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    • 31. 发明申请
    • Method of Configuring Cathodes of an Aluminum Reduction Cell
    • 配置铝还原电池阴极的方法
    • US20120279054A1
    • 2012-11-08
    • US13519942
    • 2010-12-31
    • Cairong ChenYi Yang
    • Cairong ChenYi Yang
    • H01M6/00
    • C25C3/08Y10T29/49108
    • The present invention discloses a method of configuring energy saving high and low cathodes of an aluminum reduction cell, said method comprising disposing cathode carbon blocks and cathode steel rods at the bottom of the aluminum reduction cell, the cathode carbon blocks being formed by staggering high cathode blocks and low cathode blocks with different thicknesses. Both sides of the portion of each of the high cathode blocks higher than each of the low cathode blocks must be machined into bevels or arc angles, so as to achieve a good choking effect. 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 saving energy and reducing energy consumption.
    • 本发明公开了一种配置铝还原电池的节能高低阴极的方法,所述方法包括在铝还原电池的底部设置阴极碳块和阴极钢棒,阴极碳块由交错的高阴极 块和不同厚度的低阴极块。 每个高阴极块的高于每个低阴极块的部分的两侧必须加工成斜角或弧角,以获得良好的阻塞效果。 本发明可以更好地提高铝还原电池中熔融铝 - 电解质界面的稳定性,在正常生产过程中有效降低极距,并实现还原电池的较低工作电压,从而节约能源并降低能耗。
    • 32. 发明申请
    • Optical Transceiver Integrated with Optical Time Domain Reflectometer Monitoring
    • 集成光时域反射计监控的光收发器
    • US20120243863A1
    • 2012-09-27
    • US13309983
    • 2011-12-02
    • Fuqiang ZHAOYi YangYong Lu
    • Fuqiang ZHAOYi YangYong Lu
    • H04B10/08
    • H04B10/272H04B10/071H04B10/40
    • An optical transceiver having an integrated optical time domain reflectometer monitoring unit and methods for using the same are disclosed. The disclosure relates to an optical transceiver comprising an optical device comprising a wavelength division multiplexing system (WDM), a data signal driver, a data signal limiting amplifier, and an optical time domain reflectometer (OTDR) data processing module. Furthermore, the optical transceiver is particularly advantageous in an optical line terminal (OLT) and/or a passive optical network (PON). The integrated OTDR data processing module can protect the optical transceiver, ensure successful monitoring data, simplify network wiring and decrease system and network costs by decreasing the number of OTDR modules and WDM units.
    • 公开了一种具有集成光时域反射计监视单元的光收发器及其使用方法。 本公开涉及一种光收发器,包括包括波分复用系统(WDM),数据信号驱动器,数据信号限幅放大器和光时域反射计(OTDR)数据处理模块的光学装置。 此外,光收发器在光线路终端(OLT)和/或无源光网络(PON)中是特别有利的。 集成的OTDR数据处理模块可以通过减少OTDR模块和WDM单元的数量来保护光收发器,确保成功监控数据,简化网络布线,降低系统和网络成本。
    • 33. 发明授权
    • Method and apparatus to elect ABRs dynamically and intelligently
    • 动态和智能地选择ABR的方法和装置
    • US08130638B2
    • 2012-03-06
    • US11339791
    • 2006-01-24
    • Yi YangAlvaro E. RetanaAbhay RoyAlfred C. Lindem, IIISina Mirtorabi
    • Yi YangAlvaro E. RetanaAbhay RoyAlfred C. Lindem, IIISina Mirtorabi
    • H04L12/26
    • H04L45/04
    • The present invention elects an area border router from a plurality of potential area border routers by determining a full set of all areas attached to a router. A determination is made as to a full set of area pairs from the determined full set of areas. Routers are identified in a first area of the determined full set of areas that are reachable through an intra-area route in the first area, and routers are identified in a second area of the determined full set of areas that are reachable through an intra-area route in the second area. If there is a router that is unreachable through either an intra-area route in the first area or an intra-area route in the second area, then declare the first router to be an area border router, else new first and second areas are selected.
    • 本发明通过确定连接到路由器的所有区域的完整集合,从多个潜在区域边界路由器中选择区域边界路由器。 根据所确定的整套区域确定一整套区域对。 路由器被识别在通过第一区域中的区域内路由可达到的所确定的全集合区域中的第一区域中,并且路由器被识别在所确定的全集合区域中, 区域路线在第二个地区。 如果存在通过第一区域内的区域内路由或第二区域内的区域内路由不可达的路由器,则将第一路由器声明为区域边界路由器,否则选择新的第一和第二区域 。
    • 36. 发明授权
    • System and method for enhancing network stability by selectively controlling adjacency formation
    • 通过选择性地控制邻接形成来提高网络稳定性的系统和方法
    • US08036213B1
    • 2011-10-11
    • US11395846
    • 2006-03-30
    • Thuan Van TranDonnie Van SavageDonald Earl Slice, Jr.Steven Edward MooreYi YangJames L. Ng
    • Thuan Van TranDonnie Van SavageDonald Earl Slice, Jr.Steven Edward MooreYi YangJames L. Ng
    • H04L12/66
    • H04W40/12H04L45/00H04L45/123
    • A system and method for facilitating connecting a switch to a network to improve network performance. In an illustrative embodiment, the system includes a first module for determining when the switch is initially connected to a network and providing a signal in response thereto. A second module selectively forms adjacencies with peers of the switch in response to the signal and based on one or more predetermined parameters. In a more specific embodiment, the switch is a router or Layer-3 (L3) switch. The one or more predetermined parameters include a load factor, values pertaining to capabilities of a processor included in the router, bandwidth capabilities of the interface and/or the router, internal router queue counts, and so on. The router employs a routing protocol such as Enhanced Interior Gateway Routing Protocol (EIGRP). The second module throttles and adjacency-formation rate based on the predetermined parameters.
