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    • 71. 发明申请
    • AMBIENT TEMPERATURE CALCULATING MODELING METHOD USING DISTORTED AMBIENT TEMPERATURE COMPENSATION
    • 使用失真环境温度补偿的环境温度计算建模方法
    • US20150149109A1
    • 2015-05-28
    • US14450134
    • 2014-08-01
    • Hyundai Motor Company
    • Hee-Sup KimJong-Sung Park
    • G01K19/00G01K13/00
    • G01K7/427F02D41/065F02D41/08F02D2200/0414F02D2200/70G01K2205/00
    • An ambient temperature determining modeling method using distorted ambient temperature compensation may include, (A) a distortion compensation factor applying step of applying a coolant temperature, an intake air temperature, an air volume, a vehicle speed, a soak time, and a gradient to ambient temperature determining modeling, (B) an ambient temperature learning prohibiting step of checking a “Hot Soak” condition and a “Long Idle” condition, and setting ambient temperature model learning prohibition when the “Hot Soak” condition and the “Long Idle” condition are satisfied at the same time, and (C) an ambient temperature distortion removing step of determining ambient temperature update conditions when the “Hot Soak” condition and the “Long Idle” condition are not satisfied at the same time, and adding the gradient to determine an ambient temperature.
    • 使用失真的环境温度补偿的环境温度确定建模方法可以包括:(A)应用冷却剂温度,进气温度,风量,车速,浸泡时间和梯度的失真补偿因子施加步骤 (B)环境温度学习禁止步骤,检查“热浸”状态和“长时间闲置”状态,当“热浸”状态和“长时间空闲”状态设定环境温度模型学习禁止时, 同时满足条件;(C)当不同时满足“热浸”条件和“长空闲”条件时,确定环境温度更新条件的环境温度失真去除步骤,并且将梯度 以确定环境温度。
    • 72. 发明申请
    • NON-INVASIVE AUTOMATIC MONITORING OF PET ANIMAL'S CORE TEMPERATURE
    • 非动态自动监测PET动物核心温度
    • US20150057963A1
    • 2015-02-26
    • US13971902
    • 2013-08-21
    • PetPace LTD
    • Michael ZakharovAsaf DaganMichael Bukchin
    • G01K13/00
    • G01K13/002A01K29/005A61B5/01A61B5/11A61B5/1118A61B2503/40A61B2560/0252G01K7/427
    • A system, device and method monitoring whether a core temperature of a warm-blooded pet animal is within a normal range for the pet animal comprises a sensing assembly including (i) a skin temperature sensor positioned such that a sensing surface of the skin temperature sensor faces the animal, the skin temperature sensor configured to produce a skin temperature output, (ii) an ambient temperature sensor spaced away from the animal and configured to produce an ambient temperature output, and (iii) an accelerometer for sensing an acceleration of the pet animal and producing an acceleration output; and a processor for receiving the outputs, calculating an activity level from the acceleration data and determining whether the core temperature of the pet animal is within the normal range based on a pre-defined function relating the skin temperature TS, the ambient temperature TA, and the activity level of the pet animal.
    • 监测温血宠物的核心温度是否在宠物动物的正常范围内的系统,装置和方法包括感测组件,其包括(i)皮肤温度传感器,其定位成使得皮肤温度传感器的感测表面 面对动物,皮肤温度传感器被配置为产生皮肤温度输出,(ii)环境温度传感器,与动物间隔开并配置成产生环境温度输出,以及(iii)用于感测宠物加速度的加速度计 动物产生加速输出; 以及处理器,用于接收所述输出,根据加速度数据计算活动水平,并且基于与所述皮肤温度TS,所述环境温度TA和所述皮肤温度TS相关联的预定义功能来确定所述宠物的核心温度是否在正常范围内 宠物动物的活动水平。
    • 74. 发明申请
    • TEMPERATURE MEASUREMENT DEVICE AND TEMPERATURE MEASURING METHOD
    • 温度测量装置和温度测量方法
    • US20140343887A1
    • 2014-11-20
    • US14451681
    • 2014-08-05
    • SEIKO EPSON CORPORATION
    • Sakiko SHIMIZU
    • G01K7/42G01K13/00
    • G01K7/427G01K1/165G01K7/42G01K13/002
    • A temperature measurement device includes a temperature measurement part, a heat insulator, and a calculation part. The temperature measurement part is disposed among the heat insulator and has a substrate as a heating medium having a first surface as a contact surface configured to contact a measured body, a first temperature sensor configured to measure, as a first temperature, the temperature at a first measurement point of the substrate, and a second temperature sensor for measuring, as a second temperature, the temperature at a second measurement point different from the first measurement point of the substrate. The first measurement point and the second measurement point are positioned on an external surface of the substrate or inside of the substrate. The calculation part calculates a deep temperature in a deep part of the measured body distant from the first surface on the basis of the first temperature and the second temperature.
