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    • 1. 发明专利
    • Control unit and control method for on-vehicle battery pack
    • 用于车载电池组的控制单元和控制方法
    • JP2013188086A
    • 2013-09-19
    • JP2012053593
    • 2012-03-09
    • Nippon Soken Inc株式会社日本自動車部品総合研究所Toyota Motor Corpトヨタ自動車株式会社
    • UEDA KENJISAKAI SHOJITSUBOUCHI TAKAHIROISHIOROSHI AKIO
    • H02J7/00B60L3/00B60L11/14H01M10/44H01M10/48
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a control unit and a control method for an on-vehicle battery pack, capable of bringing out the ability of a battery pack while inhibiting the occurrence of a voltage abnormal drop even when discharging a large volume of electric current from an on-vehicle battery pack.SOLUTION: A control unit 150 for controlling charge and discharge of a battery pack 10 consisting of a plurality of batteries 1 mounted on a vehicle 100, includes: voltage value detection means for detecting the electric voltage value Vb of the battery pack 10; electric current value detection means S11, S23, and S32 for detecting the charge and discharge electric current value Ib of the battery pack 10; deviation index calculation means S12 for calculating a deviation index P(n) one by one, the index reflecting the magnitude of positional deviation of the ion concentration for an electrolyte 3 contained in an electrode body 2 of the battery 1; abnormal drop detection means S34 for detecting the generation of an abnormal drop phenomenon in which the electric voltage value Vb of the battery pack 10 drops abnormally when discharging; abnormal time index update storage means S35 for updating and storing an abnormal time deviation index Pan at the time of occurrence of the above phenomenon, every time such a phenomenon occurs; and electric current control means S27 for controlling the magnitude of the charge and discharge electric current value Ib so as to adjust the deviation index P(n) to become the value of a deviation drop side Di of the abnormal time deviation index Pan.
    • 要解决的问题:为了提供一种用于车载电池组的控制单元和控制方法,即使在排出大量电流的同时也能够抑制电压异常下降的发生的同时发挥电池组的能力 用于控制由安装在车辆100上的多个电池1组成的电池组10的充电和放电的控制单元150包括:用于检测电压值Vb的电压值检测装置 的电池组10; 用于检测电池组10的充放电电流值Ib的电流值检测装置S11,S23和S32; 反映电池1的电极体2所含的电解质3的离子浓度的位置偏差的大小的指标的偏差指标计算单元S12,用于计算偏差指数P(n) 用于检测在放电时电池组10的电压值Vb异常下降的异常下降现象的产生的异常下降检测装置S34; 异常时间索引更新存储装置S35,用于在发生上述现象时更新和存储异常时间偏差指标Pan,每当出现这种现象时; 以及用于控制充放电电流值Ib的大小的电流控制装置S27,以便将偏差指数P(n)调整为异常时间偏差指标Pan的偏差下降侧Di的值。
    • 2. 发明专利
    • System and method for control of hybrid vehicle
    • 混合车辆控制系统与方法
    • JP2011235802A
    • 2011-11-24
    • JP2010110028
    • 2010-05-12
    • Nippon Soken IncToyota Motor Corpトヨタ自動車株式会社株式会社日本自動車部品総合研究所
    • SAKAI SHOJIKUNO TAIJI
    • B60W10/08B60K6/445B60L3/00B60L11/14B60W10/06B60W20/00F02D29/02F02D29/06
    • Y02T10/52Y02T10/6239Y02T10/6286Y02T10/7077
    • PROBLEM TO BE SOLVED: To improve fuel economy and drivability of a hybrid vehicle irrespective of the variations in a temperature of a motor generator and a travel state of the vehicle, in a control system of the hybrid vehicle.SOLUTION: A control system 12 includes a temperature sensor 40 detecting a temperature of a second motor generator 24 and a control unit 28. The control unit 28 includes a means for estimating the current vehicle travel state, a memory, a loss acquirer, and an electric power generation controller. The memory stores loss relation of the vehicle travel state with the temperature of the second motor generator 24 and the motor loss. The loss acquirer acquires the motor loss on the basis of the loss relation based on the temperature of the second motor generator 24 and the estimated current vehicle travel state. The electric power generation controller calculates an electric power generation amount target value of the second motor generator 24 using the acquired motor loss, and controls the amount of electric power generation.
