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    • 2. 发明授权
    • Shelf assembly and refrigerator comprising the same
    • 包括其的货架组件和冰箱
    • US09353988B2
    • 2016-05-31
    • US14363238
    • 2011-12-31
    • Dongxian LiuJun YaoWei RenJian ChengLingyun Li
    • Dongxian LiuJun YaoWei RenJian ChengLingyun Li
    • A47B96/04F25D25/02F25D23/00F25D23/02A47B57/08
    • F25D25/024A47B57/08F25D23/00F25D23/028F25D25/02
    • A shelf assembly and a refrigerator including the same. The shelf assembly includes: a shelf plate having first to fourth mounting members, and first to fourth brackets each having a fitting slot, in which the first and second brackets are disposed at a left and right side of the shelf plate respectively. The fitting slot of each of the first and second brackets includes a first sliding groove and a plurality of first receiving grooves. The first and second mounting members are slidable within the first sliding groove of the first and second brackets along the vertical direction so as to selectively fit within one of the plurality of the first receiving grooves. The third and fourth mounting members are fitted within the fitting slot of the third and fourth brackets and a position of the third and fourth mounting members are adjustable along the vertical direction.
    • 搁架组件和包括该组件的冰箱。 搁架组件包括:具有第一至第四安装构件的搁板,以及分别具有配合槽的第一至第四托架,其中第一和第二托架分别设置在搁板的左侧和右侧。 第一和第二支架中的每一个的配合槽包括第一滑动槽和多个第一容纳槽。 第一和第二安装构件可在第一和第二托架的第一滑动槽内沿着垂直方向滑动,以便选择性地装配在多个第一容纳槽之一内。 第三和第四安装构件安装在第三和第四托架的配合槽内,并且第三和第四安装构件的位置沿垂直方向可调节。
    • 4. 发明申请
    • REFRIGERATOR
    • 冰箱
    • US20140216084A1
    • 2014-08-07
    • US14240859
    • 2011-11-24
    • Wei RenLingyun LiJian Cheng
    • Wei RenLingyun LiJian Cheng
    • F25D11/04
    • F25D11/04F25B2600/112F25B2600/2511F25D17/065F25D29/00F25D2400/30F25D2700/121Y02B30/743
    • A refrigerator is provided. The refrigerator comprises: a main body; at least one freezing chamber disposed in the main body and comprising at least one quick-freezing chamber; a freezing evaporator disposed in the main body and behind the at least one freezing chamber, and spaced apart from the at least one freezing chamber via a freezing air duct cover plate; a freezing fan corresponding to the at least one freezing chamber and a quick-freezing fan corresponding to the at least one quick-freezing chamber, being disposed above the freezing evaporator respectively and configured to blow cold air generated by the freezing evaporator into the at least one freezing chamber and the at least one quick-freezing chamber respectively; and a controller configured to control the freezing fan and the quick-freezing fan, wherein the controller controls the quick-freezing fan to quick-freeze the at least one quick-freezing chamber when needed.
    • 提供冰箱。 冰箱包括:主体; 至少一个冷冻室,其设置在所述主体中并且包括至少一个快速冷冻室; 冷冻蒸发器,其设置在所述主体中并且位于所述至少一个冷冻室的后面,并且经由冷冻空气管道盖板与所述至少一个冷冻室隔开; 对应于至少一个冷冻室的冷冻风扇和对应于至少一个快速冷冻室的快速冷冻风扇,分别设置在冷冻蒸发器的上方,并且构造成将由冷冻蒸发器产生的冷空气吹入至少 一个冷冻室和至少一个速冻室; 以及控制器,被配置为控制所述冷冻风扇和所述快速冷冻风扇,其中所述控制器控制所述快速冷冻风扇以在需要时快速冷冻所述至少一个快速冷冻室。
    • 7. 发明申请
    • METHOD FOR UPLINK TRANSMISSION OF RADIO LINK CONTROL LAYER AND EVOLVED NODE B
    • 无线链路控制层和演进节点B的上行链路传输方法
    • US20130170461A1
    • 2013-07-04
    • US13820361
    • 2011-05-16
    • Wei Ren
    • Wei Ren
    • H04W72/04
    • H04W72/0413H04L1/1893H04L1/1896H04W28/04H04W72/042H04W72/1284
    • A method for RLC layer uplink transmission and an ENB are provided. The method comprises: step A, after a terminal initiated RLC layer transmission of service or uplink signaling in uplink acknowledged mode, the ENB stores identifier of the terminal and information of RLC layer segment. The information of the RLC layer segment comprises size of the RLC layer segment. Step B, the ENB detects scheduling request message sent by terminal, and when the terminal determined that the ENB does not correctly receive the uplink signaling or the service initiated by terminal, the scheduling request message is configured to trigger an RLC layer retransmission of the uplink signaling or the service. Step C, according to size of the RLC layer segment stored, the ENB performs uplink authorization to the terminal, determines radio resource to be allocated for the terminal, and transmits information of the allocated radio resource to the terminal.
