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    • 5. 发明申请
    • DATA CENTRE SYSTEM AND METHOD FOR A DATA CENTRE TO PROVIDE SERVICE
    • 数据中心系统和数据中心提供服务的方法
    • US20140258496A1
    • 2014-09-11
    • US14346653
    • 2012-07-17
    • Jiaoren WuTao LiuNing LiuCheng ZhangJiang Fu
    • Jiaoren WuTao LiuNing LiuCheng ZhangJiang Fu
    • H04L12/803
    • H04L47/125H04L29/06H04L61/1511H04L61/251H04L61/2528H04L61/6086H04L67/1002H04L67/1023
    • A data center system and a method for a data center to provide service are provided. The data center system comprises at least one first load balancing device, a plurality of second load balancing devices, and a plurality of servers. The first load balancing device is configured to transmit the first type network request to one of the plurality of second load balancing devices with a first scheduling strategy. The second load balancing device is configured to convert the first type network request to a second type network request, and to transmit the second type network request after the source address and destination address translation to one of the plurality of servers with a second scheduling strategy. The server is configured to generate a second type network response according to the second type network request and to return the second type network response to a corresponding second load balancing device.
    • 提供数据中心系统和数据中心提供服务的方法。 数据中心系统包括至少一个第一负载平衡装置,多个第二负载平衡装置和多个服务器。 第一负载平衡装置被配置为以第一调度策略将第一类型网络请求发送到多个第二负载平衡装置之一。 第二负载平衡装置被配置为将第一类型网络请求转换为第二类型网络请求,并且在源地址和目的地地址转换之后,以第二调度策略向多个服务器之一发送第二类型网络请求。 服务器被配置为根据第二类型网络请求生成第二类型网络响应,并且将第二类型网络响应返回到对应的第二负载平衡设备。
    • 8. 发明授权
    • Preparation of a carbon nanomaterial using a reverse microemulsion
    • 使用反相微乳液制备碳纳米材料
    • US08318122B2
    • 2012-11-27
    • US12248993
    • 2008-10-10
    • Cheng ZhangBing Zhou
    • Cheng ZhangBing Zhou
    • C01B31/02B82B3/00
    • B82Y30/00C01B32/05
    • Powdered, amorphous carbon nanomaterials are formed from a carbon precursor in reverse microemulsion that includes organic solvent, surfactant and water. Methods for manufacturing amorphous, powdered carbon nanomaterials generally include steps of (1) forming a reverse microemulsion including at least one non-polar solvent, at least one surfactant, and at least one polar solvent, (2) adding at least one carbon precursor substance to the reverse microemulsion, (3) reacting the at least one carbon precursor substance so as to form an intermediate carbon nanomaterial, (4) separating the intermediate amorphous carbon nanomaterial from the reverse microemulsion, and (5) heating the intermediate amorphous carbon nanomaterial for a period of time so as to yield an amorphous, powdered carbon nanomaterial. Amorphous, powdered carbon nanomaterials manufactured according to the present disclosure typically have a surface area of at least 500 m2/g, a graphitic content of at least 25%, and a conductivity of at least 150 S/m.
    • 粉末状无定形碳纳米材料由反相微乳液中的碳前体形成,其包括有机溶剂,表面活性剂和水。 制造无定形粉末状碳纳米材料的方法通常包括以下步骤:(1)形成包含至少一种非极性溶剂,至少一种表面活性剂和至少一种极性溶剂的反相微乳液,(2)加入至少一种碳前体物质 (3)使至少一种碳前体物质反应以形成中间碳纳米材料,(4)将中间无定形碳纳米材料与反相微乳液分离,(5)将中间无定形碳纳米材料加热至 一段时间以产生无定形的粉末状碳纳米材料。 根据本公开制造的无定形粉末碳纳米材料通常具有至少500m 2 / g的表面积,至少25%的石墨含量和至少150S / m的电导率。
    • 9. 发明授权
    • Event-based battery monitor for implantable devices
    • 基于事件的可植入式电池监视器
    • US08131365B2
    • 2012-03-06
    • US12492416
    • 2009-06-26
    • Cheng ZhangKeith R. Maile
    • Cheng ZhangKeith R. Maile
    • A61N1/00
    • A61N1/378A61N1/3708A61N1/37288G01R31/362G01R31/3648
    • A remaining charge capacity of a battery having an initial charge capacity is monitored. The battery powers a remote implantable medical device (IMD) that includes an active state, during which the remote IMD performs at least one function, and an inactive state, during which the remote IMD performs no functions. An active state charge consumption is computed based on stored parameters associated with an operational charge consumption for each function, and an inactive state charge consumption is computed based on a leakage current associated with the inactive state and a time the remote IMD is in the inactive state. The active state charge consumption and inactive state charge consumption are subtracted from the initial charge capacity to determine the remaining charge capacity.
    • 监视具有初始充电容量的电池的剩余充电容量。 电池为远程可植入医疗设备(IMD)供电,该远程可植入医疗设备(IMD)包括活动状态,在该状态期间,远程IMD执行至少一个功能,以及非活动状态,在该状态期间,远程IMD不执行功能。 基于与每个功能的操作电荷消耗相关联的存储参数来计算活动状态电荷消耗,并且基于与非活动状态相关联的泄漏电流和远程IMD处于非活动状态的时间来计算非活动状态电荷消耗 。 从初始充电容量中减去活动状态电荷消耗和无效状态电荷消耗,以确定剩余充电容量。
    • 10. 发明授权
    • System and method for managing wireless base station handoff information
    • 用于管理无线基站切换信息的系统和方法
    • US08036173B2
    • 2011-10-11
    • US11651307
    • 2007-01-09
    • Cheng ZhangHeng PanYanjun Yin
    • Cheng ZhangHeng PanYanjun Yin
    • H04Q1/00
    • H04W8/20H04W36/08
    • The present invention is directed to a system and method which base stations send informational messages to neighbor base stations when conditions change, so that the neighbor base stations can update its database to keep itself current on the parameters (including availability, traffic load, modulation scheme, etc.) to use in effecting efficient base station to base station handoffs. In one embodiment, the receiving base station marks the time of the received message from a neighbor base station and if a new updated message is not received within a time window then the receiving base station assumes that there is a problem with that neighbor.
    • 本发明涉及一种系统和方法,当条件改变时,基站向相邻基站发送信息消息,使得邻近基站可以更新其数据库以保持自身最新的参数(包括可用性,业务负载,调制方案 等)用于实现有效的基站到基站切换。 在一个实施例中,接收基站标记来自相邻基站的接收到的消息的时间,并且如果在时间窗口内没有接收到新的更新的消息,则接收基站假设该邻居存在问题。