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    • 4. 发明申请
    • FILTER LIFETIME ESTIMATION
    • WO2018206682A1
    • 2018-11-15
    • PCT/EP2018/062080
    • 2018-05-09
    • KONINKLIJKE PHILIPS N.V.
    • SU, JingZHANG, QiushiLOU, Vincent
    • F24F11/39B01D46/44F24F3/16F24F110/64F24F110/70
    • An air purifier monitoring system (10) is disclosed for monitoring an air purifier (50) including a pollutant removal structure (55) for removing a pollutant other than CO 2 from an air-filled space housing the air purifier. The system comprises a processor (31) programmed with performance characteristics of the pollutant removal structure and with a plurality of algorithms for estimating a degree of fouling of the pollutant removal structure during an operating period of the air purifier, each of said algorithms being valid for a particular ventilation condition of the air-filled space, the processor being configured to receive a series of CO 2 levels detected over a period of time from a CO 2 sensor (23) in said air-filled space; estimate an actual ventilation condition of the air-filled space from the received series of CO 2 levels; select an algorithm from the plurality of algorithms based on the estimated actual ventilation condition; receive a series of pollutant levels detected over the operating period from a pollutant sensor (21) in the air-filled space; and estimate the degree of fouling of the pollutant removal structure during the operating period using the selected algorithm, the received series of pollutant levels as a parameter of the selected algorithm and the performance characteristics of the pollutant removal structure. Also disclosed are an air purifier system comprising an air purifier (50) including a pollutant removal structure (55) and the air purifier monitoring system (10) and a method of monitoring a pollutant removal performance of a pollutant removal structure (55) of an air purifier (50) located in an air-filled space.
    • 7. 发明申请
    • A SOYMILK MAKER
    • 一个SOYMILK MAKER
    • WO2015008261A1
    • 2015-01-22
    • PCT/IB2014/063222
    • 2014-07-18
    • KONINKLIJKE PHILIPS N.V.
    • LI, MoDING, MianXUE, FeiTANG, JianiSU, Jing
    • A47J43/07A47J43/08
    • A47J43/0716A47J43/085
    • The disclosure proposes a soymilk maker (10) comprising a housing (12) and a grinding mechanism (200) accommodated within the housing. The grinding mechanism comprises a motor (202) mounted in the housing; a blade (206) being rotatable in a first plane at a first rotational speed for grinding soybeans under the action of the motor for cutting the soybeans; and a miller (204) being rotatable in a second plane at a second rotational speed under the action of the motor for milling the soybeans. The second plane is spaced from and extends substantially parallel to the first plane, and the first rotational speed is higher than the second rotational speed.
    • 本公开提出了一种豆浆机(10),其包括容纳在壳体内的壳体(12)和研磨机构(200)。 磨削机构包括安装在壳体中的马达(202) 刀片(206)可在第一平面内以用于在用于切割大豆的马达的作用下研磨大豆的第一转速旋转; 以及在用于铣削大豆的电动机的作用下在第二平面中以第二转速旋转的铣刀(204)。 第二平面与第一平面间隔开并且基本上平行于第一平面延伸,并且第一旋转速度高于第二旋转速度。
    • 9. 发明申请
    • SLEEP MONITORING
    • 睡眠监测
    • WO2018082959A1
    • 2018-05-11
    • PCT/EP2017/077041
    • 2017-10-24
    • KONINKLIJKE PHILIPS N.V.
    • HILBIG, RainerBOUMA, Peter HermanusSU, Jing
    • A61B5/00A61B5/083
    • A sleep monitoring system (10) for monitoring the sleep of a pair of subject comprises a pair of C02 sensors (21, 21 ') for mounting in different sleeping regions within a space (1) and a processor (31) communicatively coupled to the pair of CO2 sensors. The processor is adapted to, for each CO2 sensor in a particular sleeping region, monitor (203) a CO2 concentration from sensor data produced by the CO2 sensor in said particular sleeping region to detect a presence of a subject in said sleeping region; to register (207) the monitored CO2 concentration upon detecting (205) said presence; to determine (303) a degree of crosstalk between said CO2 sensors upon detecting said presence; and to derive (305, 313) sleep pattern information for said subject from the registered CO2 concentration during said presence as a function of the determined degree of crosstalk, wherein the sleep pattern information comprises at least an indication that the subject is awake and an indication that the subject is asleep.
