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    • 71. 发明申请
    • LIGHT SOURCE AND ILLUMINATING DEVICE
    • 光源和照明装置
    • US20150109773A1
    • 2015-04-23
    • US14364387
    • 2012-08-29
    • Yi LiQuan ZhangYi Yang
    • Yi LiQuan ZhangYi Yang
    • F21V13/12F21K99/00
    • F21V13/12F21K9/60F21V5/007F21V5/008F21Y2101/00F21Y2105/10F21Y2113/10F21Y2115/10H01L25/0753H01L33/54H01L33/58H01L2924/0002H01L2924/00
    • light source comprises a light emitting diode array (101) and a collimator array (102). The light emitting diode array (101) comprises at least two light emitting diode units (101a, 101b) that emit light of different colors; the collimator array (102) is used for collimating light emitted by the light emitting diode units (101a, 101b) and keep the optical extension of the light emitted by the light emitting diode units (101a, 101b) substantially unchanged. The light source further comprises a dodging device (103) used for dodging light emerging from the collimator array (102). An illuminating device comprises the light source. The light emitting diode units (101a, 101b) and the collimator unit (102a) in the light source and the illuminating device minimize the optical extension of the emergent light, thereby maximizing the luminance.
    • 光源包括发光二极管阵列(101)和准直器阵列(102)。 发光二极管阵列(101)包括发射不同颜色的光的至少两个发光二极管单元(101a,101b) 准直器阵列(102)用于准直由发光二极管单元(101a,101b)发射的光,并且保持由发光二极管单元(101a,101b)发射的光的光学延伸基本上不变。 光源还包括用于躲避从准直仪阵列(102)出射的光的闪避装置(103)。 照明装置包括光源。 光源中的发光二极管单元(101a,101b)和准直器单元(102a)和照明装置使出射光的光学延伸最小化,从而使亮度最大化。
    • 72. 发明申请
    • LIGHT SOURCE AND DISPLAY SYSTEM
    • 光源和显示系统
    • US20150023012A1
    • 2015-01-22
    • US14352532
    • 2012-08-13
    • Yi YangFei Hu
    • Yi YangFei Hu
    • G02B27/14F21K99/00G02B27/10
    • Disclosed are a light source and a display system. The light source comprises at least one original light emitting device group (1) and at least one supplementary light emitting device group (2). The original light emitting device group (1) comprises at least two LED (11, 12, 13) and a wavelength light combining device (14, 15), wherein the energy of the overlapped spectrum in the normalized spectrum of the two LED is smaller than 50% of the smaller energy of the two, and the wavelength light combining device combines the light output from all the LED in the original light emitting device group (1) in a wavelength light combining way. The supplementary light emitting device group (2) comprises at least one LED (21). The energy of the overlapped spectrum in the normalized spectrum of any LED of the supplementary light emitting device group (2) and at least one LED of the original light emitting device group (1) is larger than or equal to 10% of the smaller energy of the two. The light source also comprises a geometric light combining device (31), which combines the light finally output from the original light emitting device group (1) and the light finally output from the supplementary light emitting device group (2) into one beam of light in a geometric light combining way.
    • 公开了光源和显示系统。 光源包括至少一个原始发光器件组(1)和至少一个辅助发光器件组(2)。 原始发光器件组(1)包括至少两个LED(11,12,13)和波长光合成器件(14,15),其中两个LED的归一化光谱中的重叠光谱的能量较小 超过两者的较小能量的50%,并且波长光组合装置以波长发光组合方式组合原始发光器件组(1)中的所有LED的光输出。 辅助发光器件组(2)包括至少一个LED(21)。 辅助发光器件组(2)中的任何LED和原始发光器件组(1)的至少一个LED的归一化光谱中的重叠光谱的能量大于或等于较小能量的10% 的两个。 光源还包括几何光合成装置(31),其将从原始发光装置组(1)最终输出的光与从辅助发光装置组(2)最终输出的光组合成一束光 以几何光合并的方式。
    • 73. 发明授权
    • Method and apparatus for solid state illumination
    • 固态照明的方法和装置
    • US08740406B2
    • 2014-06-03
    • US13594162
    • 2012-08-24
    • Yi YangYi LiFei Hu
    • Yi YangYi LiFei Hu
    • F21V9/00G03B21/20
    • G03B21/204
    • A light source includes two excitation light sources generating two respective excitation lights, a filter, and a wavelength conversion material. The second excitation light has a peak wavelength shorter than that of the first excitation light. The transmittance curves of the filter are dependent on the input angle. The first and second excitation lights are inputted to the filter at angles smaller than a first threshold angle, and angles between the first and a third threshold angle, respectively. Both excitation lights pass through the filter to excite the wavelength conversion material, which generates a converted light but reflects some of the excitation lights. Part of the reflected first excitation light reaches the filter at input angles greater than a second threshold angle and is reflected by the filter back to the wavelength conversion material for recycling. The third and second threshold angles are greater than the first threshold angle.
