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申请号:202010066011.5 公开号:CN111265235A 主分类号:A61B6/04
摘要:【中文】本申请公开一种医疗设备的进床控制方法、进床控制系统及医疗设备。所述医疗设备包括扫描筒和扫描床,所述扫描筒上设置有图像获取装置和测距装置。所述进床控制方法包括:控制所述扫描床进床,在所述扫描床进床过程中,控制所述图像获取装置获取图像,在所述图像中出现患者的人脸,并且人脸位于所述图像中的预设位置时,停止进床。利用所述测距装置测得与所述患者所处高度相关的距离值,根据所述距离值控制所述扫描床升降。对于所述进床控制方法、进床控制系统及医疗设备,只需要操作技师发出扫描床进床指令即可实现一键自动进床和升降扫描床,进床和升降扫描床方便。 【EN】The application discloses a medical equipment bed entering control method, a bed entering control system and medical equipment. The medical equipment comprises a scanning barrel and a scanning bed, wherein an image acquisition device and a distance measuring device are arranged on the scanning barrel. The bed entering control method comprises the following steps: controlling the scanning bed to enter the bed, controlling the image acquisition device to acquire an image in the bed entering process of the scanning bed, and stopping bed entering when the face of the patient appears in the image and the face is located at a preset position in the image. And measuring a distance value related to the height of the patient by using the distance measuring device, and controlling the scanning bed to ascend and descend according to the distance value. For the bed entering control method, the bed entering control system and the medical equipment, the one-key automatic bed entering and the lifting of the scanning bed can be realized only by sending out a scanning bed entering instruction by an operation technician, and the bed entering and the lifting of the scanning bed are convenient.
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申请号:202010028176.3 公开号:CN111134639A 主分类号:A61B5/0205
申请人:【中文】遵义医科大学【EN】ZUNYI MEDICAL University 申请日:2020.01.10 公开日:2020.05.12
摘要:【中文】本发明涉及一种医疗技术领域以及物联网技术领域,特别涉及一种基于智慧衣的衡量健康状况的远程实时观测装置,包括帽子、上衣、手环以及云端解析模块,所述帽子中嵌入有脑电监测子系统,所述上衣中嵌入有心率、体温、呼吸频率以及血压的综合监测子系统,所述手环包括I型手环、II型手环和III型手环,所述I型手环中嵌入有血糖监测子系统,II型手环中嵌入有血脂监测子系统,III型手环中嵌入有协调器模块,通过协调器模块收集并转发各个监测子系统监测到的体征信息给云端解析模块,通过云端解析模块分析这些体征信息以及评估用户的健康状态。本装置是基于物联网技术的新型可穿戴设备,解决了健康远程评测的问题。 【EN】The invention relates to the technical field of medical treatment and the technical field of Internet of things, in particular to a remote real-time observation device for measuring health conditions based on a smart garment, which comprises a cap, a coat, a bracelet and a cloud analysis module, wherein an electroencephalogram monitoring subsystem is embedded in the cap, a comprehensive monitoring subsystem for heart rate, body temperature, respiratory frequency and blood pressure is embedded in the coat, the bracelet comprises an I-type bracelet, an II-type bracelet and a III-type bracelet, a blood glucose monitoring subsystem is embedded in the I-type bracelet, a blood lipid monitoring subsystem is embedded in the II-type bracelet, a coordinator module is embedded in the III-type bracelet, physical sign information monitored by each monitoring subsystem is collected and forwarded to the cloud analysis module through the coordinator module, and the physical sign information is analyzed and the health state of a user is evaluated through the cloud analysis module. This device is based on internet of things's novel wearable equipment, has solved the problem of healthy remote evaluation.
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申请号:201911184469.4 公开号:CN110868743A 主分类号:H04W36/00
摘要:【中文】本申请提供了一种邻站信息检测方法、装置及终端,该方法包括:在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对消息进行解析;若解析出消息的类型,依据消息的类型,判断消息是否为终端关注的消息;若是,则将当前目标时隙用于处理消息,将当前目标时隙之后的下一个或多个目标时隙用于检测终端当前所在的基站的邻站的信息;若否,则将当前目标时隙用于检测终端当前所在的基站的邻站的信息。在本申请中,通过以上方式可以在降低对终端业务的影响的情况下,进行邻站信息的快速检测。 【EN】The application provides a method, a device and a terminal for detecting adjacent station information, wherein the method comprises the following steps: when the condition of the base station where the terminal is currently located is detected to reach the threshold of the information of the adjacent station needing to be detected, if the message issued by the base station is received in the current target time slot, the message is analyzed; if the type of the message is analyzed, judging whether the message is concerned by the terminal according to the type of the message; if so, using the current target time slot for processing the message, and using one or more next target time slots after the current target time slot for detecting the information of the adjacent station of the base station where the terminal is located; if not, the current target time slot is used for detecting the information of the adjacent station of the base station where the terminal is located currently. In the application, the method can be used for rapidly detecting the information of the adjacent station under the condition of reducing the influence on the terminal service.
