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    • 3. 发明申请
    • SINGLE-BATTERY POWER TOPOLOGIES FOR ONLINE UPS SYSTEMS
    • 在线UPS系统的单电池电源拓扑
    • US20130026835A1
    • 2013-01-31
    • US13192682
    • 2011-07-28
    • Rajesh GhoshMahendrakumar LipareDamir Klikic
    • Rajesh GhoshMahendrakumar LipareDamir Klikic
    • H02J9/00
    • H02J9/062H02M1/10Y10T307/615Y10T307/625Y10T307/724
    • A power converter includes a first power input to receive AC input power, a second power input to receive backup power, a first DC bus configured to provide a positive DC output voltage, a second DC bus configured to provide a negative DC output voltage, and a power conversion circuit coupled to the first DC bus and the second DC bus. The power conversion circuit has an inductor, a first switch device coupled in series with the inductor, a second switch device coupled in series with the first switch device, and a bypass relay coupled in parallel with the second switch device. The power conversion circuit is switchably coupled to the first power input and the second power input, and is operable to charge the inductor and generate the positive and negative DC output voltages.
    • 电力转换器包括用于接收AC输入电力的第一电源输入端,用于接收备用电力的第二电源输入端,被配置为提供正DC输出电压的第一DC总线,被配置为提供负DC输出电压的第二DC总线;以及 耦合到第一DC总线和第二DC总线的电力转换电路。 功率转换电路具有电感器,与电感器串联耦合的第一开关器件,与第一开关器件串联耦合的第二开关器件,以及与第二开关器件并联耦合的旁路继电器。 功率转换电路可切换地耦合到第一电源输入和第二电源输入,并且可操作地对电感器充电并产生正和负的直流输出电压。
    • 4. 发明申请
    • SYSTEMS AND METHODS FOR OPERATING AN UNINTERRUPTIBLE POWER SUPPLY
    • 用于操作不间断电源的系统和方法
    • US20130002024A1
    • 2013-01-03
    • US13173405
    • 2011-06-30
    • Mirza A. BegVenkatraman ChennakesavanMichael J. IngemiDavid E. ReillyRajesh GhoshIndra Prakash
    • Mirza A. BegVenkatraman ChennakesavanMichael J. IngemiDavid E. ReillyRajesh GhoshIndra Prakash
    • H02J9/00
    • H02J9/061H02J1/108Y10T307/615Y10T307/62Y10T307/625
    • An uninterruptible power supply includes a first input to receive input power from an input power source, an output to provide output power, a switch, a first logic power supply coupled to the switch, a back-up power source, a charger, a main logic power supply and power converter circuitry. The switch is configured to close when a characteristic of the input power is within a selected range. The first logic power supply is coupled to the switch and configured to receive input power from the input power source when the switch is closed. The first logic power supply has a first DC output. The back-up power source has a second DC output and is coupled to the first DC output at a common node. The charger has a third DC output and is coupled to the common node. The main logic power supply is coupled to the common node and is configured to receive at least one of the first DC output, the second DC output and the third DC output. The power converter circuitry is coupled to the backup power source and the first input and is configured to provides the output power derived from at least one of power at the first input and power from the backup power source.
    • 不间断电源包括用于从输入电源接收输入电力的第一输入端,提供输出功率的输出端,开关,耦合到开关的第一逻辑电源,备用电源,充电器,主电源 逻辑电源和电源转换器电路。 当输入功率的特性在选定范围内时,开关被配置为关闭。 第一逻辑电源耦合到开关并被配置为当开关闭合时从输入电源接收输入电力。 第一个逻辑电源具有第一个直流输出。 备用电源具有第二DC输出并且在公共节点处耦合到第一DC输出。 充电器具有第三DC输出并且耦合到公共节点。 主逻辑电源耦合到公共节点,并且被配置为接收第一DC输出,第二DC输出和第三DC输出中的至少一个。 功率转换器电路耦合到备用电源和第一输入端,并被配置为提供从第一输入端的电源和来自备用电源的功率中的至少一个导出的输出功率。
    • 10. 发明申请
    • SIMPLIFYING PROVISIONING OF ASYNCHRONOUS INTERACTION WITH ENTERPRISE SUITES HAVING SYNCHRONOUS INTEGRATION POINTS
    • 简化与具有同步整合点的企业套件的异步交互
    • US20130086204A1
    • 2013-04-04
    • US13249889
    • 2011-09-30
    • Rajesh GhoshAbhishek Verma
    • Rajesh GhoshAbhishek Verma
    • G06F15/16
    • G06Q10/00G06F8/31
    • An aspect of the present invention simplifies provisioning of asynchronous interaction with enterprise suites having synchronous integration points. In one embodiment, a digital processing system receives, from a user, data indicating that asynchronous interaction is required for a synchronous integration point of an enterprise suite, and in response, auto-generates a set of service oriented architecture (SOA) artifacts designed to synchronously invoke the synchronous integration point and provide asynchronous interaction with external systems. The auto-generated SOA artifacts are then deployed in SOA server, whereby external systems can interact asynchronously to access a functionality provided by the synchronous integration point. According to another aspect, the system, also receives from the user, a second data indicating a set of policies to be applied, and in response, auto-generates the set of SOA artifacts to implement the set of policies during asynchronous interaction with external systems.
    • 本发明的一个方面简化了具有同步集成点的企业套件的异步交互的配置。 在一个实施例中,数字处理系统从用户接收指示企业套件的同步集成点需要异步交互的数据,并作为响应,自动生成一组面向服务的架构(SOA)工件,其被设计为 同步调用同步集成点,并提供与外部系统的异步交互。 然后将自动生成的SOA工件部署在SOA服务器中,由此外部系统可以异步地进行访问以访问同步集成点提供的功能。 根据另一方面,系统还从用户接收指示要应用的一组策略的第二数据,并且作为响应,在与外部系统异步交互期间自动生成一组SOA工件以实现该组策略 。