    • 要解决的问题:在混合动力车辆的控制系统中,为了提高混合动力车辆的燃料经济性和驾驶性能,而不管电动发电机的温度变化和车辆的行驶状态如何。 解决方案:控制系统12包括检测第二电动发电机24和控制单元28的温度的温度传感器40.控制单元28包括用于估计当前车辆行驶状态的装置,存储器,损失获取器 和发电控制器。 存储器将车辆行驶状态的损失关系与第二电动发电机24的温度和电动机损耗进行比较。 损失取得者基于第二电动发电机24的温度和当前车辆行驶状态的估计值的损失关系取得电动机损失。 发电控制器使用获取的电动机损失来计算第二电动发电机24的发电量目标值,并且控制发电量。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Travel condition simulator for vehicle mounted with drive motor, and method therefor
    • 用驱动电机安装车辆的旅行条件模拟器及其方法
    • JP2005274323A
    • 2005-10-06
    • JP2004087538
    • 2004-03-24
    • Nippon Soken IncToyota Motor Corpトヨタ自動車株式会社株式会社日本自動車部品総合研究所
    • SAKAI SHOJIHASHIKAWA ATSUSHIKOJIMA YASUSHI
    • G01M17/007G01M99/00
    • PROBLEM TO BE SOLVED: To provide a loading device capable of simulating a vehicle travel condition near to that of an actual vehicle by absorbing a driving output from a driving unit, in a performance test of the vehicle.
      SOLUTION: A travel simulator 60 for controlling load absorbing motors 50a, 50b calculates a load torque to be generated in the load absorbing motors 50a, 50b, while taking a regenerative torque generated in a motor generator 20 into account, when simulating a braking condition of the vehicle, and controls the load absorbing motors 50a, 50b to generate the calculated load torque, in a test system for simulating the vehicle travel condition by absorbing the driving output from an engine 10 or the motor generator 20 by the load absorbing motors 50a, 50b connected directly to a driving shaft 40, without mounting a braking system mounted on the actual vehicle.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够通过从驾驶单元吸收驱动输出而在车辆的性能测试中模拟与实际车辆的行驶状况接近的车辆行驶状况的装载装置。 解决方案:用于控制负载吸收电动机50a,50b的行驶模拟器60计算在负载吸收电动机50a,50b中产生的负载转矩,同时考虑在电动发电机20中产生的再生转矩,当模拟 并且通过吸收来自发动机10或电动发电机20的驱动输出,通过负载吸收来模拟车辆行驶状况的试验系统,控制负载吸收电动机50a,50b以产生计算出的负载转矩 马达50a,50b直接连接到驱动轴40,而不安装安装在实际车辆上的制动系统。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Generator controller for vehicle
    • 汽车发电机控制器
    • JP2005057853A
    • 2005-03-03
    • JP2003284679
    • 2003-08-01
    • Denso CorpNippon Soken IncToyota Motor Corpトヨタ自動車株式会社株式会社デンソー株式会社日本自動車部品総合研究所
    • SAKAI SHOJIHASHIKAWA ATSUSHISUZUKI NAOHIKOMORIFUJI MASAYUKISADA TAKESHI
    • H02P9/04
    • PROBLEM TO BE SOLVED: To more suitably control the power generation of a generator in response to the running state of a vehicle. SOLUTION: This generator controller for a vehicle first initially sets a reference power generation voltage Vm* and a Flag etc. used for determining power generation restrain in an acceleration state (S100). The generator controller determines the operating state of the vehicle (S110), samples a voltage across a battery in a decelerating state, and calculates a battery average voltage Vav (S150). The generator controller updates the on/off of the Flag and a value of the reference power generation voltage Vm* according to a value of the Vav (S160-S190). Thereafter, when the vehicle is transferred to an acceleration state, whether it is in a state of Flag=ON or not is determined (S210). When it is the Flag=ON, power generation is restrained (S220). When it is the Flag=OFF, a power generation target voltage is returned to the reference power generation voltage Vm*, and the power generation restraint is released (S200). COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:响应于车辆的行驶状态更适合地控制发电机的发电。 解决方案:该车辆发生器控制器首先初始设定用于确定加速状态下的发电抑制的基准发电电压Vm *和Flag等(S100)。 发电机控制器确定车辆的运行状态(S110),以减速状态对电池两端的电压进行采样,并计算出电池的平均电压Vav(S150)。 发电机控制器根据Vav(S160-S190)的值更新标志的开/关和参考发电电压Vm *的值。 此后,当车辆被转移到加速状态时,判定是否处于Flag = ON的状态(S210)。 当Flag = ON时,限制发电(S220)。 当Flag = OFF时,发电目标电压返回到基准发电电压Vm *,发电抑制被解除(S200)。 版权所有(C)2005,JPO&NCIPI
    • 9. 发明专利
    • Devie and methof of measuring battery deterioration
    • 测量电池测定的偏差和色度
    • JP2010048656A
    • 2010-03-04
    • JP2008212763
    • 2008-08-21
    • Nippon Soken IncToyota Motor Corpトヨタ自動車株式会社株式会社日本自動車部品総合研究所
    • TOMITA KENJISAKAI SHOJIMITSUI MASAHIKOSUZUI KOSUKENISHI YUJITAKAGI MASARUKIKUCHI YOSHITERU
    • G01R31/36H01M10/48H02J7/00
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a battery deterioration measuring device and a measuring method capable of accurately measuring the battery deterioration.