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申请号:201911118698.6 公开号:CN111082878A 主分类号:H04B13/02
摘要:【中文】本发明公开了一种基于水下移动无线传感网的目标跟踪方法,属于无线传感网目标跟踪技术领域。本发明为:基于传感器的当前位置信息计算对应度量值的正负取值,将传感器划分为两个集合,正度量值的传感器的高度调节量为预设值;基于确定的候选传感器,选择M个传感器作为参与跟踪的传感器;确定各参与跟踪的传感器的当前高度并发送给对应的传感器;传感器移动到指定高度后,发送声波测量其与跟踪目标之间的距离,得到对跟踪目标的量测值并发送给计算处理中心;计算处理中心对接收的M个传感器的量测值进行融合估计处理,得到跟踪目标的当前状态。本发明利用传感器在高度方向上的可调性,动态调整网络的拓扑结构,从而有效提升目标跟踪准确性。 【EN】The invention discloses a target tracking method based on an underwater mobile wireless sensor network, and belongs to the technical field of target tracking of wireless sensor networks. The invention is as follows: calculating positive and negative values of the corresponding metric values based on the current position information of the sensor, dividing the sensor into two sets, wherein the height regulating quantity of the sensor with the positive metric value is a preset value; selecting M sensors as sensors participating in tracking based on the determined candidate sensors; determining the current height of each sensor participating in tracking and sending the current height to the corresponding sensor; after the sensor moves to a specified height, sending sound waves to measure the distance between the sensor and a tracking target, obtaining a measurement value of the tracking target and sending the measurement value to a calculation processing center; and the calculation processing center performs fusion estimation processing on the received measurement values of the M sensors to obtain the current state of the tracking target. The invention utilizes the adjustability of the sensor in the height direction to dynamically adjust the topological structure of the network, thereby effectively improving the target tracking accuracy.
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申请号:201911319377.2 公开号:CN110926018A 主分类号:F24H1/20
摘要:【中文】本发明提供一种双管型电热管组件及电热水器,双管型电热管组件包括第一加热管、第二加热管、法兰盘、安装盘和安装盘固定装置,第一加热管的两根管脚固定于法兰盘上,法兰盘上设有通孔,第二加热管一端穿过通孔,另一端的两根管脚固定于安装盘上,安装盘通过安装盘固定装置与法兰盘连接,且盖在通孔上。使用时,先将第一加热管伸入内胆,法兰盘安装在电热水器内胆上的法兰口中,再将第二加热管穿过法兰盘上的通孔伸入内胆中,并通过安装盘固定装置将安装盘与法兰盘连接。由于第二加热管和第一加热管不需要同时伸入内胆,因此第二加热管与第一加热管可以呈任何角度,可根据实际应用需要,将双电热管安装成同一方向或者有一定的夹角,应用场景更广。 【EN】The invention provides a double-tube type electric heat tube component and an electric water heater, wherein the double-tube type electric heat tube component comprises a first heating tube, a second heating tube, a flange plate, a mounting plate and a mounting plate fixing device, two pin legs of the first heating tube are fixed on the flange plate, a through hole is formed in the flange plate, one end of the second heating tube penetrates through the through hole, two pin legs of the other end of the second heating tube are fixed on the mounting plate, and the mounting plate is connected with the flange plate through the mounting plate fixing device and covers the through hole. When the heating device is used, the first heating pipe is firstly stretched into the inner container, the flange plate is arranged in a flange opening on the inner container of the electric water heater, the second heating pipe penetrates through the through hole on the flange plate to stretch into the inner container, and the mounting plate is connected with the flange plate through the mounting plate fixing device. Because the second heating pipe and the first heating pipe do not need to stretch into the inner container simultaneously, the second heating pipe and the first heating pipe can be at any angle, and the double electric heating pipes can be installed in the same direction or have a certain included angle according to the actual application requirements, so that the application scene is wider.
