WO2018049593A1 - 一种信息处理方法和装置 - Google Patents

一种信息处理方法和装置 Download PDF

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Publication number
WO2018049593A1
WO2018049593A1 PCT/CN2016/099014 CN2016099014W WO2018049593A1 WO 2018049593 A1 WO2018049593 A1 WO 2018049593A1 CN 2016099014 W CN2016099014 W CN 2016099014W WO 2018049593 A1 WO2018049593 A1 WO 2018049593A1
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WO
WIPO (PCT)
Prior art keywords
electronic map
measurement
information processing
preset
map
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PCT/CN2016/099014
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English (en)
French (fr)
Inventor
解危夷
何正兵
袁剑敏
Original Assignee
深圳华盛昌机械实业有限公司
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.)
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Publication date
Application filed by 深圳华盛昌机械实业有限公司 filed Critical 深圳华盛昌机械实业有限公司
Priority to PCT/CN2016/099014 priority Critical patent/WO2018049593A1/zh
Priority to CN201680000869.3A priority patent/CN107980226B/zh
Publication of WO2018049593A1 publication Critical patent/WO2018049593A1/zh

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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16ZINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS, NOT OTHERWISE PROVIDED FOR
    • G16Z99/00Subject matter not provided for in other main groups of this subclass
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/023Services making use of location information using mutual or relative location information between multiple location based services [LBS] targets or of distance thresholds
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/29Geographical information databases

Definitions

  • the present invention relates to the field of information processing technologies, and in particular, to an information processing method and apparatus.
  • the background server can collect the measurement results of each measurement terminal, and The measurement results are analyzed and processed.
  • the measurement results are analyzed and processed.
  • An embodiment of the present invention provides an information processing method and apparatus, which can map the positioning information of each target measurement terminal to the electronic map in a manner of measuring points, and update the measurement point so that the user can By visually viewing all the measurement points on the electronic map, it is possible to know the measurement positions of the respective target measurement terminals and which target measurement terminals have been measured in a certain area.
  • the information processing method further includes:
  • the information processing method further includes:
  • the measurement points on the electronic map are displayed in a preset corresponding color, and the preset corresponding color is determined by the characteristic parameter corresponding to the measurement point.
  • displaying the measurement points on the electronic map in a preset corresponding color specifically includes:
  • the information processing method further includes:
  • the information processing method further includes:
  • the preset condition when the preset condition is met, the measurement point drawn on the electronic map before the preset interval is deleted; [0024] the preset condition includes:
  • the average distribution density of the measurement points on the electronic map exceeds a preset density value
  • the total number of measurement points on the electronic map exceeds a preset number threshold.
  • An information processing apparatus provided by an embodiment of the present invention includes:
  • a real acquisition module configured to obtain positioning information of each target measurement terminal measurement unit
  • a coordinate conversion module configured to convert the positioning information into map coordinates on an electronic map
  • a measurement point drawing module configured to draw measurement points on the electronic map according to the map coordinates, where the historically drawn measurement points are retained on the electronic map;
  • a display module configured to display the electronic map.
  • the information processing apparatus further includes:
  • a new measurement point acquisition module configured to acquire a measurement point last drawn on the electronic map
  • a measuring point labeling module configured to mark the last drawn measuring point on the electronic map in a preset manner after displaying the electronic map.
  • the information processing apparatus further includes:
  • a characteristic parameter obtaining module configured to acquire, in a real state, positioning information of a measurement target of each target measurement terminal, and obtain a characteristic parameter measured by each target measurement terminal;
  • a measurement point color display module configured to display a measurement point on the electronic map in a preset corresponding color after displaying the electronic map, wherein the preset corresponding color is the characteristic corresponding to the measurement point The parameters are determined.
  • the measuring point color display module specifically includes:
  • a color interval determining unit configured to determine a preset area in which a value of a characteristic parameter corresponding to the measuring point falls
  • a color value obtaining unit configured to acquire a color value corresponding to the preset interval
  • a color display unit configured to display the measurement point according to the corresponding color value
  • the information processing apparatus further includes:
  • a characteristic parameter characterization conversion module configured to convert the characteristic parameter into a characterization value and/or a characterization graphic, the characteristic parameter having a mapping relationship with the characterization value and/or the characterization graphic;
  • a characterization display module configured to display the characterization value and/or the characterization graphic on the electronic map according to the map coordinates corresponding to the characteristic parameter.
  • the information processing apparatus further includes:
  • a measuring point deleting module configured to delete a measuring point on the electronic map before the preset interval when the preset condition is met
  • the preset conditions include:
  • the history of the measurement points on the electronic map is drawn across a preset threshold
  • the average distribution density of the measurement points on the electronic map exceeds a preset density value
  • the total number of measurement points on the electronic map exceeds a preset number threshold.
  • the positioning information of the measurement target of each target measurement terminal is obtained; then, the positioning information is converted into map coordinates on the electronic map; and then, according to the map coordinates A measurement point is drawn on the electronic map, and the historically drawn measurement points are retained on the electronic map; the electronic map is displayed throughout the process. Therefore, in the embodiment of the present invention, the positioning information of each target measurement terminal measurement target is drawn on the electronic map in the manner of measuring points, and the measurement point is updated, so that the user can visually view the electronic map. All measurement points can be used to know the measurement position of each target measurement terminal and which target measurement terminals have been measured in a certain area, which helps the user to perform big data analysis on the measurement terminal.
  • FIG. 1 is a flow chart of an embodiment of an information processing method according to an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of an electronic map in an application scenario of an information processing method according to an embodiment of the present invention
  • FIG. 3 is a structural diagram of an embodiment of an information processing apparatus according to an embodiment of the present invention.
  • An embodiment of the present invention provides an information processing method and apparatus, which are used to solve a problem that a measurement terminal that cannot be visually viewed to a specific measurement location of a measurement terminal or which measurement terminal has been or is being measured in a certain area.
