WO2019205201A1 - 可配置数据集中采集方法、装置及设备 - Google Patents

可配置数据集中采集方法、装置及设备 Download PDF

Info

Publication number
WO2019205201A1
WO2019205201A1 PCT/CN2018/087634 CN2018087634W WO2019205201A1 WO 2019205201 A1 WO2019205201 A1 WO 2019205201A1 CN 2018087634 W CN2018087634 W CN 2018087634W WO 2019205201 A1 WO2019205201 A1 WO 2019205201A1
Authority
WO
WIPO (PCT)
Prior art keywords
sensor
data
configuration file
result
interface
Prior art date
Application number
PCT/CN2018/087634
Other languages
English (en)
French (fr)
Inventor
张庭炎
谭海军
谭胜淋
Original Assignee
深圳远征技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳远征技术有限公司 filed Critical 深圳远征技术有限公司
Publication of WO2019205201A1 publication Critical patent/WO2019205201A1/zh

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D18/00Testing or calibrating apparatus or arrangements provided for in groups G01D1/00 - G01D15/00

Definitions

  • the present application relates to the field of data collection technologies, and in particular, to a configurable data centralized collection method, device and device.
  • the acquisition device, the protocol conversion is cumbersome, the operation of the networking is very difficult, the debugging and maintenance are very inconvenient, and the reliability of the system is also very poor. Therefore, at this stage, the manpower and material resources for centralized monitoring and input are very large, and it requires multi-party cooperation and coordination. The efficiency is very low, and the data collected by the sensor is not accurate and the error is large.
  • the embodiment of the present application provides a configurable data centralized collection method, device and device, which can solve the problem that the human and material resources for realizing centralized monitoring input in the prior art are very large, and need multi-party cooperation and coordination, and the efficiency is very It is low, and the sensor is not corrected by repeated use of the sensor, resulting in inaccurate data acquisition by the sensor.
  • An embodiment of the present application provides a configurable data collection method, including:
  • the interface includes at least one of the following: an RS485 interface, an RS232 interface, a CAN interface, a ZIGBEE interface, and a LORA interface.
  • the parsing result is uploaded to the external device, so that the external device modifies and updates the configuration file according to the sensor parameter and the data collected by the sensor, including:
  • uploading the parsed result to the external device including:
  • the parsed result is uploaded to the computer device through a network port, a serial port, or wirelessly through a preset communication protocol with the computer device.
  • the configurable data collection method further includes:
  • the editable interface of the configuration file is displayed to the user by the touch display device, and the editable interface is used for the user to modify and update the configuration file according to the sensor parameters and the data collected by the sensor.
  • the configurable data collection method further includes:
  • the modified configuration file update is stored in the storage device
  • the historical data is the result of the parsing last stored in the storage device.
  • the embodiment of the present application provides a configurable data centralized collection device, including:
  • a first acquiring module configured to acquire identifier information sent by the sensor
  • a determining module configured to determine, according to the identification information, a communication type of the sensor
  • a pushing module configured to push the communication type to a user, so that the user connects the sensor to a corresponding interface according to the communication type
  • a second acquiring module configured to acquire sensor data of the sensor by using the corresponding interface
  • a third acquiring module configured to parse the sensor data, and obtain a result of the parsing, where the parsing result includes a sensor parameter, data collected by the sensor, and a configuration file;
  • a modifying module configured to upload the parsed result to the external device, so that the external device modifies and updates the configuration file in the parsed result according to the sensor parameter and the data collected by the sensor;
  • the fourth obtaining module is configured to obtain the modified configuration file and update the storage into the sensor.
  • the modifying module is specifically configured to:
  • the embodiment of the present application provides a configurable data centralized collection device, including a memory, a processor, and a computer program stored on the memory and operable on the processor, wherein when the processor executes the program, the implementation is implemented.
  • the embodiment of the present application provides a computer readable storage medium, where the computer readable storage medium stores a computer program, and when the computer program is executed by one or more processors, implements any of the configurable data collections described above. The steps of the method.
  • the embodiment of the present application obtains the identifier information sent by the sensor, determines the communication type of the sensor according to the identifier information, and pushes the communication type to the user, so that the user compares the sensor according to the communication type.
  • Corresponding interface connection obtaining sensor data of the sensor through the corresponding interface, conveniently collecting sensor data of different types of sensors, realizing centralized monitoring, high efficiency, parsing the sensor data, and obtaining parsing results
  • the result of the parsing includes the sensor parameter, the data collected by the sensor, and the configuration file, and the result of the parsing is uploaded to the external device, so that the external device modifies the configuration file according to the sensor parameter and the data collected by the sensor.
  • the storage is updated, the modified configuration file is obtained, and the storage is updated into the sensor, which continuously monitors and corrects the sensor, reduces the error generated by the data collected by the sensor, and makes the data collected by the sensor more accurate.
  • FIG. 1 is a flowchart of a configurable data centralized collection method provided by an embodiment of the present application
  • FIG. 2 is a block diagram of a configurable data centralized collection device provided by an embodiment of the present application.
  • a configurable data centralized collection method provided by an embodiment of the present application includes:
  • Step S101 Acquire identifier information sent by the sensor.
  • the execution body of the method in this embodiment may be a configurable data centralized collection device.
  • the configurable data centralized collection device can adapt different types of sensors when communicating with the sensor, and has the conditions for communicating with different types of sensors by performing port configuration, and the same type of sensor is used.
  • the same type of interface or port communicates, and the data collection device built-in protocol conversion can be configured to collect sensor data of multiple different types of sensors.
  • the acquiring the identifier information sent by the sensor may include: receiving the wireless signal sent by the different types of sensors, and acquiring the identifier information corresponding to the wireless signal, where the identifier information may include a model of the sensor, and configured to provide the determining the sensor. The basis of the type of communication to which it belongs.
  • Step S102 Determine, according to the identification information, a communication type of the sensor.
  • different models of the sensors may correspond to the same or different communication types, and the communication type of the sensor is determined according to the model of the sensor, and the communication type is used to determine a corresponding interface for wired communication with the sensor.
  • the sensor communicates with the configurable data collection device through a corresponding interface.
  • Step S103 pushing the communication type to the user, so that the user connects the sensor to the corresponding interface according to the communication type.
  • different types of sensors correspond to different communication types
  • different communication types correspond to different interfaces connected to different types of sensors.
  • the communication type is pushed and displayed to the user. The user is caused to connect the sensor to a corresponding interface according to the communication type for wired communication with different types of sensors.
  • Step S104 Acquire sensor data of the sensor through the corresponding interface.
  • sensor data of a plurality of different types of sensors can be collected through different interfaces, which can achieve centralized monitoring and high efficiency, wherein the sensor data can be used to monitor the status and sensors of devices collected by sensors.
  • the operating state by monitoring the sensor data collected by the sensor, to determine whether the operation of the device is normal, to determine whether the sensor data of the sensor has errors or large errors.
