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    • 64. 发明申请
    • SYSTEM AND METHOD FOR MONITORING A STATE OF A FLUID IN AN INDOOR SPACE AS WELL AS A CLIMATE CONTROL SYSTEM
    • 用于监测室内空气中的流体状态的系统和方法,作为气候控制系统
    • US20170045548A1
    • 2017-02-16
    • US15306624
    • 2015-04-28
    • Nederlandse Organisatie voor toegepast- natuurwetenschappelijk onderzoek TNO
    • Paul Sebastian BOOIJJeroen Edwin FRANSMANJoris SIJS
    • G01P5/00G01K7/42G01P5/10
    • A monitoring system for monitoring a state of a fluid in an indoor space including a state of a flow field for said fluid is presented. The system includes an input unit (81), a simulation unit (82), a comparison unit (83) and a state correction unit (84). The input unit (81) comprises a plurality of temperature sensors (81a, 81b, . . . , 81mT) to obtain temperature measurement data indicative for a temperature field in said indoor space. The simulation unit (82) is provided to simulate the fluid in said indoor space according to an indoor climate model to predict a state of the fluid including at least a temperature field and a flow field for the fluid in said indoor space, and has an output to provide a signal indicative for the flow field. The comparison unit (83) is provided to compare the predicted temperature field with the temperature measurement data, and the state correction unit (84) is provided to correct the predicted state of the fluid based on a comparison result of said comparison unit (83). The monitoring system may be part of a climate control system.
    • 提出了一种用于监测室内空气流体状况的监测系统,包括所述流体的流场状态。 该系统包括输入单元(81),模拟单元(82),比较单元(83)和状态校正单元(84)。 输入单元(81)包括多个温度传感器(81a,81b,...,81mT),以获得指示所述室内空间中的温度场的温度测量数据。 模拟单元(82)被提供以根据室内气候模型来模拟所述室内空间中的流体,以便预测至少包括所述室内空间中的流体的温度场和流场的流体的状态,并且具有 输出以提​​供指示流场的信号。 提供比较单元(83)以将预测温度场与温度测量数据进行比较,并且基于所述比较单元(83)的比较结果提供状态校正单元(84)以校正流体的预测状态, 。 监测系统可能是气候控制系统的一部分。
    • 66. 发明授权
    • Electronic system and method for thermal management therein taking into account solar thermal loading
    • 考虑到太阳能热负荷的电子系统及其热管理方法
    • US09518873B2
    • 2016-12-13
    • US13928405
    • 2013-06-27
    • MOTOROLA MOBILITY LLC
    • Krishna K. BellamkondaMorris B. BowersPaul B. CrosbieBrett L. RobertsonManinder S. Sehmbey
    • G01K7/42G06F1/20
    • G01K7/42G06F1/206
    • An electronic system performs thermal management during its operation by proactively taking into account expected solar thermal loading. According to one embodiment, the electronic system determines its location and a solar thermal load value expected to affect its location. The system also determines a temperature offset value based on the solar thermal load value and predicts a future temperature for the system based on the temperature offset value and a then-current temperature for the system (e.g., as may be detected by one or more temperature sensors). The electronic system compares the predicted temperature to at least one threshold and executes a thermal mitigation procedure in the event that the predicted temperature exceeds one or more of the thresholds. According to another embodiment in which the electronic system is transportable, the determined solar thermal load value may include a solar thermal load profile for the system's expected route of travel.
    • 电子系统在运行期间通过主动考虑预期的太阳能热负荷进行热管理。 根据一个实施例,电子系统确定其位置和预期影响其位置的太阳热负荷值。 该系统还基于太阳能热负荷值确定温度偏移值,并且基于系统的温度偏移值和当前温度来预测系统的未来温度(例如,可以由一个或多个温度 传感器)。 电子系统将预测温度与至少一个阈值进行比较,并且在预测温度超过一个或多个阈值的情况下执行热缓解程序。 根据另一个实施例,其中电子系统是可运输的,所确定的太阳能热负荷值可以包括用于系统预期行进路线的太阳热负荷曲线。