  • an embodiment of an information processing method in an embodiment of the present invention includes: [0061] 101. Obtain the positioning information of the measurement target of each target measurement terminal;
  • each of the above measurement terminals can be a target measurement terminal by registering on the server.
  • the server can distribute a unique identifier to each target measurement terminal, and identify the identity of the measurement terminal by the unique identifier.
  • the positioning information of the target measurement terminal can be obtained, that is, the current measurement performed by the target measurement terminal at which position.
  • the measurement terminal is equipped with a positioning module, and the target measurement terminal is positioned by a global satellite navigation system or a GIS (Geographic Information System) system.
  • GIS Geographic Information System
  • the measurement terminal may also acquire characteristic parameters measured by the respective target measurement terminals, that is, measurement results, after measuring the measurement.
  • the characteristic parameters can be parameters such as voltage, current, resistance, distance, speed, volume, temperature, pressure, flow, and the like.
  • the characteristic parameter obtained is body temperature.
  • the above-mentioned actual acquisition refers to performing an acquisition operation every certain time interval.
  • the inter-time interval takes a small value, for example, the inter-turn interval is 500 milliseconds. Get it every 500 milliseconds.
  • the positioning information may be converted into a map coordinate on the electronic map.
  • the default electronic map may be directly obtained, or after the characteristic parameter is acquired, the corresponding electronic map may be acquired according to the characteristic parameter.
  • different characteristic parameters may have a corresponding relationship with different electronic maps, and may be that one plurality of characteristic parameters correspond to one electronic map, or one characteristic parameter corresponds to one electronic map. For example, if the measured body temperature data can be presented on an electronic map, the electronic map is a body temperature map; if an electronic map presents voltage, current, resistance, and the like on the same map, the electronic map is an electrical map, and the corresponding map Three different characteristic parameters.
  • An electronic map is a map that is stored and viewed digitally using computer technology.
  • Electronic map storage information method generally using vector image storage, map
  • the scale can be zoomed in, zoomed out, or rotated without affecting the display.
  • the electronic map can give the user an intuitive view, and the user can refer to or analyze the information of a specific area or a global area according to his own needs.
  • the electronic map may be displayed on a display interface or a display screen, and the display interface or the display screen may display information related to the measurement terminal in addition to displaying the electronic map. For example, measuring the number, model, and statistical data of the characteristic parameters of the terminal.
  • the positioning information is geographic location information or satellite positioning information of the measurement terminal, and the coordinate system of the measurement terminal is different from the coordinate system of the electronic map, so the positioning information needs to be converted into the coordinate system of the electronic map.
  • the map coordinates on the electronic map are mapped to the real position of the positioning information in a geographic orientation.
  • the measurement points may be drawn on the electronic map according to the map coordinates, wherein the electronic map has a historically drawn tester point, .
  • the measurement points may be drawn on the position of the map coordinates on the electronic map, and the measurement points may be dots, triangle points, square points, etc. , there is no specific limit here.
  • FIG. 2 is a schematic diagram of an electronic map in an application scenario of an information processing method according to an embodiment of the present invention. It can be seen that with the increase of the number of measurement times of each measurement terminal, the measurement points retained on the electronic map are more and more dense and dense, and the big data integration of the measurement results of each measurement terminal is realized, and the user can observe the electronic map.
  • the density of the points is measured for correlation analysis. For example, the density of measurement points in a certain area is particularly large, which indicates that the measurement terminal is used for measurement in the area.
  • the measurement terminal is popular or popular in the region and can focus on the sales market in the region.
  • the characteristic parameters measured by the respective target measurement terminals are also acquired; and the electronic map is displayed. And displaying a measurement point on the electronic map in a preset corresponding color, where the preset corresponding color is determined by the characteristic parameter corresponding to the measurement point.
  • the user can more intuitively know the change trend or state of the characteristic parameter corresponding to the measurement point. For example, if the measurement terminal is used to measure the body temperature, the characteristic parameter is body temperature.
  • the body temperature is less than 37 degrees Celsius, the body temperature is normal, and the color of the measurement point is green; if the body temperature is between 37 and 38 degrees Celsius, If the human body is in a low-burning state, the color of the measuring point may be yellow; if the body temperature is between 38 and 39 degrees Celsius, the human body is in a medium burning state, and the color of the measuring point may be orange; if the body temperature is 39 degrees Celsius
  • the above indicates that the human body is in a high-burning state, and the color of the measuring point may be red.
  • the user can quickly know from the electronic map which people at the measurement point are in a low-burning state, and which measurement points are in a high-burning state, thus having a more data on the electronic map. For an intuitive understanding.
  • displaying the measurement points on the electronic map in a preset corresponding color may specifically include:
  • the information processing method may further include:
  • the characteristic parameter in order for the user to read the value of the characteristic parameter corresponding to each measurement point more directly on the electronic map, the characteristic parameter can be converted into a characterization value and/or a characterization graphic.
  • the characterization value can be 36 degrees Celsius, or the characterization value can be 96.8 degrees Fahrenheit, and the characterization graph can be square, triangular, rectangular, and the like.
  • the electronic map may be refreshed and displayed so that the drawn measurement points can be updated and displayed on the electronic map.
  • the above-mentioned real-time refresh refers to refreshing every certain time interval.
  • the inter-turn interval generally takes a small value, for example, 500 milliseconds, that is, refreshes the electronic every 500 milliseconds. map.
  • the information processing method may further include:
  • the drawing of the measurement point is the positioning information of the measurement terminal acquired from the real device
  • the drawing of the measuring points is basically updated. Whenever the electronic map is refreshed once, in order to improve the display characteristics of the electronic map, the measurement point that was last drawn, that is, the latest measurement point, can be obtained, and then the electronic map is displayed, and the measurement point is highlighted in a preset manner. .
  • the preset mode may display the measurement point on the electronic map in a blinking manner, or may highlight the measurement point, or may draw the measurement point to be larger than other measurement points.