  • Step S105 parsing the sensor data, and obtaining a result of the parsing, where the parsing result includes a sensor parameter, data collected by the sensor, and a configuration file.
  • the sensor data is analyzed, and the sensor parameters, the data collected by the sensor, and the configuration file are obtained.
  • the sensor parameter is used to determine whether the sensor is operating normally. When the sensor parameter is inconsistent with the factory setting, it is determined that the sensor is abnormal.
  • the data collected by the sensor is used to monitor whether the state of the device is normal or not.
  • the configuration file is used to correct the sensor when the sensor is abnormal or the device is abnormal, and the error of the data collected by the sensor is reduced, so that the data collected by the sensor is more accurate.
  • Step S106 Upload the parsed result to the external device, so that the external device modifies and updates the configuration file according to the sensor parameter and the data collected by the sensor.
  • the external device may be a server or a computer device
  • the configurable data collection device communicates with the server or the computer device, so that the external device modifies the configuration file according to the sensor parameters and the data collected by the sensor.
  • the purpose of correcting the sensor is achieved, so that the data collected by the sensor has no error or reduces the error, and the modified configuration file is updated and stored in the configurable data set collection device.
  • Step S107 Acquire a modified configuration file and update the storage into the sensor.
  • the modified configuration file is updated and stored in the sensor, so that the running state of the sensor is normal, and is used as an initial modification after the configuration file in the result of the next parsing of the sensor data.
  • Configuration file is updated and stored in the sensor, so that the running state of the sensor is normal, and is used as an initial modification after the configuration file in the result of the next parsing of the sensor data.
  • the senor can be installed on multiple devices that need to be monitored, and the data of the device is collected by the sensor (the data of the collection device is the data collected by the sensor), and the configurable data collection device can acquire the sensor through wireless communication.
  • the model determines the type of communication in which the sensor is in wired communication with the configurable data collection device, the wireless communication can include at least one of the following: WIFI communication, Bluetooth communication, GPRS communication, ZIGBEE communication, LORA communication.
  • the configurable data collection device can include a controller, a plurality of interfaces and a housing, the controller being disposed inside the housing, the interface being disposed outside the housing, or the configurable data collection device can include a controller And a plurality of interfaces and printed circuit boards, the controller and the plurality of interfaces being integrated on the printed circuit board.
  • the controller can be connected to the sensor through an interface to perform the above method.
  • the plurality of interfaces may be detachably connected to the sensor, and the user may select a corresponding interface according to the communication type and connect the sensor to the corresponding interface.
  • the user can select the communication type pushed by the device in the configurable data set, and select the interface of the wired communication.
  • the user can connect the sensor to the corresponding interface through the connector, when needed and multiple interfaces.
  • the user can connect to the corresponding multiple interfaces through multiple clips or switch the clips from one interface to another interface, so that the sensor can communicate with the configurable data collection device in wired communication.
  • the wired communication may include at least one of the following: RS485 communication, RS232 communication, CAN communication, TTL serial communication, network port RJ45 communication, SPI communication, and USB communication.
  • the external device connected to the configurable data centralized collecting device modifies the configuration file according to the sensor parameters and the data collected by the sensor, and updates the modified configuration file. Stored in a configurable data set collection device.
  • the identifier information sent by the sensor is obtained, the communication type of the sensor is determined according to the identifier information, and the communication type is pushed to the user, so that the user sends the sensor according to the communication type.
  • Connecting with the corresponding interface obtaining sensor data of the sensor through the corresponding interface, conveniently collecting sensor data of different types of sensors, implementing centralized monitoring, high efficiency, parsing the sensor data, and obtaining parsing results
  • the result of the parsing includes a sensor parameter, data collected by the sensor, and a configuration file, and the result of the parsing is uploaded to the external device, so that the external device performs the configuration file according to the sensor parameter and the data collected by the sensor.
  • Modify and update the storage obtain the modified configuration file, and update the storage to the sensor, realize continuous monitoring and correction of the sensor, reduce the error generated by the data collected by the sensor, and make the data collected by the sensor more accurate.
  • the interface includes at least one of the following: an RS485 interface, an RS232 interface, a CAN interface, a ZIGBEE interface, and a LORA interface.
  • the interface may include at least one of the following: an RS485 interface, an RS232 interface, a CAN interface, a ZIGBEE interface, and a LORA interface, which are different through corresponding interfaces.
  • the sensor connection can be configured to realize wired communication through the interface between the data collection device and the sensor.
  • the result of the parsing is uploaded to the external device, so that the external device modifies the configuration file and updates the storage according to the sensor parameter and the data collected by the sensor, and may include: parsing the parsed result through the network The port, the serial port or the wireless uploading to the server; obtaining a modification instruction input by the user; and sending the modification instruction to the server, where the modification instruction is used by the server to modify and update the configuration file according to the sensor parameter and the data collected by the sensor.
  • the parsing result is uploaded to the external device
  • the external device may be a server
  • the parsing result is uploaded to the server through a network port, a serial port, or a wireless
  • the server is used to pass the
  • the general packet radio service technology (GPRS), WIFI or network port RJ45 obtains the result of the parsing, and obtains a modification instruction input by the user, and performs a configuration file according to the sensor parameter in the parsed result and the data collected by the sensor. Modify, send the modified configuration file to the configurable data collection device for update storage.
  • GPRS general packet radio service technology
  • uploading the parsed result to the external device may include: uploading, by using a preset communication protocol with the computer device, the parsed result to the computer device by using a network port, a serial port, or wirelessly.
  • the parsing result is uploaded to the external device
  • the external device may be a computer device
  • the parsing result is uploaded to the computer device through an RS232 interface or an RS485 interface, where the computer device is used to pass
  • the preset communication protocol is configured to modify the configuration file according to the sensor parameters in the parsed result and the data collected by the sensor, and send the modified configuration file to the configurable data collection device for update storage.
  • the configurable data centralized collection method may further include: displaying, by the touch display device, an editable interface of the configuration file to the user, where the editable interface is configured by the user according to the sensor parameter and the data collected by the sensor.
  • the file is modified and the storage is updated.
  • the configuration file after the sensor data is parsed may be modified by the touch display device.
  • the specific manner is as follows: the touch display device and the configurable data centralized collection device are detachably connected, and the data collection device can be configured to be
  • the touch display device sends an editable instruction, the editable instruction is used to instruct the touch display device to display an editable interface of the configuration file to the user, so that the user modifies the configuration file according to the sensor parameter and the data collected by the sensor. And store the modified configuration file update in the configurable dataset collection device.
