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    • 1. 发明申请
    • ENERGY-SAVING OPTIMIZED CONTROL SYSTEM AND METHOD FOR REFRIGERATION PLANT ROOM
    • 节能优化控制系统和制冷设备房的方法
    • US20130167560A1
    • 2013-07-04
    • US13823535
    • 2010-10-13
    • Hoyuen WongGang Wu
    • Hoyuen WongGang Wu
    • F25D29/00
    • F25D29/00G05B15/02G05B2219/2638Y02P80/114
    • An energy-saving optimized control system for a chiller plant room comprises an industry control computer (1), a flow sensor (4), a temperature sensor (5), an outdoor temperature and humidity sensor (6), a three-phase active power transmitter (7), a water pump variable speed driver (9) and a cooling tower fan variable speed driver (10), which are respectively connected with a programmable controller (2), wherein the programmable controller (2) communicates with the industrial control computer (1) through an industrial Ethernet; and an RS485 communication interface module (3) is connected with chillers and communicates with the industrial control computer (1) through a ModBus protocol. An energy-saving optimized control method for a chiller plant room is also provided. By establishing a mathematical model of the relationship between the energy consumption and operation parameters of each equipment in the refrigeration plant room and combining the real-time cooling loads and weather parameters, the operating state of each equipment is adjusted so as to reach the lowest operating energy consumption of the whole chiller plant room under the premise of meeting the cooling loads.
    • 一种用于制冷机房的节能优化控制系统包括工业控制计算机(1),流量传感器(4),温度传感器(5),室外温湿度传感器(6),三相有源 电力变送器(7),水泵变速驱动器(9)和冷却塔风扇变速驱动器(10),分别与可编程控制器(2)连接,其中可编程控制器(2)与工业 控制计算机(1)通过工业以太网; RS485通信接口模块(3)与冷却器连接,通过ModBus协议与工业控制计算机(1)进行通信。 还提供了一种用于冷水机房的节能优化控制方法。 通过建立制冷机房各设备能耗与运行参数关系的数学模型,结合实时制冷负荷和天气参数,调整各设备的运行状态,达到最低运行 在满足冷却负荷的前提下,整个冷水机房的能耗。
    • 2. 发明授权
    • Energy-saving optimized control system and method for refrigeration plant room
    • 节能优化控制系统及制冷机房方法
    • US09423172B2
    • 2016-08-23
    • US13823535
    • 2010-10-13
    • Hoyuen WongGang Wu
    • Hoyuen WongGang Wu
    • F25D29/00G05B15/02
    • F25D29/00G05B15/02G05B2219/2638Y02P80/114
    • An energy-saving optimized control system for a chiller plant room comprises an industry control computer, a flow sensor, a temperature sensor, an outdoor temperature and humidity sensor, a three-phase active power transmitter, a water pump variable speed driver and a cooling tower fan variable speed driver, which are respectively connected with a programmable controller, wherein the programmable controller communicates with the industrial control computer through an industrial Ethernet; and an RS485 communication interface module is connected with chillers and communicates with the industrial control computer through a ModBus protocol. An energy-saving optimized control method for a chiller plant room is also provided. By establishing a mathematical model of the relationship between the energy consumption and operation parameters of each equipment in the refrigeration plant room and combining the real-time cooling loads and weather parameters, the operating state of each equipment is adjusted so as to reach the lowest operating energy consumption of the whole chiller plant room under the premise of meeting the cooling loads.
    • 一种用于冷冻机房的节能优化控制系统包括工业控制计算机,流量传感器,温度传感器,室外温湿度传感器,三相有功功率变送器,水泵变速驱动器和冷却 塔式风扇变速驱动器分别与可编程控制器连接,其中可编程控制器通过工业以太网与工业控制计算机通信; RS485通讯接口模块与冷却器连接,并通过ModBus协议与工控机通讯。 还提供了一种用于冷水机房的节能优化控制方法。 通过建立制冷机房各设备能耗与运行参数关系的数学模型,结合实时制冷负荷和天气参数,调整各设备的运行状态,达到最低运行 在满足冷却负荷的前提下,整个冷水机房的能耗。
    • 7. 发明授权
    • Nitrogen-doped carbon-supported cobalt-iron oxygen reduction catalyst
    • 氮掺杂碳载钴钴氧还原催化剂
    • US08709295B2
    • 2014-04-29
    • US13094594
    • 2011-04-26
    • Piotr ZelenayGang Wu
    • Piotr ZelenayGang Wu
    • H01B1/22B01J33/00
    • H01M4/9083H01M4/9041H01M2008/1095
    • A Fe—Co hybrid catalyst for oxygen reaction reduction was prepared by a two part process. The first part involves reacting an ethyleneamine with a cobalt-containing precursor to form a cobalt-containing complex, combining the cobalt-containing complex with an electroconductive carbon supporting material, heating the cobalt-containing complex and carbon supporting material under conditions suitable to convert the cobalt-containing complex and carbon supporting material into a cobalt-containing catalyst support. The second part of the process involves polymerizing an aniline in the presence of said cobalt-containing catalyst support and an iron-containing compound under conditions suitable to form a supported, cobalt-containing, iron-bound polyaniline species, and subjecting said supported, cobalt-containing, iron bound polyaniline species to conditions suitable for producing a Fe—Co hybrid catalyst.