    • 温度测量装置包括温度测量部件,隔热件和计算部件。 温度测量部件设置在绝热体之中,并且具有作为加热介质的基板,该基板具有作为接触表面的第一表面,该接触表面被配置成接触被测量的本体,第一温度传感器被配置为测量第一温度 以及第二温度传感器,用于测量与基板的第一测量点不同的第二测量点处的温度作为第二温度。 第一测量点和第二测量点位于衬底的外表面或衬底的内部。 计算部基于第一温度和第二温度计算远离第一表面的被测体的深部的深度温度。
    • 75. 发明申请
    • SYSTEM AND APPARATUS FOR DETERMINING AMBIENT TEMPERATURES FOR A FLUID ANALYTE SYSTEM
    • 用于确定流体分析系统环境温度的系统和装置
    • US20140314119A1
    • 2014-10-23
    • US14323274
    • 2014-07-03
    • BAYER HEALTHCARE LLC
    • Mu Wu
    • G01K1/20A61B5/145
    • G01K1/20A61B5/14532G01K7/42G01K7/427G01N33/48785
    • A system and method for rapidly determining ambient temperature in a fluid-analyte meter. The meter includes a housing defining an interior space and an area for receiving a fluid sample. A processor and a first temperature sensor are disposed within the interior space of said the housing. A second temperature sensor is disposed on the housing. One or more processors are configured to determine a first temperature value from temperature data received from the first temperature sensor. The processor(s) are also configured to apply a variable current to a temperature-adjustment source such that the second temperature sensor is adjusted to a predetermined steady-state temperature value different from the first temperature value. The processor(s) are further configured to determine an ambient temperature of an exterior space of the housing based on the applied variable current, pre-determined steady-state temperature, and received first temperature values.
    • 用于快速测定流体 - 分析仪中环境温度的系统和方法。 仪表包括限定内部空间的壳体和用于接收流体样品的区域。 处理器和第一温度传感器设置在所述壳体的内部空间内。 第二温度传感器设置在壳体上。 配置一个或多个处理器以根据从第一温度传感器接收的温度数据确定第一温度值。 处理器还被配置为向温度调节源施加可变电流,使得将第二温度传感器调节到与第一温度值不同的预定稳态温度值。 处理器还被配置为基于所施加的可变电流,预定稳态温度和接收的第一温度值来确定壳体的外部空间的环境温度。
    • 77. 发明授权
    • System and apparatus for determining ambient temperatures for a fluid analyte system
    • 用于确定流体分析物系统的环境温度的系统和装置
    • US08801275B2
    • 2014-08-12
    • US13234268
    • 2011-09-16
    • Mu Wu
    • Mu Wu
    • G01K7/42G01K1/20G01N25/40
    • G01K1/20A61B5/14532G01K7/42G01K7/427G01N33/48785
    • A system and method for rapidly determining ambient temperature in a fluid-analyte meter. The meter includes a housing defining an interior space and an area for receiving a fluid sample. A processor and a first temperature sensor are disposed within the interior space of said the housing. A second temperature sensor is disposed on the housing. One or more processors are configured to determine a first temperature value from temperature data received from the first temperature sensor. The processor(s) are also configured to apply a variable current to a temperature-adjustment source such that the second temperature sensor is adjusted to a predetermined steady-state temperature value different from the first temperature value. The processor(s) are further configured to determine an ambient temperature of an exterior space of the housing based on the applied variable current, pre-determined steady-state temperature, and received first temperature values.
    • 用于快速测定流体 - 分析仪中环境温度的系统和方法。 仪表包括限定内部空间的壳体和用于接收流体样品的区域。 处理器和第一温度传感器设置在所述壳体的内部空间内。 第二温度传感器设置在壳体上。 配置一个或多个处理器以根据从第一温度传感器接收的温度数据确定第一温度值。 处理器还被配置为向温度调节源施加可变电流,使得将第二温度传感器调节到与第一温度值不同的预定稳态温度值。 处理器还被配置为基于所施加的可变电流,预定稳态温度和接收的第一温度值来确定壳体的外部空间的环境温度。
    • 78. 发明授权
    • Temperature measurement device and temperature measurement method
    • 温度测量装置和温度测量方法
    • US08783946B2
    • 2014-07-22
    • US13078477
    • 2011-04-01
    • Kenji Goto
    • Kenji Goto
    • G01K3/00G01K7/00G01K1/00
    • G01K3/00G01K1/20G01K7/42G01K7/427G01K13/002
    • A temperature measurement device includes a first surface temperature measurement part performing a measurement to be used as a first surface temperature; a first reference temperature measurement part performing a measurement to be used as a first reference temperature; a first external air temperature measurement part performing a measurement to be used as a first external air temperature; a second surface temperature measurement part performing a measurement to be used as a second surface temperature; a second reference temperature measurement part performing a measurement to be used as a second reference temperature; a second external air temperature measurement part performing a measurement to be used as a second external air temperature; a deep-part temperature computation part computing the deep-part temperature of a subject to be measured; and an external air temperature computation part computing the external air temperature of the external air.