  • the configurable data collection method may further include: storing the parsed result in a storage device, acquiring historical data in the storage device, and configuring a configuration file in the parsed result according to the historical data. Modifying; storing the modified configuration file update to the storage device; wherein the historical data is the result of the parsing last stored in the storage device.
  • the configuration file after the sensor data is parsed may be modified by the storage device.
  • the specific method is: the storage device is detachably connected to the configurable data centralized collection device, and the storage device may be an SD card, and is configurable.
  • the data collection device may include an SD card slot and a single chip microcomputer, and the SD card is placed in the configurable data centralized collection device through the card slot, and the parsing result is stored in the SD card, and the single chip reads the SD card.
  • the result of the parsing and the historical data (the historical data is the result of the parsing stored last time in the storage device), and according to the historical data, the configuration file in the parsed result is modified, and the modified configuration file is updated. Stored in the SD card as the historical data when the configuration file is modified next time.
  • the communication type corresponding to different types of sensors is identified, so that the user selects different interfaces corresponding to different types of sensors, and connects the same type of sensor with the corresponding interface, and obtains the corresponding interface through the corresponding interface.
  • the sensor data of the sensor facilitates collecting sensor data of different types of sensors, realizes centralized monitoring, and has high efficiency. By analyzing the sensor data, the result of the analysis is obtained, and then the external device or the configurable data centralized collection device is used.
  • the MCU modifies and updates the configuration file in the parsed result, and stores the modified configuration file update in the sensor, thereby continuously monitoring and correcting the sensor, and reducing the error generated by the data collected by the sensor. Make the data collected by the sensor more accurate.
  • the configurable data centralized collection device may include: a first obtaining module 201, configured to acquire identification information sent by a sensor; and a determining module 202, configured to determine, according to the identifier information, the sensor
  • the communication module 203 is configured to: push the communication type to the user, so that the user connects the sensor to the corresponding interface according to the communication type; and the second obtaining module 204 is configured to pass the corresponding The interface obtains sensor data of the sensor;
  • the third obtaining module 205 is configured to parse the sensor data to obtain a parsing result, where the parsing result includes a sensor parameter, a data collected by the sensor, and a configuration file;
  • the module 206 is configured to upload the parsed result to the external device, so that the external device modifies and updates the configuration file in the parsed result according to the sensor parameter and the data collected by the sensor; the fourth obtaining module 207 Used to obtain the modified configuration file and update the storage to the sensor.
  • the configurable data centralized collection device in this embodiment may be used to perform the configurable data collection method shown in FIG. 1.
  • FIG. 1 For the specific implementation principle, refer to the foregoing method embodiment, and details are not described herein again.
  • the first acquisition module 201, the determination module 202, the push module 203, the second acquisition module 204, the third acquisition module 205, the modification module 206, and the fourth acquisition module 207 are configured to acquire the identifier sent by the sensor. Determining, according to the identifier information, a communication type of the sensor, and pushing the communication type to a user, so that the user connects the sensor to a corresponding interface according to the communication type, by using the corresponding
  • the interface acquires sensor data of the sensor, facilitates collecting sensor data of different types of sensors, implements centralized monitoring, has high efficiency, parses the sensor data, and obtains a result of the analysis, wherein the parsing result includes a sensor parameter.
  • the data collected by the sensor and the configuration file are uploaded to the external device, so that the external device modifies and updates the configuration file according to the sensor parameters and the data collected by the sensor, and obtains the modified configuration file. And update the storage to the sensor to achieve sensing Continuous monitoring and correction to reduce the error generated by the data collected by the sensor, so that the data collected by the sensor is more accurate.
  • the modifying module 206 is specifically configured to: upload the parsed result to the server through a network port, a serial port, or wirelessly; obtain a modification instruction input by the user; and send the modification instruction to the server, where the modification instruction is used
  • the server modifies and updates the configuration file according to the sensor parameters and the data collected by the sensor.
  • the setting modification module 206 is specifically configured to upload the parsed result to the server through a network port, a serial port, or a wireless, where the server is used to pass the general packet radio service technology (GPRS), WIFI, or The network port RJ45 obtains the result of the parsing, and obtains a modification instruction input by the user, and according to the sensor parameter in the parsed result and the data collected by the sensor, the configuration file is modified, and the modified configuration file is sent to the Configure the data collection device to update storage.
  • GPRS general packet radio service technology
  • the configurable data collection device may further include: a touch display module, configured to display an editable interface of the configuration file to the user, where the editable interface is used by the user according to the sensor parameter and the data collected by the sensor. Modify the configuration file and update the storage;
  • a storage module configured to store the parsed result and the historical data, so that the user modifies the configuration file in the parsed result according to the historical data, and updates and stores the modified configuration file, where the historical data is The result of the parsing stored in the storage module at one time.
  • the setting modification module 206, the fourth obtaining module 207, the touch display module, and the storage module are configured to modify and update the configuration file in the parsed result by using an external device or a configurable data centralized collecting device. And storing the modified configuration file update to the sensor, realizing continuous monitoring and correction of the sensor, reducing errors generated by the data collected by the sensor, and making the data collected by the sensor more accurate.
  • the configurable data centralized collection device includes a memory, a processor, and a computer program stored on the memory and operable on the processor, and when the processor executes the program, the steps of the foregoing method may be implemented.
  • the configurable data collection device in this embodiment may be used to perform the configurable data collection method shown in FIG. 1.
  • the specific implementation principle refer to the foregoing method embodiment, and details are not described herein again.
  • the computer readable storage medium stores a computer program that, when executed by one or more processors, implements the steps of the above method.
  • the computer readable storage medium in this embodiment may be used to perform the configurable data collection method shown in FIG. 1.
  • the specific implementation principle refer to the foregoing method embodiment, and details are not described herein again.
  • the application obtains the identification information sent by the sensor by setting the configurable data centralized collection method, device and device, determines the communication type of the sensor according to the identification information, and pushes the communication type to the user, so that the user
  • the sensor is connected to the corresponding interface according to the communication type, and the sensor data of the sensor is acquired through the corresponding interface, so that the sensor data of different types of sensors is conveniently collected, and centralized monitoring is realized, and the efficiency is high.
  • the sensor data is parsed, the result of the parsing is obtained, and the configuration file in the parsed result is modified and updated by the external device or the single-chip microcomputer in the configurable data collection device, and the modified configuration file is updated and stored to In the sensor, the continuous monitoring and correction of the sensor is realized, and the error generated by the data collected by the sensor is reduced, so that the data collected by the sensor is more accurate.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Arrangements For Transmission Of Measured Signals (AREA)