      SOLUTION: The one end of a battery 10 is connected to the one end of a discharge control unit 14 through an ammeter 12. The other end of the battery 10 is connected to the other end of the discharge control unit 14. The ammeter 12 measures the current flowing to the battery 10 and outputs the measured result to an analysis unit 18. A voltmeter 16 measures the output voltage of the battery 10 and outputs the measured result to the analysis unit 18. The discharge control unit 14 controls the current flowing in the battery 10 based on the control of the analysis unit 18. The analysis unit 18 discharges the battery 10 by the discharge control unit 14, and measures the deterioration of the battery 10 based on the ratio of the time integration value of the battery output voltage to the time integration value of the battery current.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供能够精确测量电池劣化的电池劣化测量装置和测量方法。 解决方案:电池10的一端通过电流表12连接到排放控制单元14的一端。电池10的另一端连接到排放控制单元14的另一端。 电流表12测量流向电池10的电流并将测量结果输出到分析单元18.电压计16测量电池10的输出电压,并将测量结果输出到分析单元18.放电控制单元14控制 基于分析单元18的控制在电池10中流动的电流。分析单元18通过放电控制单元14对电池10进行放电,并且基于电池10的时间积分值的比率来测量电池10的劣化 电池输出电压达到电池电流的时间积分值。 版权所有(C)2010,JPO&INPIT
    • 10. 发明专利
    • Travel simulation test system of vehicle
    • 车辆旅行模拟测试系统
    • JP2006170952A
    • 2006-06-29
    • JP2004367723
    • 2004-12-20
    • Nippon Soken IncToyota Motor Corpトヨタ自動車株式会社株式会社日本自動車部品総合研究所
    • SAKAI SHOJIKOJIMA YASUSHI
    • G01M17/007B60L11/14B60R11/02G01M15/04
    • Y02T10/7077Y02T10/7241
    • PROBLEM TO BE SOLVED: To provide a traveling state system capable of virtually verifying and testing the effects of variations in electrical load caused by the actuation of accessories such as air conditioners and car audios mounted to vehicles to the travel control of a vehicle while the vehicle is traveling without having to actually mount the accessories.
      SOLUTION: In this test system having no mounted brake system, which is mounted to an actual vehicle, for simulating the traveling state of vehicles by absorbing drive output of an engine 10 and a motor 20 by load absorption motors 50a and 50b directly connected to a drive shaft 40, a load variation command for varying a value of electrical load to a battery at a predetermined timing indicated in driving conditions is outputted from a traveling state simulation device 60 to an electrical load device 25, and the electrical load device 25 receives the load variation command and provides a prescribed electrical load variation for a main battery 24.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种行驶状态系统,其能够虚拟地验证和测试由将诸如安装在车辆上的空调和汽车音响等附件的致动引起的电力负荷的变化对车辆的行驶控制的影响 而车辆正在行驶而无需实际安装附件。 解决方案:在没有安装到实际车辆的安装制动系统的该测试系统中,通过直接吸收电动机50a和50b吸收发动机10和电动机20的驱动输出来模拟车辆的行驶状态 连接到驱动轴40的负载变化指令用于在行驶状态下指定的规定时刻将电力负荷变动到电池的负荷变动指令,从行驶状态模拟装置60输出到负载装置25, 25接收负载变化指令,并为主电池24提供规定的电负载变化。版权所有(C)2006,JPO&NCIPI