstract: PURPOSE: A travelling radius display device and a method thereof are provided to predict the energy consumption per each travelling route based on the travelling road information and electric vehicle information, thereby providing possible travelling distances per each travelling route to a driver. CONSTITUTION: A travelling radius display device(100) comprises a user interface unit(160), a travelling radius detection unit(170), and a display unit(180). A driver inputs a travelling radius displaying command through the user interface. The travelling radius detection unit detects routes possible to travel within the maximum travelling possible radius and calculates the possible travelling distance per each route by predicting the energy consumption per each route based on the travelling road information and electric vehicle information. The display unit displays the travelling possible distances per each route on a map screen. [Reference numerals] (110) GPS receiving unit; (120) Map providing unit; (130) Traffic/weather information providing unit; (140) Vehicle information providing unit; (150) Driving pattern detecting unit; (160) User interface unit; (170) Travelling radius detection unit; (171) Travelling route calculating unit; (173) Energy consumption predicting unit; (175) Travelling distance calculating unit; (180) Display unit

    Abstract translation: 目的:提供一种行进半径显示装置及其方法,用于基于行驶道路信息和电动车辆信息来预测每个行驶路线的能量消耗,从而为每个行驶路线向驾驶员提供可行驶距离。 构成:行驶半径显示装置(100)包括用户接口单元(160),行驶半径检测单元(170)和显示单元(180)。 驱动器通过用户界面输入旅行半径显示命令。 行驶半径检测单元通过基于行驶道路信息和电动车辆信息预测每个路线的能量消耗来检测在最大行驶可能半径内可能行驶的路线,并计算每条路线的可行行驶距离。 显示单元在地图屏幕上显示每个路线的行驶可能距离。 (附图标记)(110)GPS接收单元; (120)地图提供单位; (130)交通/天气信息提供单位; (140)车辆信息提供单元; (150)驱动模式检测单元; (160)用户界面单元; (170)行驶半径检测单元; (171)行驶路线计算单位; (173)能源消耗预测单位; (175)行驶距离计算单位; (180)显示单元

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