    • 一种便于将交换机连接到网络以提高网络性能的系统和方法。 在说明性实施例中,系统包括第一模块,用于确定交换机何时最初连接到网络并提供响应于此的信号。 响应于该信号并且基于一个或多个预定参数,第二模块选择性地与交换机的对等体形成邻接。 在更具体的实施例中,交换机是路由器或第3层(L3)交换机。 一个或多个预定参数包括负载因子,与路由器中包括的处理器的能力有关的值,接口和/或路由器的带宽能力,内部路由器队列计数等等。 路由器采用路由协议,如增强型内部网关路由协议(EIGRP)。 基于预定参数的第二模块节流和邻接形成速率。
    • 37. 发明申请
    • LENS GENERATING A BATWING-SHAPED BEAM DISTRIBUTION, AND METHOD THEREFOR
    • 一种产生一种电子束形光束分布的镜头及其方法
    • US20110141734A1
    • 2011-06-16
    • US13023571
    • 2011-02-09
    • Ming LiYi Yang
    • Ming LiYi Yang
    • F21V5/04
    • F21V5/04F21K9/27F21K9/69F21S4/28F21V5/08F21V7/0091F21V9/00F21V9/08F21V29/507F21V29/89F21W2131/305F21Y2103/10F21Y2115/10G02B19/0028G02B19/0066
    • A lens to redirect light, having an angular distribution centered around a left-right symmetry plane (LRSP), from a light source. The lens includes an incident face, facing the light source, which includes an incident corner, which divides the incident face into incident inner and outer zones and is concave, forming an obtuse angle in air. The lens also includes an opposite exiting face, which similarly includes an exciting corner, which similarly divides the exiting face. Each ray striking the incident inner zone transmits through the lens, striking the exiting inner zone. Each ray striking the incident outer zone transmits through the lens, striking the exiting outer zone. Each ray striking the incident face, transmits through the lens, strikes the exiting face, and refracts out of the lens, has initial and final propagation angles with respect to the LRSP. The final propagation angle is greater than the initial propagation angle.
    • 用于重定向光的透镜,具有从光源围绕左右对称平面(LRSP)居中的角度分布。 透镜包括面对光源的入射面,其包括入射角,入射角将入射面分为入射的内部和外部区域,并且是凹入的,在空气中形成钝角。 透镜还包括相反的出射面,其类似地包括激发角,其类似地划分出射面。 撞击入射的内部区域的每个射线透过透镜穿过离开的内部区域。 撞击入射外部区域的每条射线透过透镜穿过离开的外部区域。 射入入射面的每根射线透过透镜撞击出射面并折射出透镜,具有相对于LRSP的初始和最终传播角度。 最终传播角度大于初始传播角度。
    • 39. 发明授权
    • Signal processing method, processing apparatus and voice decoder
    • 信号处理方法,处理装置和语音解码器
    • US07835912B2
    • 2010-11-16
    • US12539158
    • 2009-08-11
    • Wuzhou ZhanDongqi WangYongfeng TuJing WangQing ZhangLei MiaoJianfeng XuChen HuYi YangZhengzhong DuFengyan Qi
    • Wuzhou ZhanDongqi WangYongfeng TuJing WangQing ZhangLei MiaoJianfeng XuChen HuYi YangZhengzhong DuFengyan Qi
    • G10L13/00G10L19/00
    • G10L19/005
    • The present invention discloses a signal processing method adapted to process a synthesized signal in packet loss concealment. The method includes the following steps: receiving a good frame following a lost frame, obtaining an energy ratio of energy of a signal in the signal of the good frame signal to energy of a synthesized signal corresponding to the same time of the good frame; and adjusting the synthesized signal in accordance with the energy ratio. The present invention also discloses a signal processing apparatus and a voice decoder. Through using the method provided by the present invention, the synthesized signal is adjusted in accordance with the energy ratio of the energy of the first good frame following the lost frame to the energy of the synthesized signal to ensure that there be not a waveform sudden change or an energy sudden change at the place where the lost frame and the first good frame following the lost frame are jointed in the synthesized signal, to realize the waveform's smooth transition and to avoid music noises.
    • 本发明公开了一种适用于处理分组丢失隐藏中的合成信号的信号处理方法。 该方法包括以下步骤:接收丢失帧之后的良好帧,获得良好帧信号的信号中的信号的能量与对应于良好帧的相同时间的合成信号的能量的能量比; 并根据能量比调整合成信号。 本发明还公开了一种信号处理装置和语音解码器。 通过使用本发明提供的方法,根据丢失帧之后的第一好帧的能量​​与合成信号的能量的能量比来调整合成信号,以确保没有波形突然变化 或者丢失帧和丢失帧之后的第一好帧相连接在合成信号中的位置处的能量突然变化,以实现波形的平滑过渡并避免音乐噪声。