    • 提供一种用于RLC层上行链路传输和ENB的方法。 该方法包括:步骤A,在上行确认模式下终端发起服务或上行信令的RLC层传输之后,ENB存储终端的标识符和RLC层段的信息。 RLC层段的信息包括RLC层段的大小。 步骤B,ENB检测由终端发送的调度请求消息,当终端确定ENB未正确接收到上行信令或由终端发起的业务时,调度请求消息被配置为触发上行链路的RLC层重传 信令或服务。 步骤C,根据存储的RLC层段的大小,ENB向终端执行上行授权,确定要为终端分配的无线电资源,并将所分配的无线电资源的信息发送到终端。
    • 8. 发明申请
    • Automatic Welding Method
    • 自动焊接方式
    • US20120305531A1
    • 2012-12-06
    • US13339535
    • 2011-12-29
    • Chi-Wah KeongLung-Tien WuWei- Ren ChiangChih-Lun Lin
    • Chi-Wah KeongLung-Tien WuWei- Ren ChiangChih-Lun Lin
    • B23K25/00
    • B23K9/032
    • An automatic welding method includes a preliminary step and a joining step. The preliminary step is configured to place a metal object having a multi-dimensional curved weld zone on a platform, and to clamp a welding torch with a welding torch clamping device. The joining step is configured to generate a relative movement between a tip of the welding torch and the multi-dimensional curved weld zone of the metal object, and to electrify the welding torch to weld the metal object by way of short circuiting arc transfer. An angle difference between a reference position and an instant position of the welding torch is 0 to 135 degrees when the welding torch welds the metal object, so as to keep the slag from spraying, wherein the welding torch is at the reference position when the tip thereof is pointed straight down towards the ground.
    • 一种自动焊接方法,包括预备步骤和接合步骤。 预备步骤被配置为将具有多维弯曲焊接区域的金属物体放置在平台上,并用焊枪夹紧装置夹紧焊枪。 接合步骤被配置为产生焊炬的尖端和金属物体的多维弯曲焊接区之间的相对移动,并且通过短路电弧传递来使焊炬通电以焊接金属物体。 当焊炬焊接金属物体时,焊炬的参考位置和即时位置之间的角度差为0至135度,以便保持炉渣不被喷射,其中焊炬处于参考位置时,当尖端 它向下指向地面。
    • 10. 发明申请
    • Systems, Methods, and Apparatus for Coordinated Volt/VAR Control in Power Distribution Networks
    • 配电网协调伏/ VAR控制的系统,方法和装置
    • US20120197450A1
    • 2012-08-02
    • US13095263
    • 2011-04-27
    • Michael Joseph KrokWei RenSahika Genc
    • Michael Joseph KrokWei RenSahika Genc
    • G05F5/00
    • H02J3/16H02J2003/003Y02E40/34
    • Certain embodiments of the invention may include systems, methods, and apparatus for providing coordinated volt/volt-amps-reactive (VAR) control in power distribution networks. According to an example embodiment of the invention, a method is provided for coordinating voltage and volt-amps-reactive (VAR) control (VVC) in power distribution networks. The method can include receiving one or more VVC objective functions from a distribution management system (DMS); determining at least one microgrid conservation voltage reduction factor (CVRF); forecasting microgrid load profile for a predetermined period of time; controlling microgrid VVC resources based at least on the one or more received VVC objective functions; and communicating the at least one microgrid CVRF and the forecasted load profile to the DMS.
    • 本发明的某些实施例可以包括用于在配电网络中提供协调的伏特/伏安反应(VAR)控制的系统,方法和装置。 根据本发明的示例性实施例,提供了一种用于协调配电网络中的电压和电压反应(VAR)控制(VVC)的方法。 该方法可以包括从分发管理系统(DMS)接收一个或多个VVC目标函数; 确定至少一个微电网保护电压降低因子(CVRF); 在预定时间段内预测微电网负载曲线; 至少基于一个或多个所接收的VVC目标函数来控制微电网VVC资源; 以及将所述至少一个微网CVRF和所预测的负载分布传送到所述DMS。