    • 光源包括产生两个相应的激发光,滤光器和波长转换材料的两个激发光源。 第二激发光的峰值波长比第一激发光短。 滤光片的透射率曲线取决于输入角度。 第一和第二激励光分别以小于第一阈值角度的角度和第一和第三阈值角度之间的角度输入到滤波器。 两个激发光通过滤光器以激发波长转换材料,其产生转换的光,但反射一些激发光。 反射的第一激发光的一部分以大于第二阈值角的输入角度到达滤光器,并被滤光器反射回波长转换材料以进行再循环。 第三和第二阈值角度大于第一阈值角度。
    • 74. 发明申请
    • METHOD AND DEVICE FOR TRIGGERING HANDOVER AND TRANSFERRING MOBILITY MANAGEMENT ENTITY POOL IDENTIFICATION INFORMATION
    • 用于触发切换和传输移动性管理实体池标识信息的方法和设备
    • US20140051442A1
    • 2014-02-20
    • US13984534
    • 2012-02-29
    • Yi YangWei BaoBin Jiao
    • Yi YangWei BaoBin Jiao
    • H04W36/00
    • H04W36/0061H04W36/12H04W84/047
    • Embodiments of the present application relate to the technical field of wireless telecommunications, and disclose a method and device for triggering a handover and transferring mobility management entity (MME) pool identification information. The present application solves the problem of transferring UE context information to the MME pool to which a target donor eNB (DeNB) belongs after a relay node (RN) changes DeNB. In the present application, after an RN switches from a source DeNB to a target DeNB, the RN, according to the acquired identification information of the MME pool to which the target DeNB belongs, determines whether the target DeNB and the source DeNB belong to the same MME pool; if the determination is negative, the RN transmits a handover request to the MME of a UE connecting to the RN, the handover request carrying the RN identifier as the target identifier. The present application enables the transfer of UE context to the MME pool to which the target DeNB belongs.
    • 本申请的实施例涉及无线电信技术领域,并且公开了一种用于触发切换并传送移动性管理实体(MME)池识别信息的方法和设备。 本申请解决了在中继节点(RN)改变DeNB之后将UE上下文信息传送到目标供体eNB(DeNB)所属的MME池的问题。 在本申请中,在RN从源DeNB切换到目标DeNB之后,根据获取的目标DeNB所属的MME池的识别信息,确定目标DeNB和源DeNB是否属于 相同的MME池; 如果确定为否定,RN向连接到RN的UE的MME发送切换请求,该移动请求携带RN标识符作为目标标识符。 本申请能够将UE上下文传送到目标DeNB所属的MME池。
    • 76. 发明申请
    • PROJECTION SYSTEM, LIGHT SOURCE SYSTEM AND LIGHT SOURCE ASSEMBLY
    • 投影系统,光源系统和光源组件
    • US20130258639A1
    • 2013-10-03
    • US13992243
    • 2011-12-07
    • Fei HuYi LiYi Yang
    • Fei HuYi LiYi Yang
    • F21V9/08
    • G03B21/204F21K9/64F21S10/007F21V9/08F21V9/30F21V9/40F21V13/08F21Y2101/00F21Y2115/00F21Y2115/10G02B19/0028G02B19/0047G02B26/008G02F2002/006G03B21/14G03B21/2066G03B21/28H04N9/3114H04N9/3117H04N9/315H04N9/3155H04N2209/043
    • Provided is a projection system, a light source system, and a light source assembly. The light source system (100) comprises an excitation light source (101), a wavelength conversion device (106), a color filtering device (107), a drive device (108), and a first optical assembly. The wavelength conversion device (106) comprises at least one wavelength conversion region. The optical filtering device (107) is fixed face-to-face with the wavelength conversion device (106), and comprises at least a first optical filtering region. The drive device (108) drives the wavelength conversion device (106) and the optical filtering device (107), allowing the wavelength conversion region and the first optical filtering region to act synchronously, and the wavelength conversion region is periodically set on the propagation path of the excitation light, thereby converting the excitation light wavelength into converted light. The first optical assembly allows the converted light to be incident on the first optical filtering region. The first optical filtering region filters the converted light, so as to enhance the color purity of the converted light. The light source system is simple in structure, easy to implement, and highly synchronous.
