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    • 3. 发明申请
    • FLUX GUIDING STRUCTURE
    • 引导结构
    • WO2011070351A1
    • 2011-06-16
    • PCT/GB2010/052039
    • 2010-12-07
    • ISIS INNOVATION LTDMcCULLOCH, Malcolm DuncanSTEVENS, Christopher John
    • McCULLOCH, Malcolm DuncanSTEVENS, Christopher John
    • H01F38/00H01P3/00
    • H01F38/00H01F29/00H02K1/02H02K99/20
    • Embodiments of the present invention provide a structure comprising: a flux guide comprising a plurality of resonant circuit elements (110, 120, 310F) each element comprising an electrically conductive loop portion (112, 122), opposed ends of the loop portion (112, 122) being coupled to one another through a capacitive element (114, 124), adjacent resonant elements of the flux guide (115, 315) being arranged to be magneto- inductively coupled to one another thereby to allow a magneto-inductive (Ml) wave to be supported by the guide (115, 315), wherein at least one of the resonant elements (1205) is switchable between a first condition in which the element is arranged to support propagation of an Ml wave along the waveguide and a second condition in which the element is arranged to prevent propagation of an Ml wave along the waveguide.
    • 本发明的实施例提供了一种结构,包括:通量引导件,其包括多个谐振电路元件(110,120,310F),每个元件包括导电环部分(112,122),所述环部分(112,122)的相对端, 122)通过电容元件(114,124)彼此耦合,所述通量引导件(115,315)的相邻谐振元件布置成彼此磁感应耦合,从而允许磁感应(M1) 波导由引导件(115,315)支撑,其中至少一个谐振元件(1205)可在第一状态之间切换,其中该元件布置成支持M1波沿着波导的传播,第二条件 其中元件布置成防止M1波沿着波导的传播。
    • 6. 发明申请
    • SENSOR, CONTROLLER AND SYSTEM
    • 传感器,控制器和系统
    • WO2014087162A1
    • 2014-06-12
    • PCT/GB2013/053208
    • 2013-12-04
    • ISIS INNOVATION LIMITEDMCCULLOCH, Malcolm DuncanARMSTRONG, Peter Michael
    • MCCULLOCH, Malcolm DuncanARMSTRONG, Peter Michael
    • F24H9/20G05D23/00F24D19/10
    • G01K7/22F24D19/10F24D2220/042F24D2240/26F24H9/2007G01N25/00G01N33/0004G01N33/18G05D23/1931
    • The present invention relates to a sensor (104) for measuring temperature of a fluid within a vessel (106), the vessel (106) having a first region and a second region and the fluid having a temperature profile extending between the first region and the second region, the sensor (104) comprising an array of elements (300), each element (300) having a temperature-dependent parameter, the array being capable of deployment within or adjacent the vessel (106) such that the array extends along the vessel (106) for measuring the temperature profile, the elements (300) of the array being coupled together between an input and an output, the input being coupled or capable of being coupled to a driving source for driving the sensors (104), and the output being coupled or capable of being coupled to a detector for measuring an aggregate of the temperature-dependent parameter from the array of elements (300). The invention further relates to a fluid temperature controller (100) comprising a first input for receiving a first signal (102) indicating a measurement of an aggregate of a temperature-dependent parameter from a sensor according to any preceding claim deployed within or adjacent a vessel containing a fluid having a temperature profile, a second input (108) for receiving a second signal indicating a (preferably absolute) temperature of the fluid in the vessel (106) and a processor (110) configured to calculate a total thermal energy of the fluid in the vessel (106) based on the first and second signals. The invention also relates to a combination comprising a sensing arrangement and a controller; a device; and a system.
    • 本发明涉及一种用于测量容器(106)内的流体温度的传感器(104),所述容器(106)具有第一区域和第二区域,所述流体具有在第一区域和第二区域之间延伸的温度分布 所述传感器(104)包括元件阵列(300),每个元件(300)具有温度依赖性参数,所述阵列能够部署在所述容器(106)内或邻近所述容器(106),使得所述阵列沿着所述第一区域 用于测量温度分布的容器(106),所述阵列的元件(300)在输入和输出之间耦合在一起,所述输入被耦合或能够耦合到用于驱动所述传感器(104)的驱动源,以及 输出耦合或能够耦合到检测器,用于从元件阵列(300)测量温度相关参数的聚集。 本发明还涉及一种流体温度控制器(100),该流体温度控制器(100)包括第一输入端,用于接收第一信号(102),所述第一信号(102)指示测量来自根据前述权利要求中任一项所述的传感器的与温度相关的参数的聚集, 包含具有温度分布的流体;第二输入(108),用于接收指示所述容器(106)中的流体的(优选绝对))温度的第二信号;以及处理器(110),其被配置为计算所述容器 基于第一和第二信号在容器(106)中的流体。 本发明还涉及包括感测装置和控制器的组合; 一个装置; 和一个系统。