Abstract

本申请涉及数据采集技术领域,提供了一种可配置数据集中采集方法、装置及设备。所述方法包括:获取传感器发送的标识信息,确定所述传感器的通信类型;将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接;通过所述对应的接口,获取所述传感器的传感器数据;对所述传感器数据进行解析,获取解析的结果;将所述解析的结果上传至外接设备,以使所述外接设备根据解析的结果中的传感器参数及传感器采集的数据,对解析的结果中配置文件进行修改并更新存储;获取修改后的配置文件,并更新存储至所述传感器中。所述方法、装置及设备可以解决现有技术中集中监控不容易实现,效率非常低,传感器采集的数据误差大的问题。

Description

可配置数据集中采集方法、装置及设备 技术领域
本申请涉及数据采集技术领域,具体涉及一种可配置数据集中采集方法、装置及设备。
背景技术
随着新技术革命的到来,世界开始进入信息时代,在利用信息的过程中,首先要解决的就是要获取准确可靠的信息,而传感器是获取自然和生产领域中信息的主要途径与手段,由于传感器技术和通信技术在迅速的发展,传感器设备的种类和分支越来越多,而传感器设备选用的通信方式也越来越多,因此在需要采集传感器设备信息的时候,需要与之对应的数据采集装置,并符合其相关的通信协议。而在实际应用场合中,需要监测多种传感器设备,各类传感器设备的数量都可能是随机的情况下,想要实现集中监控,往往需要复杂的接线和配置,以及适合各类不同传感器的数据采集装置,协议转换较为繁琐,组网运行难度十分大,调试和维护很不便利,系统的可靠性也很差。因此在现阶段,实现集中监控投入的人力和物力都十分庞大,并且需要多方合作和协调,效率非常低,而且通过重复使用传感器不进行修正,导致传感器采集的数据不精准、误差大。
技术问题
有鉴于此,本申请实施例提供了一种可配置数据集中采集方法、装置及设备,可以解决现有技术中实现集中监控投入的人力和物力都十分庞大,并且需要多方合作和协调,效率非常低,而且通过重复使用传感器不进行修正,导致传感器采集数据不精准、误差大的问题。
技术解决方案
本申请实施例提供一种可配置数据集中采集方法,包括:
获取传感器发送的标识信息;
根据所述标识信息,确定所述传感器的通信类型;
将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接;
通过所述对应的接口,获取所述传感器的传感器数据;
对所述传感器数据进行解析,获取解析的结果,所述解析的结果包括传感器参数、传感器采集的数据、配置文件;
将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储;
获取修改后的配置文件,并更新存储至所述传感器中。
可选的,所述接口包括下述中至少一项:RS485接口、RS232接口、CAN接口、ZIGBEE接口、LORA接口。
可选的,将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储,包括:
将所述解析的结果通过网口、串口或无线上传至服务器;
获取用户输入的修改指令;
向服务器发送所述修改指令,所述修改指令用于服务器根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
可选的,将所述解析的结果上传至外接设备,包括:
通过与计算机设备之间的预设通信协议,将所述解析的结果通过网口、串口或无线上传至计算机设备。
可选的,所述可配置数据集中采集方法,还包括:
通过触摸显示装置向用户显示配置文件的可编辑界面,所述可编辑界面用于用户根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
可选的,所述可配置数据集中采集方法,还包括:
将解析的结果存储至存储装置中,获取存储装置中的历史数据,并根据所述历史数据,对解析的结果中的配置文件进行修改;
将修改后的配置文件更新存储至存储装置中;
其中,所述历史数据为上一次存储在存储装置中的解析的结果。
本申请实施例提供一种可配置数据集中采集装置,包括:
第一获取模块,用于获取传感器发送的标识信息;
确定模块,用于根据所述标识信息,确定所述传感器的通信类型;
推送模块,用于将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接;
第二获取模块,用于通过所述对应的接口,获取所述传感器的传感器数据;
第三获取模块,用于对所述传感器数据进行解析,获取解析的结果,所述解析的结果包括传感器参数、传感器采集的数据、配置文件;
修改模块,用于将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对解析的结果中的配置文件进行修改并更新存储;
第四获取模块,用于获取修改后的配置文件,并更新存储至所述传感器中。
可选的,所述修改模块,具体用于:
将所述解析的结果通过网口、串口或无线上传至服务器;
获取用户输入的修改指令;
向服务器发送所述修改指令,所述修改指令用于服务器根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
本申请实施例提供一种可配置数据集中采集设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,其特征在于,所述处理器执行所述程序时,实现上述任一所述可配置数据集中采集方法的步骤。
本申请实施例提供一种计算机可读存储介质,所述计算机可读存储介质存储有计算机程序,所述计算机程序被一个或多个处理器执行时,实现上述任一所述可配置数据集中采集方法的步骤。
有益效果
本申请实施例通过获取传感器发送的标识信息,根据所述标识信息,确定所述传感器的通信类型,将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接,通过所述对应的接口,获取所述传感器的传感器数据,便于采集不同类型的传感器的传感器数据,实现集中监控,效率高,对所述传感器数据进行解析,获取解析的结果,其中,所述解析的结果包括传感器参数、传感器采集的数据、配置文件,将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储,获取修改后的配置文件,并更新存储至所述传感器中,实现了对传感器的不断监控和修正,降低传感器采集的数据产生误差,使传感器采集的数据更精准。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例提供的可配置数据集中采集方法流程图;
图2是本申请实施例提供的可配置数据集中采集装置方框结构图。
本发明的实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
参见图1,本申请实施例提供的可配置数据集中采集方法,包括:
步骤S101,获取传感器发送的标识信息。
本实施例中方法的执行主体可以为可配置数据集中采集设备。所述可配置数据集中采集设备在与所述传感器通信的情况下,可以对不同类型的传感器进行适配,通过进行端口的配置,具备与不同类型的传感器进行通信的条件,同一类型的传感器采用同一类型的接口或端口进行通信,并且可配置数据集中采集设备内置协议转换,可以用于集中采集多个不同类型的传感器的传感器数据。