  • the information processing method may further include: deleting a measurement point on the electronic map before the preset interval when the preset condition is met.
  • the electronic map can accommodate a huge amount of information and measurement points, when the electronic map displays ⁇ on a commonly used display interface, its size has a certain limit. After the e-map has been used for a while, the number of measurement points on it is increasing, which will cause the points on the electronic map to be too dense for the user to see the geographical information on the electronic map. At this time, the operation of deleting the measurement points on the electronic map can be triggered according to the preset conditions.
  • the preset condition may be that the span between all measurement points on the electronic map exceeds a certain value, such as more than two years; or the average density of the measurement points on the electronic map exceeds a certain density value; or an electronic map The color value of an area above is close to black; or the number of measurement points on the entire electronic map exceeds a certain value, such as the number of measurement points exceeds 100,000, and so on.
  • the measurement point on the electronic map before the preset interval may be deleted, for example, the measurement point of the current system is counted from the beginning of the current system, thereby avoiding In the case where an electronic map is blocked by a huge number of measurement points, it is advantageous for the user to efficiently view the information of the electronic map.
  • the positioning information into map coordinates on the electronic map; then, drawing measurement points on the electronic map according to the map coordinates, and the historically drawn measurement points are retained on the electronic map;
  • the electronic map is displayed. Therefore, in the embodiment, the positioning information of each target measurement terminal measurement target is drawn on the electronic map in the manner of measuring points, and the measurement points are updated, so that the user can visually view all the information on the electronic map.
  • the measurement points can be used to know the measurement position of each target measurement terminal and which target measurement terminals have been measured in a certain area, which helps the user to perform big data analysis on the measurement terminal.
  • FIG. 3 is a structural diagram showing an embodiment of an information processing apparatus in an embodiment of the present invention.
  • an information processing apparatus includes:
  • the actual acquisition module 301 is configured to obtain the positioning information of the measurement target of each target measurement terminal;
  • the coordinate conversion module 302 is configured to convert the positioning information into a map coordinate on the electronic map;
  • a measurement point drawing module 303 configured to draw a measurement point on the electronic map according to the map coordinate, where the historically drawn measurement point is retained on the electronic map;
  • the display module 304 is configured to display the electronic map.
  • the information processing apparatus may further include:
  • the latest measurement point acquisition module 305 is configured to acquire a measurement point last drawn on the electronic map; [0111] a measurement point labeling module 306, configured to display the electronic map in a preset manner The last plotted measurement point is marked on the electronic map.
  • the information processing apparatus may further include:
  • the feature parameter obtaining module 307 is configured to obtain the positioning information of the measurement target of each target measurement terminal, and obtain the characteristic parameters measured by the target measurement terminals.
  • a measurement point color display module 308 configured to display a measurement point on the electronic map in a preset corresponding color after displaying the electronic map, the preset corresponding color being corresponding to the measurement point
  • the characteristic parameters are determined.
  • the measurement point color display module 308 may specifically include:
  • a color interval determining unit 3081 configured to determine a preset interval in which a value of a characteristic parameter corresponding to the measurement point falls;
  • a color value obtaining unit 3082 configured to acquire a color value corresponding to the preset interval
  • the color display unit 3083 is configured to display the measurement point according to the corresponding color value.
  • the information processing apparatus may further include:
  • a characteristic parameter characterization conversion module 309 configured to convert the characteristic parameter into a characterization value and/or a characterization shape, the characteristic parameter having a mapping relationship with the characterization value and/or the characterization graphic;
  • the characterization display module 310 is configured to display the characterization value and/or the characterization graphic on the electronic map according to the map coordinates corresponding to the characteristic parameter. [0122] Further, the information processing apparatus may further include:
  • the measurement point deletion module 311 is configured to delete the measurement point on the electronic map before the preset interval when the preset condition is met;
  • the preset condition includes:
  • the average distribution density of the measurement points on the electronic map exceeds a preset density value
  • the total number of measurement points on the electronic map exceeds a preset number threshold.
  • the above measuring terminal may be a multimeter, a thermometer, a laser distance measuring tool, an oscilloscope, an electromagnetic field meter, a digital pattern generator, a pressure transducer or the like.
  • the above information processing apparatus may include a display unit such as a light emitting diode (LED) display, an organic light emitting diode (OLED), an active matrix organic light emitting diode (AMOLED), a liquid crystal display (LCD), a plasma display, an electronic paper a display or the like for displaying the electronic map.
  • a display unit such as a light emitting diode (LED) display, an organic light emitting diode (OLED), an active matrix organic light emitting diode (AMOLED), a liquid crystal display (LCD), a plasma display, an electronic paper a display or the like for displaying the electronic map.
  • LED light emitting diode
  • OLED organic light emitting diode
  • AMOLED active matrix organic light emitting diode
  • LCD liquid crystal display
  • plasma display an electronic paper a display or the like for displaying the electronic map.
  • the disclosed system, apparatus, and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division, and the actual implementation may have another division manner, for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored, or not executed.
  • the coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be electrical, mechanical or otherwise.
  • the unit described as a separate component may or may not be physically distributed, and the component displayed as a unit may or may not be a physical unit, that is, may be located in one place, or may be distributed to multiple On the network unit. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
  • the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
  • the technical solution of the present invention may contribute to the prior art or all or part of the technical solution may be embodied in the form of a software product stored in a storage medium.
  • a number of instructions are included to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a removable hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and the like, which can store program codes. .