    • 通过两部分方法制备用于氧反应还原的Fe-Co杂化催化剂。 第一部分涉及使乙烯胺与含钴前体反应以形成含钴络合物,将含钴络合物与导电碳载体材料结合,在适于转化含钴络合物的条件下加热含钴络合物和碳载体材料 含钴络合物和碳载体材料转化成含钴催化剂载体。 该方法的第二部分涉及在所述含钴催化剂载体和含铁化合物的存在下在适于形成负载的,含钴的,铁结合的聚苯胺物质的条件下聚合苯胺,并将所述负载的钴 含铁的结合聚苯胺物种适用于生产Fe-Co杂化催化剂的条件。
    • 8. 发明申请
    • RESOLUTION METHOD AND APPARATUS FOR SIMULTANEOUS TRANSMISSION AND RECEIVING CONTENTION IN A DEVICE-TO-DEVICE CELLULAR REUSE SYSTEM
    • 解决方案和设备同步传输和接收设备到设备细胞再利用系统中的内容的方法
    • US20130128858A1
    • 2013-05-23
    • US13813779
    • 2010-08-04
    • Wei ZouZhenhong LiHaifeng WangGang Wu
    • Wei ZouZhenhong LiHaifeng WangGang Wu
    • H04W72/04
    • H04W72/044H04W16/10H04W72/02H04W72/0453H04W76/14
    • According to one embodiment, a method for transmission/reception contention resolution in D2D communication is provided. The method includes detecting, at a device-to-device (D2D) node, re-usable cellular resources based on the scheduling information. The method also includes receiving related information from another D2D node identifying the re-usable cellular resources for the another D2D node, and identifying common and different re-usable cellular resources between the D2D node and the another D2D node. The method also includes receiving updated scheduling information, and determining, from the detected re-usable cellular resources, whether there is a simultaneous transmission/reception contention. When it is determined that there is a simultaneous transmission/reception contention, the method includes resolving the contention by dynamically selecting a direction of communication based on a preconfigured decision criteria, wherein the direction of communication is one of transmission or reception.
    • 根据一个实施例,提供了一种在D2D通信中发送/接收争用解决方法。 该方法包括在设备到设备(D2D)节点处基于调度信息检测可重用的蜂窝资源。 该方法还包括从另一个D2D节点接收标识用于另一个D2D节点的可重新使用的蜂窝资源的相关信息,以及识别D2D节点和另一个D2D节点之间的公共和不同的可重新使用的蜂窝资源。 该方法还包括接收更新的调度信息,以及从检测到的可重复使用的蜂窝资源确定是否存在同时发送/接收争用。 当确定存在同时发送/接收争用时,该方法包括通过基于预先配置的决定标准动态选择通信方向来解决争用,其中通信方向是发送或接收之一。
    • 9. 发明申请
    • DYNAMIC DETERMINATION OF NUMBER OF SERVED ADVERTISEMENTS
    • 动态确定服务广告数量
    • US20130117110A1
    • 2013-05-09
    • US13291149
    • 2011-11-08
    • Gang WuTchavdar Dangaltchev
    • Gang WuTchavdar Dangaltchev
    • G06Q30/02
    • G06Q30/0256G06Q30/02H04L67/02H04L67/20H04W4/21
    • Various embodiments pertain to serving a number of advertisements in view of browser information and a user's interaction with the web page containing the advertisements. In at least some embodiments, information regarding the size of a browser user interface in which a browser renders the web page, visibility of the browser user interface, or status of the browser can be obtained and utilized to determine a number of slots available for advertisements. For example, if a browser is being used to render a web page on a screen of a mobile device, fewer advertisements can be served compared to when the same web page is rendered by a browser on a desktop monitor. In some embodiments, page script can be used to obtain information regarding the size of a browser user interface, visibility of the browser user interface, or status of the browser.
    • 考虑到浏览器信息和用户与包含广告的网页的交互,各种实施例涉及服务多个广告。 在至少一些实施例中,可以获得关于浏览器呈现网页的浏览器用户界面的大小,浏览器用户界面的可见性或浏览器的状态的信息,并用于确定可用于广告的多个时隙 。 例如,如果使用浏览器在移动设备的屏幕上呈现网页,则与桌面监视器上的浏览器呈现相同的网页相比,可以提供较少的广告。 在一些实施例中,可以使用页脚本来获得关于浏览器用户界面的尺寸,浏览器用户界面的可见性或浏览器的状态的信息。