可选的,获取传感器发送的标识信息可以包括:接收不同类型的传感器发送的无线信号,获取无线信号对应的标识信息,所述标识信息可以包括所述传感器的型号,用于提供判断所述传感器所属的通信类型的依据。
步骤S102,根据所述标识信息,确定所述传感器的通信类型。
本实施例中,传感器不同的型号可以对应相同或不同的通信类型,根据传感器的型号,确定所述传感器的通信类型,所述通信类型用于确定与所述传感器进行有线通信的对应的接口,以使传感器与可配置数据集中采集设备通过对应的接口进行通信。
步骤S103,将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接。
本实施例中,不同类型的传感器对应着不同的通信类型,不同的通信类型对应着与不同类型的传感器连接的不同的接口,在确定所述通信类型后,向用户推送显示所述通信类型,以使所述用户根据所述通信类型将所述传感器与对应的接口连接,用于与不同类型的传感器进行有线通信。
步骤S104,通过所述对应的接口,获取所述传感器的传感器数据。
本实施例中,通过不同的接口,可以采集多个不同类型的传感器的传感器数据,可以实现集中监控,效率高,其中,所述传感器数据可以用于监控通过传感器进行采集的设备的状态和传感器的运行状态,通过监控设备时传感器采集到的传感器数据,判断设备的运行是否正常,判断传感器的传感器数据是否存在误差或是较大的误差。
步骤S105,对所述传感器数据进行解析,获取解析的结果,所述解析的结果包括传感器参数、传感器采集的数据、配置文件。
本实施例中,在获取所述传感器数据后,则开始解析所述传感器数据,获取解析的结果中的传感器参数、传感器采集的数据及配置文件。所述传感器参数用于判断所述传感器是否运行正常,与出厂设置的传感器参数不一致时,判断为所述传感器运行异常;所述传感器采集的数据用于监控设备的状态是否正常,在预设范围外时,判断所述设备运行异常;所述配置文件用于在所述传感器运行异常或设备运行异常时,对传感器进行修正,降低传感器采集的数据的误差,使传感器采集的数据更精准。
步骤S106,将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
本实施例中,所述外接设备可以是服务器或计算机设备,可配置数据集中采集设备与服务器或计算机设备进行通信,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改,达到对对传感器修正的目的,以使所述传感器采集的数据不存在误差或是降低误差,将修改后的配置文件更新存储在可配置数据集中采集设备中。
步骤S107,获取修改后的配置文件,并更新存储至所述传感器中。
本实施例中,将修改后的配置文件更新存储至所述传感器中,以使所述传感器运行状态正常,并作为下一次获取所述传感器数据后解析的结果中的配置文件后进行修改的初始配置文件。
在实际应用中,可以将传感器安装在需进行监控的多个设备上,通过传感器采集设备的数据(采集设备的数据为传感器采集的数据),可配置数据集中采集设备可以通过无线通信,获取传感器的型号,进而确定传感器与可配置数据集中采集设备进行有线通信的通信类型,所述无线通信可以包括下述至少一项:WIFI通信、蓝牙通信、GPRS通信、ZIGBEE通信、LORA通信。
可配置数据集中采集设备可以包括控制器、多个接口和壳体,所述控制器设置在所述壳体内部,所述接口设置在壳体外部,或者可配置数据集中采集设备可以包括控制器、多个接口和印刷电路板,所述控制器和多个接口集成在所述印刷电路板上。控制器可以通过接口与传感器连接,执行上述方法。多个接口可以与传感器可拆卸连接,用户可以根据所述通信类型选择出对应的接口,并将所述传感器与对应的接口连接。
当需要对设备的数据采集时,用户可以根据可配置数据集中采集设备推送的通信类型,选择有线通信的接口,用户可以通过接线夹将所述传感器与对应的接口连接,当需要与多个接口连接或切换接口时,用户可以通过多个接线夹与对应的多个接口连接或将接线夹从一个接口处切换至另一个接口处,以使传感器与可配置数据集中采集设备进行有线通信,所述有线通信可以包括下述至少一项:RS485通信、RS232通信、CAN通信、TTL串口通信、网口RJ45通信、SPI通信、USB通信。在进行通信后,根据传感器传送的传感器数据,以使与可配置数据集中采集设备连接的所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改,并将修改后的配置文件更新存储至可配置数据集中采集设备中。
本实施例中,通过获取传感器发送的标识信息,根据所述标识信息,确定所述传感器的通信类型,将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接,通过所述对应的接口,获取所述传感器的传感器数据,便于采集不同类型的传感器的传感器数据,实现集中监控,效率高,对所述传感器数据进行解析,获取解析的结果,其中,所述解析的结果包括传感器参数、传感器采集的数据、配置文件,将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储,获取修改后的配置文件,并更新存储至所述传感器中,实现了对传感器的不断监控和修正,降低传感器采集的数据产生的误差,使传感器采集的数据更精准。
进一步地,所述接口包括下述中至少一项:RS485接口、RS232接口、CAN接口、ZIGBEE接口、LORA接口。
本实施例中,不同的传感器类型对应着不同的接口,所述接口可以包括下述中至少一项:RS485接口、RS232接口、CAN接口、ZIGBEE接口、LORA接口,通过不同的接口与对应的不同的传感器连接,可配置数据集中采集设备与传感器通过接口实现有线通信。
可选的,将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储,可以包括:将所述解析的结果通过网口、串口或无线上传至服务器;获取用户输入的修改指令;向服务器发送所述修改指令,所述修改指令用于服务器根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
本实施例中,将所述解析的结果上传至外接设备,所述外接设备可以是服务器,并通过网口、串口或无线将所述解析的结果上传至所述服务器,所述服务器用于通过通用分组无线服务技术(GPRS)、WIFI或网口RJ45获取所述解析的结果,并通过获取用户输入的修改指令,根据所述解析的结果中的传感器参数及传感器采集的数据,对配置文件进行修改,将修改后的配置文件发送至可配置数据集中采集设备进行更新存储。
可选的,将所述解析的结果上传至外接设备,可以包括:通过与计算机设备之间的预设通信协议,将所述解析的结果通过网口、串口或无线上传至计算机设备。
本实施例中,将所述解析的结果上传至外接设备,所述外接设备可以是计算机设备,通过RS232接口或RS485接口,将所述解析的结果上传至计算机设备,所述计算机设备用于通过预设通信协议,根据所述解析的结果中的传感器参数及传感器采集的数据,对配置文件进行修改,将修改后的配置文件发送至可配置数据集中采集设备进行更新存储。