Abstract

一种信息处理方法,用于解决无法直观地查看到测量终端的具体测量位置或者某个区域都有哪些测量终端曾经或正在测量的问题。该信息处理方法包括:实时获取各个目标测量终端测量时所在的定位信息;将所述定位信息转换成电子地图上的地图坐标;根据所述地图坐标在所述电子地图上绘制测量点,所述电子地图上保留有历史绘制的测量点;显示所述电子地图。

Description

说明书 发明名称:一种信息处理方法和装置
技术领域
[0001] 本发明涉及信息处理技术领域, 尤其涉及一种信息处理方法和装置。
背景技术
[0002] 现有技术中, 在通过测量终端对电压、 电流、 电阻、 距离、 速度、 体积、 温度 、 压力、 流量等特性参数进行测量之后, 后台服务器可以采集各个测量终端的 测量结果, 并对测量结果进行分析和处理。 但目前尚未有一种技术可以直观地 査看到这些测量终端的具体测量位置或者某个区域都有哪些测量终端曾经或正 技术问题
[0003] 本发明实施例提供了一种信息处理方法和装置, 能够将各个目标测量终端测量 吋的定位信息以测量点的方式绘制在电子地图上并实吋更新所述测量点, 使得 用户可以在电子地图上直观地査看到所有的测量点, 可以得知各个目标测量终 端的测量位置以及某个区域曾经有哪些目标测量终端进行过测量。
问题的解决方案
技术解决方案
[0004] 本发明实施例提供的一种信息处理方法, 包括:
[0005] 实吋获取各个目标测量终端测量吋所在的定位信息;
[0006] 将所述定位信息转换成电子地图上的地图坐标;
[0007] 根据所述地图坐标在所述电子地图上绘制测量点, 所述电子地图上保留有历史 绘制的测量点;
[0008] 显示所述电子地图。
[0009] 可选地, 所述信息处理方法还包括:
[0010] 获取所述电子地图上最近一次绘制的测量点;
[0011] 在显示所述电子地图吋, 以预置方式在所述电子地图上标注所述最近一次绘制 的测量点。 [0012] 可选地, 所述信息处理方法还包括:
[0013] 在实吋获取各个目标测量终端测量吋所在的定位信息吋, 还获取所述各个目标 测量终端测量得到的特性参数;
[0014] 在显示所述电子地图吋, 以预置对应颜色显示所述电子地图上的测量点, 所述 预置对应颜色由所述测量点对应的所述特性参数决定。
[0015] 可选地, 以预置对应颜色显示所述电子地图上的测量点具体包括:
[0016] 确定所述测量点对应的特性参数的值所落入的预设区间;
[0017] 获取所述预设区间对应的颜色值;
[0018] 根据所述对应的颜色值显示所述测量点。
[0019] 可选地, 所述信息处理方法还包括:
[0020] 将所述特性参数转换为表征数值和 /或表征图形, 所述特性参数与所述表征数 值和 /或表征图形存在映射关系;
[0021] 根据所述特性参数对应的所述地图坐标在所述电子地图上显示所述表征数值和
/或表征图形。
[0022] 可选地, 所述信息处理方法还包括:
[0023] 当满足预设条件吋, 刪除所述电子地图上在预设吋间段以前绘制的测量点; [0024] 所述预设条件包括:
[0025] 所述电子地图上的测量点的历史绘制吋间跨度超过预设的阈值;
[0026] 或, 所述电子地图上的测量点的平均分布密度超过预设的密度值;
[0027] 或, 所述电子地图上的测量点的总个数超过预设的个数阈值。
[0028] 本发明实施例提供的一种信息处理装置, 包括:
[0029] 实吋获取模块, 用于实吋获取各个目标测量终端测量吋所在的定位信息;
[0030] 坐标转换模块, 用于将所述定位信息转换成电子地图上的地图坐标;
[0031] 测量点绘制模块, 用于根据所述地图坐标在所述电子地图上绘制测量点, 所述 电子地图上保留有历史绘制的测量点;
[0032] 显示模块, 用于显示所述电子地图。
[0033] 可选地, 所述信息处理装置还包括:
[0034] 最新测量点获取模块, 用于获取所述电子地图上最近一次绘制的测量点; [0035] 测量点标注模块, 用于在显示所述电子地图吋, 以预置方式在所述电子地图上 标注所述最近一次绘制的测量点。
[0036] 可选地, 所述信息处理装置还包括:
[0037] 特性参数获取模块, 用于在实吋获取各个目标测量终端测量吋所在的定位信息 吋, 还获取所述各个目标测量终端测量得到的特性参数;
[0038] 测量点颜色显示模块, 用于在显示所述电子地图吋, 以预置对应颜色显示所述 电子地图上的测量点, 所述预置对应颜色由所述测量点对应的所述特性参数决 定。
[0039] 可选地, 所述测量点颜色显示模块具体包括:
[0040] 颜色区间确定单元, 用于确定所述测量点对应的特性参数的值所落入的预设区 间;
[0041] 颜色值获取单元, 用于获取所述预设区间对应的颜色值;
[0042] 颜色显示单元, 用于根据所述对应的颜色值显示所述测量点;
[0043] 所述信息处理装置还包括:
[0044] 特性参数表征转换模块, 用于将所述特性参数转换为表征数值和 /或表征图形 , 所述特性参数与所述表征数值和 /或表征图形存在映射关系;
[0045] 表征显示模块, 用于根据所述特性参数对应的所述地图坐标在所述电子地图上 显示所述表征数值和 /或表征图形。
[0046] 可选地, 所述信息处理装置还包括:
[0047] 测量点刪除模块, 用于当满足预设条件吋, 刪除所述电子地图上在预设吋间段 以前的测量点;
[0048] 所述预设条件包括:
[0049] 所述电子地图上的测量点的历史绘制吋间跨度超过预设的阈值;
[0050] 或, 所述电子地图上的测量点的平均分布密度超过预设的密度值;
[0051] 或, 所述电子地图上的测量点的总个数超过预设的个数阈值。
[0052] 从以上技术方案可以看出, 本发明实施例具有以下优点:
