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    • 3. 发明授权
    • Power allotment distribution in a data center
    • 数据中心的配电分配
    • US08832476B2
    • 2014-09-09
    • US12892116
    • 2010-09-28
    • Xiaobo FanChris SadlerSelver CorhodzicWolf-Dietrich WeberTaliver Brooks HeathMark Hennecke
    • Xiaobo FanChris SadlerSelver CorhodzicWolf-Dietrich WeberTaliver Brooks HeathMark Hennecke
    • G06F1/32G06F1/26G06F1/18
    • G06F1/329Y02D10/24
    • In a computer-implemented method, an electronic communication from a first computing machine is received and includes a power value and one or more priority values. The power value represents a request for a power allotment expected to be used during a predetermined time and the priority values represent priorities of tasks expected to be executed during the predetermined time. A score for the request is calculated using a scoring function and the received priority values as inputs to the scoring function. The score is compared to one or more other scores respectively associated with requests for power allotments from other computing machines and previously calculated using the scoring function following receipt of one or more electronic communications each including a power value and one or more priority values. A top-ranked score is identified and an electronic communication is sent to the associated computing machine granting the requested power allotment.
    • 在计算机实现的方法中,接收来自第一计算机的电子通信,并且包括功率值和一个或多个优先级值。 功率值表示预期在预定时间期间使用的功率分配的请求,并且优先级值表示在预定时间期间预期执行的任务的优先级。 使用评分函数和接收到的优先级值作为评分函数的输入来计算请求的得分。 该分数与分别与来自其他计算机的功率分配的请求相关联的一个或多个其他分数进行比较,并且先前在接收到包括功率值和一个或多个优先级值的一个或多个电子通信之后使用评分功能计算。 识别出排名最高的分数,并且电子通信被发送给授予所请求的功率分配的相关联的计算机。
    • 5. 发明申请
    • Power Allotment Distribution in a Data Center
    • 配电分配在数据中心
    • US20120078430A1
    • 2012-03-29
    • US12892116
    • 2010-09-28
    • Xiaobo FanChris SadlerSelver CorhodzicWolf-Dietrich WeberTaliver Brooks HeathMark Hennecke
    • Xiaobo FanChris SadlerSelver CorhodzicWolf-Dietrich WeberTaliver Brooks HeathMark Hennecke
    • G06F1/26
    • G06F1/329Y02D10/24
    • In a computer-implemented method, an electronic communication from a first computing machine is received and includes a power value and one or more priority values. The power value represents a request for a power allotment expected to be used during a predetermined time and the priority values represent priorities of tasks expected to be executed during the predetermined time. A score for the request is calculated using a scoring function and the received priority values as inputs to the scoring function. The score is compared to one or more other scores respectively associated with requests for power allotments from other computing machines and previously calculated using the scoring function following receipt of one or more electronic communications each including a power value and one or more priority values. A top-ranked score is identified and an electronic communication is sent to the associated computing machine granting the requested power allotment.
    • 在计算机实现的方法中,接收来自第一计算机的电子通信,并且包括功率值和一个或多个优先级值。 功率值表示预期在预定时间期间使用的功率分配的请求,并且优先级值表示在预定时间期间预期执行的任务的优先级。 使用评分函数和接收到的优先级值作为评分函数的输入来计算请求的得分。 该分数与分别与来自其他计算机的功率分配的请求相关联的一个或多个其他分数进行比较,并且先前在接收到包括功率值和一个或多个优先级值的一个或多个电子通信之后使用评分功能计算。 识别出排名最高的分数,并且电子通信被发送给授予所请求的功率分配的相关联的计算机。
    • 6. 发明授权
    • Negotiating capacity allocation among distributed current protection devices
    • 分布式电流保护装置之间的谈判容量分配
    • US08054598B1
    • 2011-11-08
    • US12355573
    • 2009-01-16
    • Chris SadlerXiaobo FanSelver Corhodzic
    • Chris SadlerXiaobo FanSelver Corhodzic
    • H02H7/00
    • H02J3/14Y02B70/3225Y04S20/222
    • Exemplary systems, apparatus, and methods relate to a current limiting device on each of two or more load branches that limits the current drawn by each load branch to a branch current allocation for that branch, where each of the current limiting devices is configured to automatically communicate messages to negotiate adjustments to the branch current allocations among each of the load branches while maintaining the sum of the branch allocations substantially at or below an available capacity of the supply branch. In an exemplary embodiment, a system of intelligent power modules (IPMs) may operate together to automatically negotiate capacity sharing among a number of load branches by adapting to the dynamic load conditions in order to takes improved advantage of infrastructure power handling capability without exceeding a predetermined capacity of the supply branch.
    • 示例性系统,装置和方法涉及两个或多个负载分支中的每一个上的限流装置,其限制由每个负载分支引出的电流到该分支的分支电流分配,其中每个限流装置被配置为自动 传达消息以协调对每个负载分支之间的分支当前分配的调整,同时将分支分配的总和基本上维持在或低于供应分支的可用容量。 在示例性实施例中,智能功率模块(IPM)的系统可以一起操作,以通过适应动态负载条件来自动协商多个负载分支之间的容量共享,以便在不超过预定的情况下获得基础设施功率处理能力的改进优点 供应分公司的能力。
    • 9. 发明申请
    • Control Method During Zero-Crossing Operation Of Bridge Arms In UPS
    • UPS中桥臂过零时的控制方法
    • US20140104897A1
    • 2014-04-17
    • US13817229
    • 2011-06-08
    • Junlin LiXiaobo FanYanquan ZhangLihua Xie
    • Junlin LiXiaobo FanYanquan ZhangLihua Xie
    • H02M5/458
    • H02M5/4585H02J9/062H02J2009/063Y02P80/112
    • A control method is disclosed that involves controlling zero-crossing operation of bridge arms in a UPS, wherein the UPS has a rectifying bridge with first and second switching transistors, a midline bridge arm with third and fourth switching transitors, and an inverter bridge arm with fifth and sixth switching transitors. The midline and rectifying bridge arms are controlled to cross zero synchronously. The inverter bridge arm is controlled to be disconnected during a period before a zero-crossing point of the rectifying bridge arm to a period after the zero-crossing point of the rectifying bridge arm. The periods before and after the zero-crossing point of the rectifying bridge arm are time differences between the zero-crossing points of the inverter bridge arm and the rectifying bridge arm. The influence of asynchronous zero-crossing between the PFC circuit and the inverter circuit on the UPS performance indices may be reduced by using the present control method.
    • 公开了一种控制方法,其涉及控制UPS中桥臂的过零运行,其中UPS具有带有第一和第二开关晶体管的整流桥,具有第三和第四开关转换器的中线桥臂,以及具有 第五和第六开关转换器。 中线和整流桥臂被控制为同步交叉零点。 在整流桥臂的过零点之前的一段时间内,逆变桥臂被控制为在整流桥臂的过零点之后的一段时间内断开。 整流桥臂的过零点之前和之后的周期是逆变桥臂与整流桥臂的过零点之间的时间差。 通过使用本控制方法,可以降低PFC电路与逆变电路之间的异步过零对UPS性能指标的影响。