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    • 1. 发明授权
    • 배터리 온도 제어를 통합한 전기 자동차의 난방 시스템 제어 방법
    • KR101724728B1
    • 2017-04-10
    • KR1020110066995
    • 2011-07-06
    • 현대자동차주식회사기아자동차주식회사
    • 박재현김상훈박준형장기룡김재웅
    • B60H1/00B60L11/18B60R11/02
    • Y02T10/7005Y02T10/7044Y02T90/168Y04S30/12
    • 본발명은배터리온도제어를통합한전기자동차의난방시스템제어방법에관한것으로서, 특히본 발명에서는차량의난방시스템과배터리온도제어시스템의통합제어를구현함으로써, 전기자동차가최적의배터리충/방전효율을유지할수 있도록차량실내온도와배터리셀 온도를통합적으로제어할수 있는배터리온도제어를통합한전기자동차의난방시스템제어방법을제공하고자한다. 이를위해본 발명에서는 (a) 외부충전장치에의해차량배터리가충전되는동안사용자가단말기를조작하여차량에원격난방작동을요청하는단계와; (b) 차량의무선통신단말기가원격난방작동요청을수신하여제어부에전달하면제어부가배터리 SOC를체크하는단계와; (c) 배터리 SOC가기준 SOC 값이상이되는조건을만족하면실내난방부하를계산하고계산된실내난방부하로부터목표실내온도를결정하는단계와; (d) 이어실내온도가목표실내온도에도달및 유지되도록난방시스템을작동및 제어하는단계와; (e) 상기난방시스템의작동동안배터리온도관리시스템의작동을제어하여배터리온도를관리하는단계;를포함하는배터리온도제어를통합한전기자동차의난방시스템제어방법이개시된다. 그러므로, 본발명에따른배터리온도제어를통합한전기자동차의난방시스템제어방법에서는전기자동차의배터리충전효율및 운전초기방전효율을극대화시키는한편, 운전초기에난방시스템의전기부하를줄임으로써, 배터리의에너지축적밀도의한계를극복하면서배터리성능과는별개로전기자동차의항속거리를증대시킬수 있게된다.
    • 6. 发明公开
    • 공조 장치의 제어 방법
    • 空气调节器在电动车辆中的驱动方法
    • KR1020120026184A
    • 2012-03-19
    • KR1020100088246
    • 2010-09-09
    • 현대자동차주식회사기아자동차주식회사
    • 김재웅권정호임태웅박준형이창원장기룡
    • B60H1/00B60H1/03B60H1/22
    • B60H1/2218B60H2001/2256B60H2001/2262F24F11/30F24F11/62
    • PURPOSE: A control method of an air conditioner is provided to prevent useless power consumption of an air conditioner by driving a heater because the heater is cut-off by checking whether or not a heater cutoff condition is satisfied through a target discharge temperature, a target evaporator temperature, a temperature of an evaporator, and a discharge temperature of a heater. CONSTITUTION: A control method of an air conditioner is as follows. Check whether or not one or more between a target discharge temperature of an air conditioning system and a target evaporator temperature satisfy a heater driving condition. If the heater driving condition is satisfied, the heater driving is controlled to output the target discharge temperature according to a temperature and driving condition of a vehicle. In case that heater discharge temperature is over the criterion or higher than the target discharge temperature over a constant temperature in the heater driving, the driving of the heater is cut-off.
    • 目的:提供一种空调机的控制方法,通过检查加热器是否通过目标排出温度是否满足加热器切断条件来切断加热器,从而通过驱动加热器来消除空调的无功耗;目标 蒸发器温度,蒸发器的温度和加热器的排出温度。 构成:空调的控制方法如下。 检查空调系统的目标排出温度与目标蒸发器温度之间的一个或多个是否满足加热器驱动条件。 如果满足加热器驱动条件,则控制加热器驱动以根据车辆的温度和驾驶状况输出目标排出温度。 在加热器驱动中,加热器排出温度超过标准值或高于恒定温度的目标排放温度的情况下,切断加热器的驱动。
    • 7. 发明公开
    • 배터리 온도 제어를 통합한 전기 자동차의 난방 시스템 제어 방법
    • 用电池温度管理系统控制电动车用加热系统的方法
    • KR1020130005537A
    • 2013-01-16
    • KR1020110066995
    • 2011-07-06
    • 현대자동차주식회사기아자동차주식회사
    • 박재현김상훈박준형장기룡김재웅
    • B60H1/00B60L11/18B60R11/02
    • Y02T10/7005Y02T10/7044Y02T90/168Y04S30/12B60H1/00278B60H1/00385B60H1/00392B60H1/00657B60H1/00735B60H1/00807B60H1/00878B60H1/143B60K11/00B60L11/18B60L11/187B60R11/02B60R16/00
    • PURPOSE: A method for controlling the heating system of an electric vehicle is provided to increase a range with overcoming the limit of energy storage density in a battery. CONSTITUTION: A method for controlling the heating system of an electric vehicle comprises following steps. Users operate a terminal to require the operation of remote heating while a vehicle battery is charged. A radio communication terminal receives a signal for operating the remote heating and delivers the signal to a control unit. The control unit checks the state of charge in the battery. If the state of charge in the battery satisfies an existing SOC(state of charge) value, the indoor heating load is calculated. Target indoor temperature is determined based on the indoor heating load. A heating system is operated and controlled to reach the target indoor temperature. The temperature of the battery is managed by controlling a battery temperature management system. A standard SOC value is determined from map data on the basis of the amount of solar radiation information and outdoor temperature. [Reference numerals] (AA) Remote heating operation mode; (BB) Start; (CC) Satisfying SOC conditions?; (DD) Air-conditioner ON; (EE) Calculating an indoor heating load; (FF) Determining a target temperature; (GG) Operating a heating system; (HH) Operating a battery blower and a rear exhaust fan; (II) Operating time >= Maximum operating time; (JJ) Air-conditioning OFF; (KK) Reserved heating operation mode; (LL) Start; (MM) Reserving an operation timing(sTime)?; (NN) Current time=(sTime-1hr)?; (OO) Air-conditioner ON; (PP) Calculating an air-conditioning timing(considering SOC conditions); (QQ) Reaching the air-conditioning timing?; (RR) Satisfying the SOC conditions?; (SS) End