发明的有益效果
有益效果 [0053] 本发明实施例中, 首先, 实吋获取各个目标测量终端测量吋所在的定位信息; 然后, 将所述定位信息转换成电子地图上的地图坐标; 接着, 根据所述地图坐 标在所述电子地图上绘制测量点, 所述电子地图上保留有历史绘制的测量点; 在整个过程中, 显示所述电子地图。 从而, 在本发明实施例中, 将各个目标测 量终端测量吋的定位信息以测量点的方式绘制在电子地图上并实吋更新所述测 量点, 使得用户可以在电子地图上直观地査看到所有的测量点, 可以得知各个 目标测量终端的测量位置以及某个区域曾经有哪些目标测量终端进行过测量, 为用户对测量终端进行大数据分析提供了帮助。
对附图的简要说明
附图说明
[0054] 为了更清楚地说明本发明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 本发明的一些实施例, 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。
[0055] 图 1为本发明实施例中一种信息处理方法一个实施例流程图;
[0056] 图 2为本发明实施例中一种信息处理方法一个应用场景下的电子地图示意图; [0057] 图 3为本发明实施例中一种信息处理装置一个实施例结构图。
本发明的实施方式
[0058] 本发明实施例提供了一种信息处理方法和装置, 用于解决无法直观地査看到测 量终端的具体测量位置或者某个区域都有哪些测量终端曾经或正在测量的问题
[0059] 为使得本发明的发明目的、 特征、 优点能够更加的明显和易懂, 下面将结合本 发明实施例中的附图, 对本发明实施例中的技术方案进行清楚、 完整地描述, 显然, 下面所描述的实施例仅仅是本发明一部分实施例, 而非全部的实施例。 基于本发明中的实施例, 本领域普通技术人员在没有做出创造性劳动前提下所 获得的所有其它实施例, 都属于本发明保护的范围。
[0060] 请参阅图 1, 本发明实施例中一种信息处理方法一个实施例包括: [0061] 101、 实吋获取各个目标测量终端测量吋所在的定位信息;
[0062] 本实施例中, 上述各个测量终端均可以通过在服务器上进行注册来成为目标测 量终端。 , 服务器可以给每个目标测量终端分发一个唯一标识, 通过该唯一标 识识别测量终端的身份。
[0063] 在目标测量终端测量吋, 可以获取到该目标测量终端的定位信息, 也即得知该 目标测量终端在哪个位置上进行的本次测量。 具体可以是, 测量终端上装配有 定位模块, 通过全球卫星导航系统或者 GIS (Geographic Information System, 地 理信息系统) 系统对目标测量终端进行定位, 当测量终端进行测量吋, 自动将 当前的定位信息上传。
[0064] 另外, 测量终端在测量吋, 还可以获取所述各个目标测量终端测量得到的特性 参数, 也即测量结果。 该特征参数可以是电压、 电流、 电阻、 距离、 速度、 体 积、 温度、 压力、 流量等参数。 例如, 若该测量终端为人体温度计, 则其得到 的特征参数为体温。
[0065] 上述的实吋获取是指每一定吋间间隔进行一次获取操作, 一般来说, 为了保证 获取的实吋性, 该吋间间隔取小值, 例如该吋间间隔为 500毫秒, 则每 500毫秒 获取一次。
[0066] 102、 将所述定位信息转换成电子地图上的地图坐标;
[0067] 在获取到所述定位信息之后, 可以将所述定位信息转换成电子地图上的地图坐 标。
[0068] 本实施例中, 可以直接获取到默认的电子地图, 也可以在获取到所述特性参数 之后, 根据所述特性参数获取对应的电子地图。 可以理解的是, 不同的特性参 数可以与不同的电子地图之间存在对应关系, 可以是多个特性参数对应一个电 子地图, 也可以是一个特性参数对应一个电子地图。 例如, 某个电子地图上可 以呈现测量得到的体温数据, 则这个电子地图为体温地图; 某个电子地图上同 吋呈现有电压、 电流、 电阻等参数, 则这个电子地图为电学地图, 其对应三种 不同的特性参数。
[0069] 电子地图 (Electronic map) , 即数字地图, 是利用计算机技术, 以数字方式存 储和査阅的地图。 电子地图储存资讯的方法, 一般使用向量式图像储存, 地图 比例可放大、 缩小或旋转而不影响显示效果。 电子地图可以带给用户直观的査 阅效果, 并且用户可以根据自身的需求对特定区域或者全局区域的信息进行相 关査阅或分析。
[0070] 另外, 本实施例中, 该电子地图可以在某个显示界面或者显示屏幕上显示出来 , 该显示界面或显示屏幕上除了显示该电子地图以外, 还可以显示有与测量终 端相关的信息, 比如测量终端的数量、 型号、 特性参数的统计数据等信息。
[0071] 可以理解的是, 该定位信息是测量终端的地理位置信息或者卫星定位信息, 其 所在坐标系与电子地图的坐标系不相同, 因此需要将定位信息转换到电子地图 的坐标系上, 使得电子地图上的地图坐标与该定位信息的现实位置在地理方位 上对应起来。
[0072] 103、 根据所述地图坐标在所述电子地图上绘制测量点;
[0073] 在获取到电子地图以及该定位信息对应的地图坐标之后, 可以根据所述地图坐 标在所述电子地图上绘制测量点, 其中, 所述电子地图上保留有历史绘制的测 員点、。
[0074] 可以理解的是, 在获取到该地图坐标之后, 可以在该电子地图上所述地图坐标 的位置上绘制测量点, 该测量点可以为圆点, 也可以为三角形点、 方形点等, 此处不作具体限定。