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申请号:201911293146.9 公开号:CN111069917A 主分类号:B23P23/06
摘要:【中文】本发明公开了一种高效率冲压生产线,包括上料平台和卸料平台,上料平台和卸料平台之间设有多个间隔设置的加工机构,加工机构上设有工作台;还包括:输送装置,加工机构之间均设有便于移动更换的输送装置,且至少一个输送装置上设有翻转机构;机械手,用于夹取工件并将工件移动至工作台或输送装置上,输送装置之间均设有机械手;机械手设于一架体上,架体上设有滑轨,架体上设有可于滑轨上滑动的支架,机械手固设于支架上部;滑轨一侧设有一用于确定支架位置的定位件。本发明冲压生产线设计巧妙实用,大大提高了企业的生产效率,且能有效防止因某一结构出现故障而影响整条生产线的运行工作。 【EN】The invention discloses a high-efficiency stamping production line which comprises a feeding platform and a discharging platform, wherein a plurality of machining mechanisms arranged at intervals are arranged between the feeding platform and the discharging platform, and a workbench is arranged on each machining mechanism; further comprising: conveying devices convenient to move and replace are arranged between the processing mechanisms, and at least one conveying device is provided with a turnover mechanism; the manipulator is used for clamping the workpiece and moving the workpiece to the workbench or the conveying devices, and the manipulators are arranged between the conveying devices; the manipulator is arranged on a frame body, a slide rail is arranged on the frame body, a support capable of sliding on the slide rail is arranged on the frame body, and the manipulator is fixedly arranged on the upper part of the support; one side of the slide rail is provided with a positioning piece for determining the position of the bracket. The stamping production line is ingenious and practical in design, production efficiency of enterprises is greatly improved, and the influence on operation work of the whole production line due to the fact that a certain structure breaks down can be effectively prevented.
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申请号:201811279047.0 公开号:CN111125208A 主分类号:G06F16/25
申请人:【中文】华为技术有限公司【EN】HUAWEI TECHNOLOGIES Co.,Ltd. 申请日:2018.10.30 公开日:2020.05.08
摘要:【中文】本申请公开了一种数据采集处理方法、装置及系统。该系统包括数据处理装置,数据处理装置,用于接收所述网络设备发送的第一机制格式的数据;对所述数据进行预处理;将经过预处理后的数据转换为第二机制格式的数据,并将所述第二机制格式的数据发送给数据采集分析装置;数据采集分析装置,用于在接收到所述数据处理装置发送的数据后,根据所述数据进行分析。在该系统中,数据处理装置可以提供统一的北向接口,输出统一格式的数据,降低对管控设备、数据采集分析装置的配置需求,提高上报数据的价值密度。 【EN】The application discloses a data acquisition processing method, a data acquisition processing device and a data acquisition processing system. The system comprises a data processing device, a data processing device and a data processing device, wherein the data processing device is used for receiving data in a first mechanism format sent by the network equipment; preprocessing the data; converting the preprocessed data into data in a second mechanism format, and sending the data in the second mechanism format to a data acquisition and analysis device; and the data acquisition and analysis device is used for analyzing according to the data after receiving the data sent by the data processing device. In the system, the data processing device can provide a uniform northbound interface, output data in a uniform format, reduce the configuration requirements on the pipe control equipment and the data acquisition and analysis device, and improve the value density of reported data.
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申请号:202010102427.8 公开号:CN111267352A 主分类号:B29C64/386
申请人:【中文】江西服装学院【EN】JIANGXI INSTITUTE OF FASHION TECHNOLOGY 申请日:2020.02.19 公开日:2020.06.12
摘要:【中文】本发明涉及鞋制作技术领域,具体涉及一种鞋的设计方法。包括如下步骤,概念设计;获得足部数据和图像模型;获得3D打印参数,进行3D打印获得鞋子;获得鞋子的三维图像,将三维图像与图像模型对比,得到误差数据;将误差数据与设定数据对比,误差数据小于等于设定数据,得到3D打印鞋;误差数据大于设定数据,对所述3D打印参数修正,并重复所述步骤S3。本发明采用的设计方法改变了原有的传统制鞋模式,主要采用计算机建模、打印3d模式,获得的3D打印鞋可以呈现立体造型;拓展了时尚鞋设计创作的自由度,使得创作者有了更多的想法和创造空间;而且,经过误差数据与设定数据的对比,提高了3D打印鞋匹配精度和匹配准确度,进一步提高了3D打印质量。 【EN】The invention relates to the technical field of shoe manufacturing, in particular to a shoe design method. The method comprises the following steps of designing concept; obtaining foot data and an image model; obtaining 3D printing parameters, and performing 3D printing to obtain shoes; obtaining a three-dimensional image of the shoe, and comparing the three-dimensional image with the image model to obtain error data; comparing the error data with the set data, wherein the error data is less than or equal to the set data, and obtaining the 3D printing shoe; if the error data is larger than the set data, the 3D printing parameters are corrected, and the step S3 is repeated. The design method adopted by the invention changes the original traditional shoemaking mode, and mainly adopts a computer modeling and printing 3D mode, so that the obtained 3D printed shoes can present a three-dimensional shape; the freedom degree of the design and creation of the fashion shoes is expanded, so that the creator has more ideas and creation spaces; moreover, through the comparison of error data and set data, the matching precision and the matching accuracy of the 3D printing shoe are improved, and the 3D printing quality is further improved.
