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    • 3. 发明授权
    • Vehicle and control method for vehicle
    • 车辆和车辆控制方法
    • US09457796B2
    • 2016-10-04
    • US14424654
    • 2013-11-14
    • Masaaki SaikoIsao SatoRyo Watanabe
    • Masaaki SaikoIsao SatoRyo Watanabe
    • B60W20/15B60W20/00B60K6/365B60K6/445B60W10/06B60W30/184B60W10/12
    • B60W20/15B60K6/365B60K6/445B60W10/06B60W10/12B60W20/00B60W30/1846B60W2520/10B60W2710/0644Y02T10/6239Y10S903/93Y10T477/606
    • A vehicle includes: an engine; a first electric motor capable of inputting or outputting power; a power split mechanism including a sun gear, a ring gear and a planetary carrier rotatably revolvably supporting pinion gears meshing with the sun and ring gears. The planetary carrier, the sun gear and the ring gear are respectively coupled to an engine output shaft, a first electric motor rotary shaft and a drive wheel. The vehicle further includes a second electric motor capable of inputting or outputting power to or from the drive wheel; and a control device setting an engine operation range determined by a limit value of a rotation speed of the pinion gears. To increase durability of the pinion gears the limit value is higher at a high engine rotation and low vehicle speed side than at a low engine rotation and high vehicle speed side. Engine operation is controlled on the basis of the set engine operation range.
    • 车辆包括:发动机; 能够输入或输出动力的第一电动机; 动力分配机构,包括太阳轮,环形齿轮和行星架,可旋转地支撑与太阳和环形齿轮啮合的小齿轮。 行星架,太阳齿轮和齿圈分别与发动机输出轴,第一电动机旋转轴和驱动轮相连。 车辆还包括能够向驱动轮输入或输出动力的第二电动机; 以及控制装置,其设定由所述小齿轮的转速的极限值确定的发动机运转范围。 为了提高小齿轮的耐久性,在高发动机转速和低车速侧,与低发动机转速和高车速侧相比,极限值更高。 发动机运转是根据设定的发动机运转范围进行控制的。
    • 4. 发明申请
    • VEHICLE AND CONTROL METHOD FOR VEHICLE
    • 车辆的车辆和控制方法
    • US20150217758A1
    • 2015-08-06
    • US14424654
    • 2013-11-14
    • Masaaki SaikoIsao SatoRyo Watanabe
    • Masaaki SaikoIsao SatoRyo Watanabe
    • B60W20/00B60W10/06B60W10/12B60W30/184
    • B60W20/15B60K6/365B60K6/445B60W10/06B60W10/12B60W20/00B60W30/1846B60W2520/10B60W2710/0644Y02T10/6239Y10S903/93Y10T477/606
    • A vehicle includes: an engine; a first electric motor capable of inputting or outputting power; a power split mechanism including a sun gear, a ring gear and a planetary carrier rotatably revolvably supporting pinion gears meshing with the sun and ring gears. The planetary carrier, the sun gear and the ring gear are respectively coupled to an engine output shaft, a first electric motor rotary shaft and a drive wheel. The vehicle further includes a second electric motor capable of inputting or outputting power to or from the drive wheel; and a control device setting an engine operation range determined by a limit value of a rotation speed of the pinion gears. To increase durability of the pinion gears the limit value is higher at a high engine rotation and low vehicle speed side than at a low engine rotation and high vehicle speed side. Engine operation is controlled on the basis of the set engine operation range.
    • 车辆包括:发动机; 能够输入或输出动力的第一电动机; 动力分配机构,包括太阳轮,环形齿轮和行星架,可旋转地支撑与太阳和环形齿轮啮合的小齿轮。 行星架,太阳齿轮和齿圈分别与发动机输出轴,第一电动机旋转轴和驱动轮相连。 车辆还包括能够向驱动轮输入或输出动力的第二电动机; 以及控制装置,其设定由所述小齿轮的转速的极限值确定的发动机运转范围。 为了提高小齿轮的耐久性,在高发动机转速和低车速侧,与低发动机转速和高车速侧相比,极限值更高。 发动机运转是根据设定的发动机运转范围进行控制的。
    • 6. 发明申请
    • MULTI-PROCESSOR CONTROL DEVICE AND METHOD
    • 多处理器控制装置和方法
    • US20080288796A1
    • 2008-11-20
    • US12122267
    • 2008-05-16
    • Hiroshi NakamuraMasaaki KondoTakashi NanyaRyo Watanabe
    • Hiroshi NakamuraMasaaki KondoTakashi NanyaRyo Watanabe
    • G06F1/32G06F9/46
    • G06F1/32
    • A multi-processor control device according to an example of the invention comprises a cooperative control unit which determines priorities of requests issued from processors to a shared resource which are used to suppress a total power consumption of the processors within a range in which performance constraints of programs executed by the processors are satisfied, and determines a frequency of each of the processors so as to suppress the total power consumption within the range in which the performance constraint of the each program is satisfied, a first control unit which issues requests from the processors to the shared resource in accordance with priorities determined by the cooperative control unit, and a second control unit which controls the frequency of each of the processors in accordance with the frequency determined by the cooperative control unit.