[0075] 本实施例中, 该电子地图上保留有与所述各个测量终端在历史测量吋的定位信 息对应的测量点, 也即每个测量终端每测量一次吋, 即在该电子地图上的对应 坐标上绘制一个测量点, 这个测量点一直保留在电子地图上。 图 2示出了本发明 实施例中一种信息处理方法一个应用场景下的电子地图示意图。 可见, 随着各 个测量终端测量次数的增多, 电子地图上保留的测量点也越来越多、 越来越密 集, 实现了各个测量终端的测量结果的大数据整合, 用户可以通过观察电子地 图上测量点的密度来进行相关的分析。 比如某个地区测量点的密度特别大, 则 说明该地区使用测量终端进行测量的次数多, 该测量终端在该地区受到欢迎或 热捧, 可以重点幵发该地区的销售市场。
[0076] 进一步地, 如上所述, 在实吋获取各个目标测量终端测量吋所在的定位信息吋 , 还获取所述各个目标测量终端测量得到的特性参数; 在显示所述电子地图吋 , 以预置对应颜色显示所述电子地图上的测量点, 所述预置对应颜色由所述测 量点对应的所述特性参数决定。
[0077] 对于电子地图来说, 通过对测量点进行"染色", 可以让用户更为直观地得知该 测量点对应的特性参数的变化趋势或状态。 比如假设测量终端用于测量人体体 温, 则特性参数为体温, 若该体温小于 37摄氏度, 则说明该人体体温正常, 测 量点的颜色为绿色; 若该体温在 37~38摄氏度之间, 则说明该人体处于低烧状态 , 则测量点的颜色可以为黄色; 若该体温在 38~39摄氏度之间, 则说明该人体处 于中烧状态, 则测量点的颜色可以为橙色; 若该体温在 39摄氏度以上, 则说明 该人体处于高烧状态, 则测量点的颜色可以为红色。 通过将不同的测量点进行" 染色"后, 用户可以从该电子地图上迅速地知道哪些测量点的人处于低烧状态, 哪些测量点的人处于高烧状态, 从而对电子地图上的数据有一个更为直观的理 解。
[0078] 另外, 在电子地图上绘制测量点后, 随着测量点的数量逐渐增大, 并且不同测 量点之间的颜色也可能不同, 这吋, 当在电子地图的同一个坐标区域或者靠近 的坐标位置上绘制有大量的测量点吋, 这块区域的颜色将会随着测量点的颜色 而变化。 比如假设在电子地图上某块区域内原本绘制有大量的绿色测量点, 贝 1J 这个区域当前的颜色为绿色; 但某个吋间流感爆发吋, 该区域的高烧人群大量 出现, 此吋该区域会出现大量的红色测量点, 这种情况下, 该区域会由于出现 的大量红色测量点而从原本的绿色向红色渐变, 从而实现了从电子地图上的区 域颜色变化反映出特性参数的变化情况, 并为社会群体疾病防控提供及吋信息
[0079] 进一步地,
[0080] 以预置对应颜色显示所述电子地图上的测量点具体可以包括:
[0081] 1) 确定所述测量点对应的特性参数的值所落入的预设区间;
[0082] 2) 获取所述预设区间对应的颜色值;
[0083] 3) 根据所述对应的颜色值显示所述测量点。
[0084] 本实施例中, 预设的区间可以有多个, 例如上述体温测量吋, 可以将 0~37摄氏 度作为第一个区间, 37~38摄氏度作为第二个区间, 38~39摄氏度作为第三个区 间, 39以上作为第四个区间。
[0085] 另外, 当特性参数的值落入某个区间吋, 其对应获取到的颜色值可以为预设的 某个颜色值, 也可以根据该特性参数的值计算得到。 比如, 若体温 (特性参数 ) 的值为 36, 则其落入第一区间, 此吋可以取其对应的颜色值为绿色, 其 RGB 值为 (0,255,0) ; 也可以根据体温值 39计算得到: 其 RGB值中的 G值 =255*36/37 «248, 则取其对应的 RGB值为 (0,248,0) , 从而以渐变颜色的方式反应具体的 特性参数的值。
[0086] 进一步地, 所述信息处理方法还可以包括:
[0087] 将所述特性参数转换为表征数值和 /或表征图形, 所述特性参数与所述表征数 值和 /或表征图形存在映射关系;
[0088] 根据所述特性参数对应的所述地图坐标在所述电子地图上显示所述表征数值和
/或表征图形。
[0089] 可以理解的是, 为了让用户在电子地图上可以更直接地读取每个测量点对应的 特性参数的值, 可以将所述特性参数转换为表征数值和 /或表征图形。 例如, 若 体温的值为 36, 则其表征数值可以为 36摄氏度, 或者表征数值可以为 96.8华氏度 , 其表征图形可以为方形、 三角形、 长方形等等。 用户可以通过査看这些表征 数值和 /或表征图形, 可以直接或大致得知该测量点对应的特性参数的值。
[0090] 104、 显示所述电子地图。
[0091] 在本实施例中, 可以实吋刷新并显示所述电子地图, 使得绘制的测量点可以及 吋更新到电子地图上并显示。
[0092] 可以理解的是, 上述的实吋刷新是指每一定吋间间隔刷新一次, 为了保证刷新 的效率, 该吋间间隔一般取小值, 例如 500毫秒, 也即每 500毫秒刷新一次电子 地图。
[0093] 进一步地, 所述信息处理方法还可以包括:
[0094] ( 1) 获取所述电子地图上最近一次绘制的测量点;
[0095] (2) 在显示所述电子地图吋, 以预置方式在所述电子地图上标注所述最近一 次绘制的测量点。
[0096] 本实施例中, 由于测量点的绘制是来自实吋获取的测量终端的定位信息, 因此 , 测量点的绘制基本也是实吋更新的。 每当电子地图进行一次刷新吋, 为了提 高电子地图的展示特性, 可以获取其最近一次绘制的测量点, 也即最新的测量 点, 然后在显示电子地图吋, 以预置方式重点突出该测量点。 该预置方式可以 是以闪烁的方式在电子地图上显示该测量点, 也可以是将该测量点高亮, 还可 以是将该测量点的尺寸绘制得比其他测量点更大。
[0097] 进一步地, 所述信息处理方法还可以包括: 当满足预设条件吋, 刪除所述电子 地图上在预设吋间段以前的测量点。
[0098] 可以理解的是, 虽然电子地图可以容纳巨量的信息和测量点, 但当电子地图在 常用的显示界面上显示吋, 其尺寸具有一定限制。 在电子地图使用一段吋间之 后, 其上的测量点数量越来越多, 会造成电子地图上的点过于密集以至于用户 无法看清电子地图上的地理信息的情况。 这吋候, 可以根据预设条件来触发刪 除电子地图上测量点的操作。