    • 用于监视一对对象的睡眠的睡眠监视系统(10)包括用于安装在空间(1)内的不同睡眠区域中的一对CO 2传感器(21,21'),以及 处理器(31)通信地耦合到所述一对CO 2传感器。 处理器适用于针对特定睡眠区域中的每个CO 2传感器从由所述CO 2传感器在所述特定睡眠区域中产生的传感器数据监测(203)CO 2浓度,以检测所述睡眠区域中的对象的存在; 在检测到(205)所述存在时,将所监测的CO2浓度记录(207) 在检测到所述存在时确定(303)所述CO 2传感器之间的串扰程度; 并且根据所确定的串扰的程度从所述存在期间的所述登记的CO2浓度导出(305,313)所述对象的睡眠模式信息,其中所述睡眠模式信息至少包括所述对象醒着的指示和指示 该主题是睡着了。
    • 10. 发明申请
    • SMART AIR PURIFICATION
    • 智能空气净化
    • WO2017207382A1
    • 2017-12-07
    • PCT/EP2017/062530
    • 2017-05-24
    • KONINKLIJKE PHILIPS N.V.
    • HILBIG, RainerKOERBER, Achim, Gerhard, RolfBOUMA, Peter, HermanusSU, JingSHI, Jun
    • F24F7/06F24F11/00B03C3/00F24F3/16H01T23/00F24F7/00F24F7/007
    • B03C3/368B03C3/025B03C3/08B03C3/12B03C3/41B03C3/47B03C2201/24F24F7/007F24F11/30F24F2007/005F24F2110/50F24F2110/60F24F2110/64F24F2110/66F24F2120/10H01T23/00
    • An air purification apparatus (100) for purifying air in a target space external to the apparatus is disclosed that comprises at least one pollutant removal structure (130; 131, 132) for removing a pollutant from the air in fluid connection with a major vent (110) and a directional vent arrangement comprising a directional inlet (112) for drawing air into the air purification apparatus from a region of the target space in an aiming direction of the directional inlet; and a directional outlet (114) for expelling air in a further aiming direction towards the region. An air movement device (120; 121, 122) configured to move air from the directional inlet to the major vent in a first configuration and to move air from the major vent to the directional outlet through the at least one pollutant removal structure in a second configuration responsive to a controller (150) is also present, as well as a sensor (140) arranged to determine a concentration of the pollutant in the air in said region when the air movement device is in the first orientation, wherein the controller is responsive to the sensor and is adapted to switch the air movement device from the first configuration to the second configuration upon the concentration of the pollutant exceeding a defined pollutant concentration threshold.
    • 公开了一种用于净化装置外部的目标空间中的空气的空气净化装置(100),其包括用于从空气中去除污染物的至少一个污染物去除结构(130; 131,132) 与主排气口(110)和定向排气装置流体连接,所述定向排气装置包括定向入口(112),用于将空气从定向入口的瞄准方向上的目标空间的区域吸入空气净化装置; 和定向出口(114),用于朝向该区域以进一步的瞄准方向排出空气。 一种空气移动装置(120; 121,122),该空气移动装置被构造成以第一配置将空气从定向入口移动到主通风口并且将空气从主通风口移动到定向出口通过至少一个污染物去除结构在第二 还存在响应于控制器(150)的配置,以及传感器(140),其被布置成当空气移动装置处于第一取向时确定所述区域中的空气中的污染物的浓度,其中控制器响应 并且适于在污染物的浓度超过限定的污染物浓度阈值时将空气移动装置从第一配置切换到第二配置。