可选的,所述可配置数据集中采集方法,还可以包括:通过触摸显示装置向用户显示配置文件的可编辑界面,所述可编辑界面用于用户根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
本实施例中,还可以通过触摸显示装置对传感器数据解析后的配置文件进行修改,具体方式为:将所述触摸显示装置与可配置数据集中采集设备可拆卸连接,可配置数据集中采集设备向所述触摸显示装置发送可编辑指令,所述可编辑指令用于指示所述触摸显示装置向用户显示配置文件的可编辑界面,以使用户根据传感器参数及传感器采集的数据,对配置文件进行修改,并将修改后的配置文件更新存储在可配置数据集中采集设备中。
可选的,所述可配置数据集中采集方法,还可以包括:将解析的结果存储至存储装置中,获取存储装置中的历史数据,并根据所述历史数据,对解析的结果中的配置文件进行修改;将修改后的配置文件更新存储至存储装置中;其中,所述历史数据为上一次存储在存储装置中的解析的结果。
本实施例中,还可以通过存储装置对传感器数据解析后的配置文件进行修改,具体方式为:将存储装置与可配置数据集中采集设备可拆卸连接,所述存储装置可以为SD卡,可配置数据集中采集设备可以包括SD卡槽和单片机,将SD卡通过所述卡槽放置在可配置数据集中采集设备中,将所述解析的结果存储至SD卡中,所述单片机读取SD卡中的解析的结果和历史数据(历史数据为上一次存储在存储装置中的解析的结果),并根据所述历史数据,对解析的结果中的配置文件进行修改,并将修改后的配置文件更新存储至SD卡中作为下一次修改配置文件时的历史数据。
本实施例中,通过识别不同类型的传感器对应的通信类型,以使用户选择不同类型的传感器对应的不同接口,并将同一类型的传感器与对应的接口连接,通过所述对应的接口,获取所述传感器的传感器数据,便于采集不同类型的传感器的传感器数据,实现集中监控,效率高,通过对所述传感器数据进行解析,获取解析的结果,再通过外接设备或是可配置数据集中采集设备中的单片机对解析的结果中的配置文件进行修改并更新存储,并将修改后的配置文件更新存储至所述传感器中,实现了对传感器的不断监控和修正,降低传感器采集的数据产生的误差,使传感器采集的数据更精准。
参见图2,本申请提供的可配置数据集中采集装置,可以包括:第一获取模块201,用于获取传感器发送的标识信息;确定模块202,用于根据所述标识信息,确定所述传感器的通信类型;推送模块203,用于将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接;第二获取模块204,用于通过所述对应的接口,获取所述传感器的传感器数据;第三获取模块205,用于对所述传感器数据进行解析,获取解析的结果,所述解析的结果包括传感器参数、传感器采集的数据、配置文件;修改模块206,用于将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对解析的结果中的配置文件进行修改并更新存储;第四获取模块207,用于获取修改后的配置文件,并更新存储至所述传感器中。
本实施例中的可配置数据集中采集装置可以用于执行图1所示的可配置数据集中采集方法,其具体实现原理可以参见上述方法实施例,此处不再赘述。
本实施例中,通过设置第一获取模块201、确定模块202、推送模块203、第二获取模块204、第三获取模块205、修改模块206以及第四获取模块207,用于获取传感器发送的标识信息,根据所述标识信息,确定所述传感器的通信类型,将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接,通过所述对应的接口,获取所述传感器的传感器数据,便于采集不同类型的传感器的传感器数据,实现集中监控,效率高,对所述传感器数据进行解析,获取解析的结果,其中,所述解析的结果包括传感器参数、传感器采集的数据、配置文件,将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储,获取修改后的配置文件,并更新存储至所述传感器中,实现了对传感器的不断监控和修正,降低传感器采集的数据产生的误差,使传感器采集的数据更精准。
进一步地,所述修改模块206,具体用于:将所述解析的结果通过网口、串口或无线上传至服务器;获取用户输入的修改指令;向服务器发送所述修改指令,所述修改指令用于服务器根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
本实施例中,通过设置修改模块206,具体用于通过网口、串口或无线将所述解析的结果上传至所述服务器,所述服务器用于通过通用分组无线服务技术(GPRS)、WIFI或网口RJ45获取所述解析的结果,并通过获取用户输入的修改指令,根据所述解析的结果中的传感器参数及传感器采集的数据,对配置文件进行修改,将修改后的配置文件发送至可配置数据集中采集设备进行更新存储。
可选的,所述可配置数据集中采集装置,还可以包括:触摸显示模块,用于向用户显示配置文件的可编辑界面,所述可编辑界面用于用户根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储;
存储模块,用于存储解析的结果和历史数据,以使用户根据所述历史数据,对解析的结果中的配置文件进行修改,并更新存储修改后的配置文件,其中,所述历史数据为上一次存储在存储模块中的解析的结果。
本实施例中,通过设置修改模块206、第四获取模块207、触摸显示模块和存储模块,用于通过外接设备或是可配置数据集中采集装置对解析的结果中的配置文件进行修改并更新存储,并将修改后的配置文件更新存储至所述传感器中,实现了对传感器的不断监控和修正,降低传感器采集的数据产生误差,使传感器采集的数据更精准。
本申请提供的可配置数据集中采集设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述程序时,可以实现上述方法的步骤。
本实施例中的可配置数据集中采集设备可以用于执行图1所示的可配置数据集中采集方法,其具体实现原理可以参见上述方法实施例,此处不再赘述。
本申请提供的计算机可读存储介质,所述计算机可读存储介质存储有计算机程序,所述计算机程序被一个或多个处理器执行时,可以实现上述方法的步骤。
本实施例中的计算机可读存储介质可以用于执行图1所示的可配置数据集中采集方法,其具体实现原理可以参见上述方法实施例,此处不再赘述。
本申请通过设置可配置数据集中采集方法、装置及设备,获取传感器发送的标识信息,根据所述标识信息,确定所述传感器的通信类型,将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接,通过所述对应的接口,获取所述传感器的传感器数据,便于采集不同类型的传感器的传感器数据,实现集中监控,效率高,通过对所述传感器数据进行解析,获取解析的结果,再通过外接设备或是可配置数据集中采集设备中的单片机对解析的结果中的配置文件进行修改并更新存储,并将修改后的配置文件更新存储至所述传感器中,实现了对传感器的不断监控和修正,降低传感器采集的数据产生的误差,使传感器采集的数据更精准。
以上所述实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围,均应包含在本申请的保护范围之内。

