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    • 83. 发明授权
    • Electrochromic element and method of forming same
    • 电致变色元件及其形成方法
    • US08614848B2
    • 2013-12-24
    • US13286985
    • 2011-11-01
    • Miki UedaShinjiro OkadaMasaaki Shibata
    • Miki UedaShinjiro OkadaMasaaki Shibata
    • G02F1/153G02F1/15
    • G02F1/153
    • An electrochromic element includes a pair of transparent electrodes, and an electrolyte layer and an electrochromic layer disposed between the pair of transparent electrodes. Transmittance of light is changed by a voltage applied to the pair of transparent electrodes. The electrochromic layer includes a first electrochromic layer and a second electrochromic layer stacked upon each other. Both of the first and second electrochromic layers are made of titanium oxide. The first electrochromic layer is in contact with one of the pair of transparent electrodes. The second electrochromic layer is in contact with an electrolyte-layer side of the first electrochromic layer. A refractive index n0 of the transparent electrode in contact with the first electrochromic layer, a refractive index n1 of the first electrochromic layer, and a refractive index n2 of the second electrochromic layer satisfy the relationship n0
    • 电致变色元件包括一对透明电极,以及设置在该对透明电极之间的电解质层和电致变色层。 通过施加到一对透明电极的电压来改变光的透过率。 电致变色层包括彼此堆叠的第一电致变色层和第二电致变色层。 第一和第二电致变色层都由氧化钛制成。 第一电致变色层与一对透明电极中的一个接触。 第二电致变色层与第一电致变色层的电解质层侧接触。 与第一电致变色层接触的透明电极的折射率n0,第一电致变色层的折射率n1和第二电致变色层的折射率n2满足关系n0
    • 86. 发明申请
    • ELECTROCHROMIC ELEMENT AND METHOD OF FORMING SAME
    • 电致发光元件及其形成方法
    • US20120113496A1
    • 2012-05-10
    • US13286985
    • 2011-11-01
    • Miki UedaShinjiro OkadaMasaaki Shibata
    • Miki UedaShinjiro OkadaMasaaki Shibata
    • G02F1/153B23P17/04
    • G02F1/153
    • An electrochromic element includes a pair of transparent electrodes, and an electrolyte layer and an electrochromic layer disposed between the pair of transparent electrodes. Transmittance of light is changed by a voltage applied to the pair of transparent electrodes. The electrochromic layer includes a first electrochromic layer and a second electrochromic layer stacked upon each other. Both of the first and second electrochromic layers are made of titanium oxide. The first electrochromic layer is in contact with one of the pair of transparent electrodes. The second electrochromic layer is in contact with an electrolyte-layer side of the first electrochromic layer. A refractive index n0 of the transparent electrode in contact with the first electrochromic layer, a refractive index n1 of the first electrochromic layer, and a refractive index n2 of the second electrochromic layer satisfy the relationship n0
    • 电致变色元件包括一对透明电极,以及设置在该对透明电极之间的电解质层和电致变色层。 通过施加到一对透明电极的电压来改变光的透过率。 电致变色层包括彼此堆叠的第一电致变色层和第二电致变色层。 第一和第二电致变色层都由氧化钛制成。 第一电致变色层与一对透明电极中的一个接触。 第二电致变色层与第一电致变色层的电解质层侧接触。 与第一电致变色层接触的透明电极的折射率n0,第一电致变色层的折射率n1和第二电致变色层的折射率n2满足关系n0
    • 89. 发明授权
    • Wind turbine generator, active damping method thereof, and windmill tower
    • 风力发电机,主动阻尼法,风车塔
    • US08026623B2
    • 2011-09-27
    • US12727356
    • 2010-03-19
    • Tsuyoshi WakasaKazunari IdeYoshiyuki HayashiMasaaki Shibata
    • Tsuyoshi WakasaKazunari IdeYoshiyuki HayashiMasaaki Shibata
    • F03D9/00H02P9/04
    • F03D7/0224F03D7/0296F03D7/043F03D9/25F05B2260/71F05B2260/74F05B2260/821F05B2260/96F05B2270/1021F05B2270/309F05B2270/334F05B2270/404F05B2270/807Y02B10/30Y02E10/723
    • A wind turbine generator, an active damping method thereof, and a windmill tower in which vibrations of the wind turbine generator itself or the windmill tower can be reduced at low cost are provided. The acceleration due to vibrations of a nacelle is detected with an accelerometer attached to the nacelle. In an active damping unit, a pitch angle of windmill blades for generating a thrust on the windmill blades so as to cancel out the vibrations of the nacelle is calculated on the basis of the acceleration, and the pitch angle is output as a blade-pitch-angle command δθ* for damping. On the other hand, in a pitch-angle control unit, a pitch angle of the windmill blades for controlling the output to be a predetermined value is calculated, and the pitch angle is output as a blade-pitch-angle command θ* for output control. The blade-pitch-angle command δθ* for damping is combined with the blade-pitch-angle command θ* for output control using a subtracter. The pitch angle of the windmill blades is controlled on the basis of the resulting blade-pitch-angle command after combining.
    • 提供了一种风力发电机,其主动阻尼方法和风车塔,其中可以以低成本降低风力涡轮发电机本身或风车塔的振动。 由于机舱的振动引起的加速度是用连接到机舱的加速度计来检测的。 在主动阻尼单元中,基于加速度计算用于在风车叶片上产生推力以抵消机舱振动的风车叶片的俯仰角,并且俯仰角作为叶片间距输出 角度指令δ&thetas; *用于阻尼。 另一方面,在俯仰角控制单元中,计算用于将输出控制为规定值的风车叶片的俯仰角,作为桨距角度指令输出俯仰角; * 输出控制。 用于阻尼的叶片桨距角度指令δ与叶片桨距角度指令组合; *用于使用减法器进行输出控制。 在组合之后,基于所得到的叶片间距角命令来控制风车叶片的俯仰角。