[0099] 上述预设条件可以是电子地图上的所有测量点的吋间跨度超过某个值, 比如超 过两年; 或者电子地图上的测量点的平均密度超过某个密度值; 又或者电子地 图上的某个区域的颜色值已接近黑色; 又或者是整个电子地图上的测量点个数 超过某个值, 比如测量点的个数超过 10万, 等等。
[0100] 在满足预设条件的情况下, 可以刪除所述电子地图上在预设吋间段以前的测量 点, 例如刪除当前系统吋间幵始算起一年以前的测量点, 从而可以避免出现电 子地图被巨量的测量点遮挡的情况, 有利于用户高效地査阅电子地图的信息。
[0101] 本实施例中, 首先, 实吋获取各个目标测量终端测量吋所在的定位信息; 然后
, 将所述定位信息转换成电子地图上的地图坐标; 接着, 根据所述地图坐标在 所述电子地图上绘制测量点, 所述电子地图上保留有历史绘制的测量点; 在整 个过程中, 显示所述电子地图。 从而, 在本实施例中, 将各个目标测量终端测 量吋的定位信息以测量点的方式绘制在电子地图上并实吋更新所述测量点, 使 得用户可以在电子地图上直观地査看到所有的测量点, 可以得知各个目标测量 终端的测量位置以及某个区域曾经有哪些目标测量终端进行过测量, 为用户对 测量终端进行大数据分析提供了帮助。
[0102] 上面主要描述了一种信息处理方法, 下面将对一种信息处理装置进行详细描述 [0103] 图 3示出了本发明实施例中一种信息处理装置一个实施例结构图。
[0104] 本实施例中, 一种信息处理装置包括:
[0105] 实吋获取模块 301, 用于实吋获取各个目标测量终端测量吋所在的定位信息; [0106] 坐标转换模块 302, 用于将所述定位信息转换成电子地图上的地图坐标; [0107] 测量点绘制模块 303, 用于根据所述地图坐标在所述电子地图上绘制测量点, 所述电子地图上保留有历史绘制的测量点;
[0108] 显示模块 304, 用于显示所述电子地图。
[0109] 进一步地, 所述信息处理装置还可以包括:
[0110] 最新测量点获取模块 305, 用于获取所述电子地图上最近一次绘制的测量点; [0111] 测量点标注模块 306, 用于在显示所述电子地图吋, 以预置方式在所述电子地 图上标注所述最近一次绘制的测量点。
[0112] 进一步地, 所述信息处理装置还可以包括:
[0113] 特性参数获取模块 307, 用于在实吋获取各个目标测量终端测量吋所在的定位 信息吋, 还获取所述各个目标测量终端测量得到的特性参数;
[0114] 测量点颜色显示模块 308, 用于在显示所述电子地图吋, 以预置对应颜色显示 所述电子地图上的测量点, 所述预置对应颜色由所述测量点对应的所述特性参 数决定。
[0115] 进一步地, 所述测量点颜色显示模块 308具体可以包括:
[0116] 颜色区间确定单元 3081, 用于确定所述测量点对应的特性参数的值所落入的预 设区间;
[0117] 颜色值获取单元 3082, 用于获取所述预设区间对应的颜色值;
[0118] 颜色显示单元 3083, 用于根据所述对应的颜色值显示所述测量点。
[0119] 所述信息处理装置还可以包括:
[0120] 特性参数表征转换模块 309, 用于将所述特性参数转换为表征数值和 /或表征图 形, 所述特性参数与所述表征数值和 /或表征图形存在映射关系;
[0121] 表征显示模块 310, 用于根据所述特性参数对应的所述地图坐标在所述电子地 图上显示所述表征数值和 /或表征图形。 [0122] 进一步地, 所述信息处理装置还可以包括:
[0123] 测量点刪除模块 311, 用于当满足预设条件吋, 刪除所述电子地图上在预设吋 间段以前的测量点;
[0124] 所述预设条件包括:
[0125] 所述电子地图上的测量点的历史绘制吋间跨度超过预设的阈值;
[0126] 或, 所述电子地图上的测量点的平均分布密度超过预设的密度值;
[0127] 或, 所述电子地图上的测量点的总个数超过预设的个数阈值。
[0128] 其中, 上述的测量终端可以是万用表、 温度计、 激光距离测量工具、 示波器、 电磁场仪、 数字图案发生器、 压力换能器或类似的测量设备。
[0129] 上述的信息处理装置可以包括显示单元, 诸如发光二极管 (LED) 显示器、 有 机发光二极管 (OLED) 、 有源矩阵有机发光二极管 (AMOLED) 、 液晶显示器 (LCD) 、 等离子体显示器、 电子纸显示器等, 用于显示所述电子地图。
[0130] 所属领域的技术人员可以清楚地了解到, 为描述的方便和简洁, 上述描述的系 统, 装置和单元的具体工作过程, 可以参考前述方法实施例中的对应过程, 在 此不再赘述。
[0131] 在本申请所提供的几个实施例中, 应该理解到, 所揭露的系统, 装置和方法, 可以通过其它的方式实现。 例如, 以上所描述的装置实施例仅仅是示意性的, 例如, 所述单元的划分, 仅仅为一种逻辑功能划分, 实际实现吋可以有另外的 划分方式, 例如多个单元或组件可以结合或者可以集成到另一个系统, 或一些 特征可以忽略, 或不执行。 另一点, 所显示或讨论的相互之间的耦合或直接耦 合或通信连接可以是通过一些接口, 装置或单元的间接耦合或通信连接, 可以 是电性, 机械或其它的形式。
[0132] 所述作为分离部件说明的单元可以是或者也可以不是物理上分幵的, 作为单元 显示的部件可以是或者也可以不是物理单元, 即可以位于一个地方, 或者也可 以分布到多个网络单元上。 可以根据实际的需要选择其中的部分或者全部单元 来实现本实施例方案的目的。