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申请号:201911147600.X 公开号:CN110847153A 主分类号:E02D5/18
摘要:【中文】本发明涉及一种用抬升装置辅助超深超重地连墙地下连续墙钢筋笼加工制作方法,步骤为:(1)用水准仪对钢筋笼平台标高进行复测,并控制在10mm以内;(2)在钢筋笼平台上铺设水平筋及下排主筋,水平筋与下排主筋之间点焊搭接;(3)在下排主筋上焊纵横向桁架筋,纵横向桁架筋与水平筋及下排主筋焊接连接,焊接完成后将纵横向桁架筋竖立起来,并确定竖立高度H;(4)吊送地连墙顶排主筋至钢筋升降设备上,并通过机械连接方式将其连接在一起,由钢筋升降设备将已连接完成的地连墙顶排主筋抬升至标高H位置;(5)将钢筋升降设备上的地连墙顶排主筋安装至已完工的钢筋笼上,地连墙顶排主筋与纵横向桁架筋焊接连接,并与横向桁架上部水平筋点焊连接。 【EN】The invention relates to a method for processing and manufacturing an ultra-deep overweight underground diaphragm wall reinforcement cage by using a lifting device to assist an ultra-deep overweight underground diaphragm wall reinforcement cage, which comprises the following steps: (1) retesting the elevation of the steel reinforcement cage platform by using a level gauge, and controlling the elevation within 10 mm; (2) laying horizontal ribs and lower-row main ribs on a reinforcement cage platform, and carrying out spot welding and lap joint between the horizontal ribs and the lower-row main ribs; (3) welding longitudinal and transverse truss ribs on the lower row of main ribs, welding the longitudinal and transverse truss ribs with the horizontal ribs and the lower row of main ribs, erecting the longitudinal and transverse truss ribs after welding is finished, and determining the erecting height H; (4) hoisting the main reinforcement of the top row of the underground diaphragm wall to a steel bar lifting device, connecting the main reinforcement of the top row of the underground diaphragm wall together in a mechanical connection mode, and lifting the connected main reinforcement of the top row of the underground diaphragm wall to an elevation H position by the steel bar lifting device; (5) and installing the main reinforcement of the top row of the underground diaphragm wall on the reinforcement lifting equipment to the finished reinforcement cage, and welding the main reinforcement of the top row of the underground diaphragm wall and the longitudinal and transverse truss reinforcements and connecting the main reinforcement and the horizontal reinforcement at the upper part of the transverse truss in a spot welding manner.
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申请号:201911191408.0 公开号:CN110845364A 主分类号:C07C253/20
申请人:【中文】湘潭大学【EN】XIANGTAN University 申请日:2019.11.28 公开日:2020.02.28
摘要:【中文】本发明公开一种腈类化合物的制备方法,是在镍催化剂的作用下,以甲酰胺为氰源,与各种类型的烯烃发生氢氰化反应,生成各种腈类化合物;反应温度为60‑160℃,反应时间为6‑36小时。该方法克服了传统的烯烃的氢氰化反应存在的操作复杂,需要使用剧毒的氰源作为反应原料等不足。该方法使用简单廉价、绿色无毒的甲酰胺为氰基的来源,并且不需要另外加入其它的脱水剂(如:五氧化二磷、三氯氧磷等),通过路易斯酸催化下甲酰胺的自发脱水生成氰基负离子,并原位与烯烃发生氢氰化反应,生成腈类化合物;反应条件简单、易于操作、经济高效;同时该方法适用于各种单取代、双取代的脂肪族和芳香族烯烃,展示出良好的底物普适性;对空气、水分、光均不敏感;产率高,产物分离纯化简单,有广泛的应用前景。 【EN】The invention discloses a preparation method of nitrile compounds, which takes formamide as a cyanogen source to perform hydrocyanation reaction with various types of olefins under the action of a nickel catalyst to generate various nitrile compounds; the reaction temperature is 60-160 ℃, and the reaction time is 6-36 hours. The method overcomes the defects that the traditional olefin hydrocyanation reaction is complex in operation, needs a virulent cyanogen source as a reaction raw material and the like. The method uses simple, cheap, green and nontoxic formamide as a cyano-group source, does not need to add other dehydrating agents (such as phosphorus pentoxide, phosphorus oxychloride and the like), generates cyano-group negative ions through spontaneous dehydration of the formamide under the catalysis of Lewis acid, and generates hydrocyanation reaction with olefin in situ to generate nitrile compounds; the reaction condition is simple, the operation is easy, and the method is economic and efficient; meanwhile, the method is suitable for various mono-substituted and di-substituted aliphatic and aromatic olefins, and shows good substrate universality; it is insensitive to air, moisture and light; high yield, simple product separation and purification and wide application prospect.
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