    • 提供了投影系统,光源系统和光源组件。 光源系统(100)包括激发光源(101),波长转换装置(106),滤色装置(107),驱动装置(108)和第一光学组件。 波长转换装置(106)包括至少一个波长转换区域。 光学滤波装置(107)与波长转换装置(106)面对面地固定,并且至少包括第一光学滤波区域。 驱动装置(108)驱动波长转换装置(106)和光学滤波装置(107),允许波长转换区域和第一光学滤波区域同步地进行,波长转换区域周期性地设置在传播路径 的激发光,从而将激发光波长转换成转换光。 第一光学组件允许转换的光入射在第一光学过滤区域上。 第一光学滤波区域对转换后的光进行滤光,从而提高转换光的色纯度。 光源系统结构简单,易于实现,高度同步。
    • 78. 发明申请
    • Replaceable Cathode Choking Devices of Aluminum Reduction Cell
    • 铝还原电池可更换阴极扼流装置
    • US20130233704A1
    • 2013-09-12
    • US13520936
    • 2011-01-06
    • Yi YangPu ZhengCanming Xi
    • Yi YangPu ZhengCanming Xi
    • C25C3/08
    • C25C3/08
    • The present invention discloses replaceable cathode choking devices of an aluminum reduction cell which comprises cathode carbon blocks and cathode choking devices placed at the bottom of the aluminum reduction cell. The cathode choking devices are placed on surfaces of the cathode carbon blocks. The cathode choking devices are made of mullite, spinel or zirconite which is high temperature resistant, corrosion resistant and of high specific gravity. The cathode choking devices have a cross-section of semicircular, arc or streamline shape. The cathode choking devices have a height of 50-150 mm and a width of 100-300 mm. The cathode choking devices are elongated block-shaped. The cathode choking devices are placed in a direction along a long side of a cathode of the reduction cell, wherein one or more cathode choking devices are placed as a group. The present invention can better improve the stability of molten aluminum-electrolyte interface within the aluminum reduction cell, decrease the polar distance effectively during normal production and achieve a lower operating voltage of the reduction cell, thereby realize the effect of energy saving and consumption reduction.
    • 本发明公开了一种铝还原电池的可替换的阴极阻塞装置,其包括放置在铝还原电池底部的阴极碳块和阴极阻塞装置。 阴极阻塞装置放置在阴极碳块的表面上。 阴极窒息装置由耐高温,耐腐蚀和高比重的莫来石,尖晶石或锆石制成。 阴极阻塞装置具有半圆形,弧形或流线形状的横截面。 阴极阻塞装置的高度为50-150mm,宽度为100-300mm。 阴极阻塞装置是细长的块状的。 阴极阻塞装置沿着还原电池的阴极的长边的方向放置,其中一个或多个阴极阻塞装置作为一组放置。 本发明可以更好地提高铝还原电池中的铝铝电解质界面的稳定性,在正常生产过程中有效降低极距,达到还原电池的较低工作电压,从而实现节能降耗的效果。