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HYDROGEN GENERATOR COMMUNICATING WITH CLOUD MONITORING SYSTEM AND CORRESPONDING CLOUD MONITORING SYSTEM

机译:氢气发生器与云监控系统通信和相应的云监控系统

摘要

FIELD: medical equipment.;SUBSTANCE: group of inventions relates to medical equipment, namely to two variants of a hydrogen generator and two variants of a cloud monitoring system. In the first variant, a hydrogen generator communicating with a cloud monitoring system is comprised of a hydrogen generation apparatus containing a water tank configured to accommodate water subject to electrolysis. The apparatus has an electrolytic cell configured to conduct electrolysis of water subject to electrolysis to generate gaseous hydrogen. The apparatus comprises a diffuser configured to generate diffused gas. The diffuser receives gaseous hydrogen and mixes the diffused gas with the gaseous hydrogen to generate a mixed gas to be inhaled by the user. The apparatus comprises a monitoring apparatus connected with the hydrogen generation apparatus and configured to detect or display a hydrogen generation apparatus status signal. The status signal includes information on hydrogen production, information on time of use, information on hydrogen concentration, information on diffusion rate of the diffuser or information on the hydrogen generator temperature. The apparatus has a network apparatus electrically connected to the monitoring apparatus. The network apparatus selectively transmits machine information containing the status signal to the cloud monitoring system. The apparatus includes a control apparatus electrically connected to the network apparatus. The control apparatus is configured to receive the operating parameter from the cloud monitoring system via the network apparatus and to control the hydrogen generation apparatus according to the operating parameter. The control apparatus controls one from the activation procedure, the deactivation procedure and the adjustment procedure of the hydrogen generating apparatus according to the operating parameter. In the second variant, the hydrogen generator is comprised of a physiological information input apparatus configured to generate physiological information of the user onto the hydrogen generating apparatus, wherein the physiological information includes at least one of the blood oxygen concentration, heart rate, respiratory function value and blood pressure value. In the first variant, the cloud monitoring system for monitoring hydrogen generators comprises a cloud control console configured to receive machine information elements from hydrogen generators. The system has an integrated database configured to store machine information elements of hydrogen generators. The system includes a remote transmission apparatus connected to the cloud control console and configured to transmit an operating parameter to the first hydrogen generator from the hydrogen generators whereby the first hydrogen generator performs one of the activation procedure, the deactivation procedure and the adjustment procedure according to the operating parameter. The system comprises a location monitoring apparatus connected to an integrated database for displaying or recording locations of the hydrogen generators. The system includes a data analysis apparatus connected to the integrated database and configured to analyse and determine machine information elements. In the second variant, the system comprises an integrated database additionally containing a list of persons receiving a profit. The system has an order execution platform configured for the user to input an order execution instruction for the first hydrogen generator, wherein the order execution instruction contains information about a predetermined location or specific information about a person receiving a profit. ;EFFECT: after-sale service and tracking of consumer response and physiological changes after use.;21 cl, 9 dwg
机译:现场:医疗设备。物质:本发明组涉及医疗设备,即氢气发生器的两个变体和云监测系统的两个变体。在第一变型中,与云监测系统连通的氢发生器包括含有水箱的氢产生装置,该水箱构造成容纳电解的水。该装置具有电解电池,该电解电池被配置为导电经受电解的电解以产生气态氢。该装置包括漫射器,其被配置为产生扩散气体。扩散器接收气态氢,并将扩散气体与气态氢混合以产生由使用者吸入的混合气体。该装置包括与氢生成装置连接的监视装置,并且被配置为检测或显示氢收产生装置状态信号。状态信号包括有关氢生产的信息,有关使用时间的信息,关于氢浓度的信息,漫射器的扩散速率的信息或有关氢气发生器温度的信息。该装置具有电连接到监控装置的网络装置。网络设备选择性地将包含状态信号的机器信息发送到云监控系统。该装置包括电连接到网络设备的控制装置。控制装置被配置为通过网络设备从云监测系统接收操作参数,并根据操作参数控制氢气产生装置。控制装置根据操作参数从激活过程,去激活过程和氢生成装置的调整过程控制一个。在第二变型中,氢气发生器包括生理信息信息输入装置,该生理信息输入装置被配置为将使用者的生理信息产生到氢生成装置上,其中生理信息包括血氧浓度,心率,呼吸功能值中的至少一种和血压值。在第一变型中,用于监测氢气发生器的云监测系统包括云控制台,该控制台被配置为从氢发电机接收机器信息元件。该系统具有配置成存储氢气发生器的机器信息元素的集成数据库。该系统包括连接到云控制台的远程传输装置,并且被配置为从氢发生器向第一氢发生器发送操作参数,由此第一氢发生器执行激活过程中的一个,即根据的激活过程,停用过程和调整过程中的一个。操作参数。该系统包括连接到集成数据库的位置监控装置,用于显示或记录氢气发生器的位置。该系统包括连接到集成数据库的数据分析装置,并被配置为分析和确定机器信息元素。在第二变体中,该系统包括集成数据库,另外包含接受利润的人列表。该系统具有为用户配置的订单执行平台,用于输入第一氢发生器的订单执行指令,其中订单执行指令包含关于接收利润的人的预定位置或特定信息的信息。 ;效果:售后服务和跟踪使用后消费者反应和生理变化。; 21 cl,9 dwg

著录项

  • 公开/公告号RU2750649C2

    专利类型

  • 公开/公告日2021-06-30

    原文格式PDF

  • 申请/专利权人

    申请/专利号RU20190123465

  • 发明设计人 LIN KHSIN-YUJNG (CN);

    申请日2019-07-25

  • 分类号A61B5;A61B5/08;A61K9;G07C3/02;H04L29/08;

  • 国家 RU

  • 入库时间 2022-08-24 19:51:46

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