Claims (10)

  1. 一种可配置数据集中采集方法,其特征在于,包括:
    获取传感器发送的标识信息;
    根据所述标识信息,确定所述传感器的通信类型;
    将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接;
    通过所述对应的接口,获取所述传感器的传感器数据;
    对所述传感器数据进行解析,获取解析的结果,所述解析的结果包括传感器参数、传感器采集的数据、配置文件;
    将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储;
    获取修改后的配置文件,并更新存储至所述传感器中。
  2. 根据权利要求1所述的可配置数据集中采集方法,其特征在于,
    所述接口包括下述中至少一项:RS485接口、RS232接口、CAN接口、ZIGBEE接口、LORA接口。
  3. 根据权利要求1所述的可配置数据集中采集方法,其特征在于,将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储,包括:
    将所述解析的结果通过网口、串口或无线上传至服务器;
    获取用户输入的修改指令;
    向服务器发送所述修改指令,所述修改指令用于服务器根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
  4. 根据权利要求1所述的可配置数据集中采集方法,其特征在于,将所述解析的结果上传至外接设备,包括:
    通过与计算机设备之间的预设通信协议,将所述解析的结果通过网口、串口或无线上传至计算机设备。
  5. 根据权利要求1所述的可配置数据集中采集方法,其特征在于,还包括:
    通过触摸显示装置向用户显示配置文件的可编辑界面,所述可编辑界面用于用户根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
  6. 根据权利要求1所述的可配置数据集中采集方法,其特征在于,还包括:
    将解析的结果存储至存储装置中,获取存储装置中的历史数据,并根据所述历史数据,对解析的结果中的配置文件进行修改;
    将修改后的配置文件更新存储至存储装置中;
    其中,所述历史数据为上一次存储在存储装置中的解析的结果。
  7. 一种可配置数据集中采集装置,其特征在于,包括:
    第一获取模块,用于获取传感器发送的标识信息;
    确定模块,用于根据所述标识信息,确定所述传感器的通信类型;
    推送模块,用于将所述通信类型推送给用户,以使所述用户根据所述通信类型将所述传感器与对应的接口连接;
    第二获取模块,用于通过所述对应的接口,获取所述传感器的传感器数据;
    第三获取模块,用于对所述传感器数据进行解析,获取解析的结果,所述解析的结果包括传感器参数、传感器采集的数据、配置文件;
    修改模块,用于将所述解析的结果上传至外接设备,以使所述外接设备根据传感器参数及传感器采集的数据,对解析的结果中的配置文件进行修改并更新存储;
    第四获取模块,用于获取修改后的配置文件,并更新存储至所述传感器中。
  8. 根据权利要求7所述的可配置数据集中采集装置,其特征在于,所述修改模块,具体用于:
    将所述解析的结果通过网口、串口或无线上传至服务器;
    获取用户输入的修改指令;
    向服务器发送所述修改指令,所述修改指令用于服务器根据传感器参数及传感器采集的数据,对配置文件进行修改并更新存储。
  9. 一种可配置数据集中采集设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,其特征在于,所述处理器执行所述程序时,实现如权利要求1至6任一项所述方法的步骤。
  10. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质存储有计算机程序,所述计算机程序被一个或多个处理器执行时,实现如权利要求1至6任一项所述方法的步骤。
PCT/CN2018/087634 2018-04-28 2018-05-21 可配置数据集中采集方法、装置及设备 WO2019205201A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201810404265.6 2018-04-28
CN201810404265.6A CN108375390A (zh) 2018-04-28 2018-04-28 可配置数据集中采集方法、装置及设备

