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    • 65. 发明授权
    • Energy efficient CRAC unit operation using heat transfer levels
    • 使用传热水平的节能型CRAC机组运行
    • US07584021B2
    • 2009-09-01
    • US11708831
    • 2007-02-21
    • Cullen E. BashRatnesh K. SharmaAbdlmonem Beitelmal
    • Cullen E. BashRatnesh K. SharmaAbdlmonem Beitelmal
    • G05D23/00
    • G05D23/192
    • A method for controlling one or more computer room air conditioning (CRAC) units for energy efficient operation, in which, the temperature of the air returned (Trat) into the one or more CRAC units and the temperature of the air supplied (Tsat) by the one or more CRAC units is detected. The caloric heat transfer level (Q) is calculated based upon the Trat and the Tsat and it is determined whether the Q is within a predetermined setpoint caloric heat transfer range. In addition, at least one operation of the one or more CRAC units is reduced in response to the Q being within the predetermined setpoint caloric heat transfer range to thereby increase the efficiencies of the one or more CRAC units.
    • 一种用于控制一个或多个计算机室空调(CRAC)单元以进行能量效率运行的方法,其中,返回的空气的温度(Trat)返回到一个或多个CRAC单元中,并且由空气供应的空气的温度(Tsat)由 检测到一个或多个CRAC单元。 基于Trat和Tsat计算热量传热水平(Q),并且确定Q是否在预定的设定值热量传热范围内。 此外,响应于Q在预定的设定点热量传热范围内,一个或多个CRAC单元的至少一个操作被减小,从而提高一个或多个CRAC单元的效率。
    • 67. 发明授权
    • Small form factor liquid loop cooling system
    • 小尺寸液环冷却系统
    • US07203063B2
    • 2007-04-10
    • US10849759
    • 2004-05-21
    • Cullen E. BashGlenn C. SimonChristopher G. MaloneRatnesh K. Sharma
    • Cullen E. BashGlenn C. SimonChristopher G. MaloneRatnesh K. Sharma
    • H05K7/20
    • G06F1/20G06F2200/201H05K7/20009H05K7/20727H05K7/20772
    • An enclosure forms a plurality of tiers vertically stacked in a longitudinal dimension. Each tier is a 1U modular computer system having a computer chassis configured for mounting in the multi-tiered support, and computer components that need cooling within the computer chassis. A cold plate is in thermal communication with at least one of the computer components, and convectively removes heat from that component using a liquid coolant. A heat exchanger dissipates heat from the liquid coolant, and provides liquid coolant back to the cold plate. An air mover within the chassis cools the heat exchanger, blows air across other components needing cooling, and removes heated air from the chassis. The air mover may extend substantially across the chassis, or it may blow crosswise from an outlet-ventilating direction.
    • 外壳形成在纵向尺寸上垂直堆叠的多个层。 每个层是1U模块化计算机系统,其具有配置成安装在多层支持中的计算机机箱以及需要在计算机机箱内进行冷却的计算机组件。 冷板与至少一个计算机部件热连通,并且使用液体冷却剂对流地从该部件移除热量。 热交换器从液体冷却剂中散热,并向冷板提供液体冷却剂。 底盘内的空气推动器冷却热交换器,将空气吹过需要冷却的其他部件,并从机箱中除去加热的空气。 空气推动器可以基本上延伸穿过底盘,或者可以从出口通风方向横向吹动。
    • 68. 发明授权
    • Agent-based operation of a robotic device
    • 机器人设备的基于代理的操作
    • US07194337B2
    • 2007-03-20
    • US10697692
    • 2003-10-31
    • Ratnesh K. SharmaCullen E. BashChandrakant D. Patel
    • Ratnesh K. SharmaCullen E. BashChandrakant D. Patel
    • G01M1/38
    • G05D23/1931Y10T156/1008Y10T156/101
    • A method for agent-based operation of a robotic device. In the method, at least one condition is detected in various locations of a room with a plurality of sensors. In a plurality of agents associated with respective areas of the room, the plurality of agents being configured to control at least one condition in the respective associated areas, sensed data is received from at least one of the plurality of sensors. In addition, it is determined whether the received sensed data are outside of respective predetermined ranges, and information related to the sensed data in response to the sensed data being outside of the predetermined ranges is transmitted to the robotic device. In the robotic device, the information received from one or more of the plurality of agents is processed to determine whether components of a cooling system are to be manipulated to vary a characteristic of cooling fluid supplied to the various locations of the room.
    • 一种用于机器人装置的基于代理的操作的方法。 在该方法中,在具有多个传感器的房间的各个位置中检测到至少一个条件。 在与房间的相应区域相关联的多个代理中,多个代理被配置为控制各个相关区域中的至少一个条件,从多个传感器中的至少一个接收感测数据。 此外,确定接收的感测数据是否在相应的预定范围之外,并且响应于感测数据超出预定范围的与感测数据相关的信息被发送到机器人设备。 在机器人装置中,处理从多个试剂中的一个或多个试剂接收的信息,以确定是否要操纵冷却系统的组件以改变供应到房间的各个位置的冷却流体的特性。