    • 温度测量装置包括执行用作第一表面温度的测量的第一表面温度测量部分; 执行要用作第一参考温度的测量的第一参考温度测量部分; 执行要用作第一外部空气温度的测量的第一外部空气温度测量部分; 执行要用作第二表面温度的测量的第二表面温度测量部分; 执行要用作第二参考温度的测量的第二参考温度测量部分; 执行要用作第二外部空气温度的测量的第二外部空气温度测量部分; 深部温度计算部分计算待测对象的深部温度; 以及计算外部空气的外部空气温度的外部空气温度计算部。
    • 80. 发明申请
    • CONTROL DEVICE AND METHOD FOR OPERATING AN ELECTRICAL MACHINE DRIVEN BY AN INVERTER
    • 用于操作由逆变器驱动的电机的控制装置和方法
    • US20140084830A1
    • 2014-03-27
    • US14111631
    • 2012-02-15
    • Christian DjongaStefan GaabTobias WernerMichele HirschMichael HeebMarkus KretschmerTorsten Heidrich
    • Christian DjongaStefan GaabTobias WernerMichele HirschMichael HeebMarkus KretschmerTorsten Heidrich
    • H02P27/06
    • H02P27/06G01K7/427G01K2217/00H02H6/00H02M2001/327H02P29/028H02P29/032H02P29/68
    • The invention relates to a method for operating an electrical machine (1) controlled by an inverter (2), wherein the inverter (2) comprises half-bridge branches (10-U, 10-V, 10-W) having power components in the form of controllable power switching elements (3) and power diodes (4) respectively connected in parallel therewith, wherein each of the half-bridge branches (10-U; 10-V; 10-W) is arranged on a separate semiconductor module (11-U; 11-V; 11-W), which are arranged jointly on a baseplate (12), wherein the phase currents (1_U, 1_V, 1_W) flowing through the half-bridge branches (10-U, 10-V, 10-W), the voltages present at the power components and temperatures (t_Sens_U, t Sens_V, t_Sens_W) on the semiconductor modules (11-U, 11-V, 11-W) are determined, from the current (1_U; 1_V; 1_W) respectively flowing at a power component and from the voltage respectively present a power loss (P) is calculated for each of the power components, from the power losses (P) a relevant temperature swing (Δt; Δt_Sens) is determined for each of the power components and for temperature sensors (13-U, 13-V, 13-W) serving to determine the temperatures on the semiconductor modules, a temperature (TempCooler) of the baseplate (12) is determined from the determined temperatures (t_Sens_U, t_Sens_V, t_Sens_W) on the semiconductor modules (11-u, 11-V, 11-W) and the determined temperature swings (Δt_Sens) at the temperature sensors (13-U, 13-V, 13-W), and a torque or a power of the electrical machine (1) is determined in a manner dependent on the determined temperature swings (Δt) and the determined temperature (TempCooler) of the basplate (12).
    • 本发明涉及一种用于操作由逆变器(2)控制的电机(1)的方法,其中逆变器(2)包括具有功率分量的半桥分支(10-U,10-V,10-W) 分别与其并联连接的可控功率开关元件(3)和功率二极管(4)的形式,其中每个半桥分支(10-U; 10-V; 10-W)被布置在单独的半导体模块 (11-U; 11-V; 11-W),它们共同布置在基板(12)上,其中流过半桥分支(10-U, V,10-W),从电流(1U; 11-V,11-W)确定半导体模块(11-U,11-V,11-W)上的功率分量和温度(t_Sens_U,t Sens_V,t_Sens_W) 根据功率损耗(P)相关的温度摆幅来计算分别在功率分量和从分别呈现功率损耗(P)的电压中分别流过功率分量的1_V; 1_W) (&Dgr; t; 对于每个功率部件和用于确定半导体模块上的温度的温度传感器(13-U,13-V,13-W)确定基板(12)的温度(TempCooler)的&Dgr; t_Sens) 根据半导体模块(11-u,11-V,11-W)上确定的温度(t_Sens_U,t_Sens_V,t_Sens_W)和温度传感器(13-U,13)处确定的温度摆动(&Dgr; t_Sens) -V,13-W),并且以取决于确定的温度摆动(&Dgr; t)和所确定的底板(12)的温度(TempCooler)的方式确定电机(1)的扭矩或功率, 。