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    • 48. 发明授权
    • Multiple tanks water thermal storage system and its using method
    • 多水箱蓄热系统及其使用方法
    • US09194594B2
    • 2015-11-24
    • US12519409
    • 2007-12-28
    • Hong LiuYuanquan JiangZhangwei Hou
    • Hong LiuYuanquan JiangZhangwei Hou
    • G05D23/00F24F5/00F28D20/00
    • F24F5/0017F28D20/0034F28D20/0039Y02E60/142Y02E60/147
    • A multiple-tank water thermal storage system and its using method belong to energy saving technology. The multiple-tank water thermal storage system includes at least two water tanks. There are an upper diffuser (2) and a lower diffuser (5) provided in each said water tank. The upper and lower diffusers (2, 5) are connected with a chiller (heater) unit (4) and a heat exchanger (11) after connecting in parallel, respectively. Control valves (8) are set on pipes of the upper and the lower diffusers (2, 5), respectively. A thermal energy-charging pump (1) is set on the water-inlet pipe of chiller (heater) unit (4). A thermal energy-releasing pump (10) is set on the water-inlet pipe of the heat exchanger (11), and temperature sensors (6) are set in the water tanks.
    • 多槽水热储存系统及其使用方法属于节能技术。 多箱水热储存系统至少包括两个水箱。 在每个所述水箱中设置有上扩散器(2)和下扩散器(5)。 分别连接并联的上下扩散器(2,5)与冷却器(加热器)单元(4)和热交换器(11)连接。 控制阀(8)分别设置在上部和下部扩散器(2,5)的管道上。 在热水器(加热器)单元(4)的入水管上设置热能充气泵(1)。 热能释放泵(10)设置在热交换器(11)的入水管上,温度传感器(6)设置在水箱中。
    • 49. 发明授权
    • Dynamic data center network with optical circuit switch
    • 动态数据中心网络采用光电开关
    • US08867915B1
    • 2014-10-21
    • US13342784
    • 2012-01-03
    • Amin VahdatXiaoxue ZhaoPaul GermanoBikash KoleyHong Liu
    • Amin VahdatXiaoxue ZhaoPaul GermanoBikash KoleyHong Liu
    • H04J14/00
    • H04B10/27H04Q11/0005H04Q11/0071H04Q2011/0052H04Q2011/0083H04Q2213/1301
    • A system and method of providing a dynamic optical network topology according to topology determinations made by a network control is disclosed. The system and method includes optical ports on an optical circuit switch system operably connected to a plurality of server groups, and optical ports on the optical circuit switch system operably connected to a plurality of packet processing nodes. The system and method also includes at least one memory and at least one processor to execute network control software to receive input comprising a bandwidth request, determine an output comprising a preferred optical link topology for the optical circuit switch system based on the received input, convert the optical link topology for the optical circuit switch system into optical circuit switch port mapping, and send the optical circuit switch port mapping to the optical circuit switch system and to the packet processing nodes.
    • 公开了根据由网络控制进行的拓扑确定提供动态光网络拓扑的系统和方法。 该系统和方法包括可操作地连接到多个服务器组的光学电路交换系统上的光学端口和可操作地连接到多个分组处理节点的光学电路交换系统上的光学端口。 该系统和方法还包括至少一个存储器和至少一个处理器,用于执行网络控制软件以接收包括带宽请求的输入,基于所接收的输入确定包括用于光电路交换系统的优选光链路拓扑的输出,转换 将光电开关系统的光链路拓扑转换成光电路交换机端口映射,并将光电路交换机端口映射发送给光电路交换系统和分组处理节点。
    • 50. 发明授权
    • Migratable wavelength division multiplexing passive optical network
    • 可移动波分复用无源光网络
    • US08781322B2
    • 2014-07-15
    • US13205055
    • 2011-08-08
    • Cedric F. LamHong Liu
    • Cedric F. LamHong Liu
    • H04J14/00
    • H04J14/0282H04J14/0232H04J14/0235H04J14/0246H04J14/0247H04J14/025H04J14/0252H04J14/0265
    • A hybrid passive optical network (“PON”) includes a time-division multiplexing (“TDM”) optical line terminal (“OLT”) and a wavelength-division multiplexing (“WDM”) OLT. The TDM OLT communicates with a first group of customer premises (“CPs”) via TDM signals while the WDM OLT communicates with a second group of CPs via WDM signals. A remote node power splitter is coupled to receive the TDM and WDM signals and broadcast both the TDM signals and the WDM signals on all of its ports facing towards the CPs. Optical filters are disposed between the remote node power splitter and the second group of CPs. Each optical filter is configured to pass a sub-group of the WDM signals while blocking other WDM signals such that each of the second group of CPs receives its own allocation of WDM signals but does not receive WDM signals allocated to other CPs of the second group of CPs.
    • 混合无源光网络(“PON”)包括时分复用(“TDM”)光线路终端(“OLT”)和波分复用(“WDM”)OLT。 TDM OLT经由TDM信号与第一组客户端(“CP”)通信,而WDM OLT经由WDM信号与第二组CPC通信。 远程节点功率分配器被耦合以接收TDM和WDM信号,并且在其面向CP的所有端口上广播TDM信号和WDM信号。 光学滤波器设置在远程节点功率分配器和第二组CP之间。 每个滤光器被配置成通过WDM信号的子组同时阻挡其它WDM信号,使得第二组CP中的每一个接收到其自己的WDM信号分配,但是不接收分配给第二组的其他CP的WDM信号 的CP。