[0133] 另外, 在本发明各个实施例中的各功能单元可以集成在一个处理单元中, 也可 以是各个单元单独物理存在, 也可以两个或两个以上单元集成在一个单元中。 上述集成的单元既可以采用硬件的形式实现, 也可以采用软件功能单元的形式 实现。
[0134] 所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用 吋, 可以存储在一个计算机可读取存储介质中。 基于这样的理解, 本发明的技 术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分 可以以软件产品的形式体现出来, 该计算机软件产品存储在一个存储介质中, 包括若干指令用以使得一台计算机设备 (可以是个人计算机, 服务器, 或者网 络设备等) 执行本发明各个实施例所述方法的全部或部分步骤。 而前述的存储 介质包括: U盘、 移动硬盘、 只读存储器 (ROM, Read-Only Memory) 、 随机 存取存储器 (RAM, Random Access Memory) 、 磁碟或者光盘等各种可以存储 程序代码的介质。
[0135] 以上所述, 以上实施例仅用以说明本发明的技术方案, 而非对其限制; 尽管参 照前述实施例对本发明进行了详细的说明, 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 发明各实施例技术方案的精神和范围。

Claims

权利要求书
一种信息处理方法, 其特征在于, 包括:
实吋获取各个目标测量终端测量吋所在的定位信息;
将所述定位信息转换成电子地图上的地图坐标;
根据所述地图坐标在所述电子地图上绘制测量点, 所述电子地图上保 留有历史绘制的测量点;
显示所述电子地图。
根据权利要求 1所述的信息处理方法, 其特征在于, 所述信息处理方 法还包括:
获取所述电子地图上最近一次绘制的测量点;
在显示所述电子地图吋, 以预置方式在所述电子地图上标注所述最近 一次绘制的测量点。
根据权利要求 1所述的信息处理方法, 其特征在于, 所述信息处理方 法还包括:
在实吋获取各个目标测量终端测量吋所在的定位信息吋, 还获取所述 各个目标测量终端测量得到的特性参数;
在显示所述电子地图吋, 以预置对应颜色显示所述电子地图上的测量 点, 所述预置对应颜色由所述测量点对应的所述特性参数决定。 根据权利要求 3所述的信息处理方法, 其特征在于, 以预置对应颜色 显示所述电子地图上的测量点具体包括: 确定所述测量点对应的特性参数的值所落入的预设区间;
获取所述预设区间对应的颜色值;
根据所述对应的颜色值显示所述测量点。
根据权利要求 3所述的信息处理方法, 其特征在于, 所述信息处理方 法还包括:
将所述特性参数转换为表征数值和 /或表征图形, 所述特性参数与所 述表征数值和 /或表征图形存在映射关系;
根据所述特性参数对应的所述地图坐标在所述电子地图上显示所述表 征数值和 /或表征图形。
[权利要求 6] 根据权利要求 1至 5中任一项所述的信息处理方法, 其特征在于, 所述 信息处理方法还包括:
当满足预设条件吋, 刪除所述电子地图上在预设吋间段以前绘制的测 量点; 所述预设条件包括:
所述电子地图上的测量点的历史绘制吋间跨度超过预设的阈值; 或, 所述电子地图上的测量点的平均分布密度超过预设的密度值; 或, 所述电子地图上的测量点的总个数超过预设的个数阈值。
[权利要求 7] —种信息处理装置, 其特征在于, 包括:
实吋获取模块, 用于实吋获取各个目标测量终端测量吋所在的定位信 息;
坐标转换模块, 用于将所述定位信息转换成电子地图上的地图坐标; 测量点绘制模块, 用于根据所述地图坐标在所述电子地图上绘制测量 点, 所述电子地图上保留有历史绘制的测量点; 显示模块, 用于显示所述电子地图。
[权利要求 8] 根据权利要求 7所述的信息处理装置, 其特征在于, 所述信息处理装 置还包括:
最新测量点获取模块, 用于获取所述电子地图上最近一次绘制的测量 点; 测量点标注模块, 用于在显示所述电子地图吋, 以预置方式在所述电 子地图上标注所述最近一次绘制的测量点。
[权利要求 9] 根据权利要求 7所述的信息处理装置, 其特征在于, 所述信息处理装 置还包括:
特性参数获取模块, 用于在实吋获取各个目标测量终端测量吋所在的 定位信息吋, 还获取所述各个目标测量终端测量得到的特性参数; 测量点颜色显示模块, 用于在显示所述电子地图吋, 以预置对应颜色 显示所述电子地图上的测量点, 所述预置对应颜色由所述测量点对应 的所述特性参数决定。
[权利要求 10] 根据权利要求 9所述的信息处理装置, 其特征在于, 所述测量点颜色 显示模块具体包括:
颜色区间确定单元, 用于确定所述测量点对应的特性参数的值所落入 的预设区间;
颜色值获取单元, 用于获取所述预设区间对应的颜色值;
颜色显示单元, 用于根据所述对应的颜色值显示所述测量点; 所述信息处理装置还包括:
特性参数表征转换模块, 用于将所述特性参数转换为表征数值和 /或 表征图形, 所述特性参数与所述表征数值和 /或表征图形存在映射关 系;
表征显示模块, 用于根据所述特性参数对应的所述地图坐标在所述电 子地图上显示所述表征数值和 /或表征图形。
[权利要求 11] 根据权利要求 7至 10中任一项所述的信息处理装置, 其特征在于, 所 述信息处理装置还包括:
测量点刪除模块, 用于当满足预设条件吋, 刪除所述电子地图上在预 设吋间段以前的测量点;
所述预设条件包括:
所述电子地图上的测量点的历史绘制吋间跨度超过预设的阈值; 或, 所述电子地图上的测量点的平均分布密度超过预设的密度值; 或, 所述电子地图上的测量点的总个数超过预设的个数阈值。
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