    • 根据本发明的示例的多处理器控制设备包括协作控制单元,其确定从处理器向共享资源发出的请求的优先级,所述共享资源用于在所述处理器的性能约束的范围内抑制处理器的总功耗 满足处理器执行的程序,并且确定每个处理器的频率,以便抑制在满足每个节目的性能约束的范围内的总功耗;发出来自处理器的请求的第一控制单元 根据由协作控制单元确定的优先级来分配给共享资源;以及第二控制单元,其根据由协作控制单元确定的频率来控制每个处理器的频率。
    • 9. 发明授权
    • Production method of foamed electric wire
    • 发泡电线的生产方法
    • US08766096B2
    • 2014-07-01
    • US13240412
    • 2011-09-22
    • Ryo Watanabe
    • Ryo Watanabe
    • H01B13/14H01B13/00H01B3/30C08J9/00
    • H01B13/142C08J9/103C08J9/122C08J2201/03C08J2323/16C08L23/10H01B11/1839H01B13/067
    • The present invention discloses a production method of a foamed electric wire, whereby a foamed electric wire is obtained via a foamed insulation layer formation step of forming a foamed insulation layer on a conductor, wherein the foamed insulation layer formation step includes: a step of introducing a base resin into an extruding machine, a step of introducing a foaming agent into the extruding machine, and a step of extruding a mixture containing the base resin and the foaming agent from the extruding machine and forming the foamed insulation layer on the conductor, and wherein the resin contained in the mixture has a shear stress of 0.40 to 0.80 Mpa, and the base resin is a propylene-based resin.
    • 本发明公开了一种发泡电线的制造方法,其中,通过在导体上形成发泡绝缘层的发泡绝缘层形成工序得到发泡电线,其中,所述发泡绝缘层形成工序包括:导入 将基材树脂注入到挤出机中,将发泡剂引入挤出机中的步骤,以及从挤出机挤出含有基础树脂和发泡剂的混合物并在导体上形成发泡绝缘层的步骤,以及 其中混合物中所含的树脂的剪切应力为0.40至0.80Mpa,基础树脂为丙烯类树脂。
    • 10. 发明授权
    • Multi-processor control device and method
    • 多处理器控制装置及方法
    • US08069357B2
    • 2011-11-29
    • US12122267
    • 2008-05-16
    • Hiroshi NakamuraMasaaki KondoTakashi NanyaRyo Watanabe
    • Hiroshi NakamuraMasaaki KondoTakashi NanyaRyo Watanabe
    • G06F1/26
    • G06F1/32
    • A multi-processor control device according to an example of the invention comprises a cooperative control unit which determines priorities of requests issued from processors to a shared resource which are used to suppress a total power consumption of the processors within a range in which performance constraints of programs executed by the processors are satisfied, and determines a frequency of each of the processors so as to suppress the total power consumption within the range in which the performance constraint of the each program is satisfied, a first control unit which issues requests from the processors to the shared resource in accordance with priorities determined by the cooperative control unit, and a second control unit which controls the frequency of each of the processors in accordance with the frequency determined by the cooperative control unit.
    • 根据本发明的示例的多处理器控制设备包括协作控制单元,其确定从处理器向共享资源发出的请求的优先级,所述共享资源用于在所述处理器的性能约束的范围内抑制所述处理器的总功耗 满足处理器执行的程序,并且确定每个处理器的频率,以便抑制在满足每个节目的性能约束的范围内的总功耗;发出来自处理器的请求的第一控制单元 根据由协作控制单元确定的优先级来分配给共享资源;以及第二控制单元,其根据由协作控制单元确定的频率来控制每个处理器的频率。