    • 目的:提供一种用于控制电动车辆的加热系统的方法,以克服电池中的能量存储密度的极限来增加范围。 构成:一种用于控制电动车辆的加热系统的方法,包括以下步骤。 用户操作终端时,要求在车载电池充电时进行远程加热。 无线电通信终端接收用于操作远程加热的信号并将信号传送到控制单元。 控制单元检查电池中的充电状态。 如果电池中的充电状态满足现有的SOC(充电状态)值,则计算室内供暖负荷。 目标室内温度根据室内供暖负荷确定。 加热系统运行和控制达到目标室内温度。 通过控制电池温度管理系统来管理电池的温度。 基于太阳辐射信息量和室外温度的地图数据来确定标准SOC值。 (附图标记)(AA)远程加热运行模式; (BB)开始; (CC)满足SOC条件? (DD)空调ON; (EE)计算室内供暖负荷; (FF)确定目标温度; (GG)操作加热系统; (HH)操作电池鼓风机和后排风扇; (II)工作时间> =最大工作时间; (JJ)空调OFF; (KK)保温加热运行模式; (LL)开始; (MM)保留操作时间(sTime)? (NN)当前时间=(sTime-1hr)? (OO)空调ON; (PP)计算空调时间(考虑SOC条件); (QQ)达到空调时机? (RR)满足SOC条件? (SS)结束
    • 8. 发明公开
    • 공조 장치 제어 로직 및 그의 구동 방법
    • 空气调节器在电动车辆中的控制逻辑及其驱动方法
    • KR1020120023966A
    • 2012-03-14
    • KR1020100086412
    • 2010-09-03
    • 현대자동차주식회사기아자동차주식회사
    • 권정호김재웅임태웅박준형이창원장기룡
    • B60H1/00B60H1/24B60H1/32
    • PURPOSE: An air conditioner control logic and a driving method thereof are provided to prevent a degradation of a range by preventing unnecessary power consumption of an air conditioner because external air inflow amount is controlled according to a target temperature of an evaporator and an outdoor air temperature, and a temperature of discharged air supplied to the inner space of a vehicle through an air conditioner is controlled. CONSTITUTION: An air conditioner control logic comprises a first condition determination unit(110), a second condition determination unit(120), and an air conditioning controller(130). The first condition determination unit outputs a first output signal by detecting whether or not a target temperature of an evaporator satisfies a first condition. The second condition determination unit outputs a second output signal whether or not an outdoor air temperature of the vehicle satisfies a second condition. The air conditioning controller is electrically connected to the first or second condition determination units, thereby receiving the first and second output signals. In a case of satisfying the first condition, a driving of an intake door(140) for mixed-air of indoor and outdoor air is controlled to intake outdoor air according to whether or not the second condition is satisfied.
    • 目的:提供一种空调控制逻辑及其驱动方法,以防止由于根据蒸发器的目标温度和室外空气温度来控制外部空气流入量,因此防止空调机的不必要的电力消耗导致范围的劣化 并且控制通过空调向车辆的内部空间供给的排出空气的温度。 构成:空调控制逻辑包括第一条件确定单元(110),第二条件确定单元(120)和空调控制器(130)。 第一条件确定单元通过检测蒸发器的目标温度是否满足第一条件来输出第一输出信号。 第二条件确定单元输出第二输出信号,无论车辆的室外空气温度是否满足第二条件。 空调控制器电连接到第一或第二状态确定单元,从而接收第一和第二输出信号。 在满足第一条件的情况下,根据是否满足第二条件来控制用于室内和室外空气的混合空气的进气门(140)的驱动以吸入室外空气。
    • 10. 发明公开
    • 가변용량 압축기의 전기 제어 밸브의 듀티 제어방법
    • 用于可变容量压缩机的电子控制阀的控制方法
    • KR1020090130914A
    • 2009-12-28
    • KR1020080056629
    • 2008-06-17
    • 현대자동차주식회사기아자동차주식회사
    • 권춘규장기룡
    • F04B27/14B60H1/32
    • PURPOSE: A controlling method of an electric control valve of a variable capacity type compressor is provided, which reduces braking loss using deceleration of a vehicle as a duty control factor. CONSTITUTION: A controlling method of an electric control valve of a variable capacity type compressor is as follows. The acceleration signal is read(S12). It decides whether the acceleration signal exceeds the critical value of the acceleration decision or not(S14). It decides whether the goal duty of ECV according to the target temperature of an evaporator exceeds 50% or not(S16) when the acceleration signal exceeds the critical value of the acceleration decision. If the goal duty of ECV exceeds 50%, ECV is controlled to the duty(S18).
    • 目的:提供一种可变容量型压缩机的电动控制阀的控制方法,其使用车辆的减速度作为占空比控制系数来减少制动损耗。 构成:变容式压缩机的电动控制阀的控制方法如下。 读取加速度信号(S12)。 判定加速度信号是否超过加速判定的临界值(S14)。 当加速度信号超过加速度判定的临界值时,根据蒸发器的目标温度来判定ECV的目标值是否超过50%(S16)。 如果ECV的目标值超过50%,则ECV被控制在职责(S18)。