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    • 8. 发明授权
    • All around radiation heating apparatus
    • 辐射加热装置
    • US09328927B2
    • 2016-05-03
    • US12314273
    • 2008-12-08
    • Jianping Wang
    • Jianping Wang
    • F24C15/22F24C1/12F24C3/04F24C5/00
    • F23D14/145F23D14/14F23D14/28F23D2203/005F23D2203/1012F23D2203/102F24C1/12F24C3/04F24C5/00
    • The present invention provides a safer all-around radiation heating assembly than similar traditional heaters. As typical with traditional heaters, a shroud is used to surroundably cover a portable liquid propane tank. To replace the portable liquid propane tank, the shroud must be continuously raised to a predetermined height while a service person accesses the propane tank. There is a danger that if and when the shroud drops, a spark could be created resulting in igniting highly flammable escaped propane gas. The present invention overcomes dangers associated with the traditional heaters by eliminating the spark creation danger and by introducing a ventilation system to allow any leaked propane gas to escape away from the heater.
    • 与类似的传统加热器相比,本发明提供了一种更安全的全能辐射加热装置。 与传统的加热器一样,护罩用于围绕便携式液体丙烷罐。 为了更换便携式液体丙烷罐,当服务人员访问丙烷罐时,护罩必须连续地升高到预定高度。 有一种危险,如果护罩掉落,可能产生火花,导致点燃高度易燃的逸出的丙烷气体。 本发明克服了与传统加热器相关的危险,消除了火花产生危险,并引入了通风系统以允许任何泄漏的丙烷气体从加热器中逸出。
    • 9. 发明授权
    • Breaker failure protection of HVDC circuit breakers
    • HVDC断路器的断路器故障保护
    • US09042071B2
    • 2015-05-26
    • US13702333
    • 2010-09-13
    • Bertil BerggrenJianping WangJuiping PanKerstin LindenReynaldo Nuqui
    • Bertil BerggrenJianping WangJuiping PanKerstin LindenReynaldo Nuqui
    • H02H3/44H02H7/26H02H7/22H02H7/30
    • H02H7/268H02H3/044H02H3/05H02H3/445H02H7/222H02H7/30
    • A breaker failure protection system for a high voltage direct current, HVDC, circuit breaker is provided. The circuit breaker is arranged for interrupting a DC circuit upon reception of a trip signal. The protection system includes a current sensor, at least one inductor, and a breaker failure detection unit. The current sensor is arranged for measuring a current I(t) through the DC circuit. The at least one inductor is connected in series with the DC circuit. The breaker failure detection unit is arranged for assessing, whether the circuit breaker has failed, and sending, if the circuit breaker has failed, a trip signal to an adjacent circuit breaker. The assessment is based on the measured current. The stability of HVDC grids may be improved by sending, in case of a breaker failure, a trip signal to adjacent circuit breakers. Further, a method of breaker failure protection for an HVDC circuit breaker is provided.
    • 提供高压直流,HVDC,断路器的断路器故障保护系统。 断路器被布置成在接收到跳闸信号时中断DC电路。 保护系统包括电流传感器,至少一个电感器和断路器故障检测单元。 电流传感器用于测量通过直流电路的电流I(t)。 至少一个电感器与DC电路串联连接。 断路器故障检测单元用于评估断路器是否发生故障,并且如果断路器发生故障,则发送到相邻断路器的跳闸信号。 评估是基于测量的电流。 在断路器故障的情况下,通过向相邻的断路器发送跳闸信号,可以提高HVDC电网的稳定性。 此外,提供了一种用于HVDC断路器的断路器故障保护的方法。
    • 10. 发明授权
    • Progressive network recovery
    • 逐步恢复网络
    • US08935561B2
    • 2015-01-13
    • US13403922
    • 2012-02-23
    • Jianping Wang
    • Jianping Wang
    • G06F11/00
    • G06Q10/08H04L41/0654H04L41/145
    • Technologies are generally described for systems and methods effective to schedule repair (e.g., allocate repair resources, determine a repair sequence, etc.) of a system effected by a large-scale failure caused by a natural disaster, malicious attack, faulty components, or the like. In an example, the system can generate a schedule that indicates amounts of repair resources allocated for repair of specific components of a disrupted system as well as a time or sequence in which the components are to be repaired. The schedule, in some instance, can operate to maximize an amount of restoration, at each stage of a recovery process, relative to the characteristic of the disrupted system. For example, with a communications network as the disrupted system, the schedule can maximize the amount of total traffic flow capacity recovered after respective steps of the recovery process.
    • 技术通常被描述用于有效地安排由自然灾害,恶意攻击,故障组件引起的大规模故障影响的系统的修复(例如,分配维修资源,确定修复顺序等)的系统和方法,或 类似。 在一个示例中,系统可以生成指示分配用于修复被破坏的系统的特定组件的修复资源的数量以及要修复组件的时间或顺序的调度。 在某些情况下,该计划可以在恢复过程的每个阶段相对于被破坏的系统的特征来最大化恢复的量。 例如,以通信网络为中断的系统,该调度可以最大化在恢复过程的相应步骤之后恢复的总业务流量的量。