Publications (1)

Publication Number Publication Date
WO2019205201A1 true WO2019205201A1 (zh) 2019-10-31

Family

ID=63033071

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/087634 WO2019205201A1 (zh) 2018-04-28 2018-05-21 可配置数据集中采集方法、装置及设备

Country Status (2)

Country Link
CN (1) CN108375390A (zh)
WO (1) WO2019205201A1 (zh)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111046982B (zh) * 2018-10-15 2021-05-18 珠海格力电器股份有限公司 设备数据监测方法、装置、计算机设备和存储介质
CN111181776B (zh) * 2019-12-17 2022-09-23 厦门计讯物联科技有限公司 一种基于modbus rtu的数据采集方法、设备及系统
CN112988221A (zh) * 2021-03-25 2021-06-18 自然资源部第一海洋研究所 一种浮标数据自动采集方法及系统
CN113162805B (zh) * 2021-04-23 2022-05-06 天地(常州)自动化股份有限公司 数据采集器与传感器的配置方法
CN113259888B (zh) 2021-04-25 2024-04-30 黑芝麻智能科技(上海)有限公司 传感器配置方法、装置、计算机设备和存储介质
CN113190291B (zh) * 2021-05-25 2023-06-02 电子科技大学 一种基于片上网络数据采集的可配置协议转换系统及方法

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2004031875A1 (en) * 2002-09-30 2004-04-15 Tokyo Electron Limited Method and apparatus for the monitoring and control of a semiconductor manufacturing process
CN104104674A (zh) * 2014-07-01 2014-10-15 广东艾科技术股份有限公司 设备传感器的多协议分布式数据采集控制系统及方法
CN104348921A (zh) * 2014-10-30 2015-02-11 江苏博大光通物联科技有限公司 多传感器统一接入方法及系统
CN105829984A (zh) * 2013-10-22 2016-08-03 尼得科电机有限公司 机器诊断编码器
CN107807891A (zh) * 2017-09-30 2018-03-16 河北卓智电子技术有限公司 信息采集方法及终端设备

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104410662A (zh) * 2014-10-23 2015-03-11 山东大学 物联网并行海量数据传输中间件及其工作方法

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2004031875A1 (en) * 2002-09-30 2004-04-15 Tokyo Electron Limited Method and apparatus for the monitoring and control of a semiconductor manufacturing process
CN105829984A (zh) * 2013-10-22 2016-08-03 尼得科电机有限公司 机器诊断编码器
CN104104674A (zh) * 2014-07-01 2014-10-15 广东艾科技术股份有限公司 设备传感器的多协议分布式数据采集控制系统及方法
CN104348921A (zh) * 2014-10-30 2015-02-11 江苏博大光通物联科技有限公司 多传感器统一接入方法及系统
CN107807891A (zh) * 2017-09-30 2018-03-16 河北卓智电子技术有限公司 信息采集方法及终端设备

Also Published As

Publication number Publication date
CN108375390A (zh) 2018-08-07

Similar Documents

Publication Publication Date Title
WO2019205201A1 (zh) 可配置数据集中采集方法、装置及设备
JP6567692B2 (ja) マルチノードセンサーネットワークのデータ伝送・制御装置
CN104345717B (zh) 一种基于物联网的智能远程数据采集系统
CN107341357A (zh) 一种用于医疗监测设备的数据采集系统
CN108809747B (zh) 一种系统平台的模拟数据测试系统及其测试方法
EP3462214A1 (en) Environmental radiation monitoring station system
CN107229838A (zh) 一种用于医疗监测设备的数据采集方法及数据采集器
WO2013063950A1 (zh) 多模通信设备的巡检方法和系统
EP3220301A1 (en) Method and system for collecting and analysing data from health monitoring devices
CN103453985A (zh) 分布式无线光强测量仪
CN105335316A (zh) 一种基于云计算的电机装配线串口服务器
WO2023147731A1 (zh) 异常数据的处理方法、装置及电子设备
CN109286527B (zh) 关联交换机逻辑和实物图端口的方法及网管系统
CN106899452B (zh) 一种基于xm2m协议的消息循环处理的物联网终端调试方法
CN208187439U (zh) 可配置数据集中采集系统
CN109029587A (zh) 密集烤房的温湿度监控装置及系统
CN104656604B (zh) 一种利用modbus通信协议实现人机交互的电网安全稳定控制装置及其方法
CN208780251U (zh) 密集烤房的温湿度监控装置及系统
CN107592286A (zh) 一种支持多协议的智能通信终端及其实现方法
CN115655304A (zh) 一种imu模块标定数据批量化自动采集方法及装置
CN114996195A (zh) 一种获取碳足迹数据的方法、系统、装置及介质
CN114327065A (zh) 一种用于人机交互感知的数据采集系统及方法
CN105717363A (zh) 智能电能表的电流回路阻抗测试装置和阻抗计算方法
CN112650133A (zh) 一种纺织检测设备控制系统
CN202472384U (zh) 一种基于small RTOS操作系统的环保数采仪

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18916544

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 12/03/2021)

122 Ep: pct application non-entry in european phase

Ref document number: 18916544

Country of ref document: EP

Kind code of ref document: A1