B系统中模拟温控监测案例分析.mp32:19来自LearningYard学苑
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涉及的模型:
环境区域、通用传感器、脉冲器、3D文字、逻辑运算器、数据发送器)
目标效果:模拟对浮动温度的实时显示。
操作方法:
在场景中搭建出大致的构想图,如图1。
Model involved:
Environmental area, universal sensor, pulser, 3D text, logical operator, data transmitter)
Target effect: to simulate the real-time display of the floating temperature.
method of operation:
Build a general idea in the scene, as shown in Figure
图 1涉及模型场景布局图
图中包含环境区域、通用传感器、脉冲器、3D文字、逻辑运算器、数据发送器。
1. 首先进行环境区域与通用传感器的设置。将环境区域的“环境变量名”更改为温度,并添加浮动上下线、单位“度”,并设置变化间隔时间为1秒,如图2.
The figure contains environmental areas, common sensors, pulsers, 3D text, logical operator, and data transmitter.
1. First set the environmental area and general sensors. Change the “environment variable name” of the environment area to the temperature, and add the floating up and down, the unit “degree”, and set the change interval to 1 second, as shown in Figure 2.
图 2
2. 将通用传感器的“检测变量名”设置为环境区域的“温度”,然后将脉冲器的“自动开始”属性进行勾选,间隔时间设置为1(s)接下来对温度实时显示装置进行设置。将数据发送器的“源对象ID”设置为通用传感器的ID,“源对象属性”设置为通用传感器的“检测值”。而“目标对象ID”设置为3D文字的ID,“目标属性”设置为3D文字属性中“文字描述”属性。如下图3。
2. Set the “detection variable name” of the general sensor to the “temperature” of the environmental area, then check the “automatic start” attribute of the pulser, set the interval to 1 (s), and then set the real-time temperature display device. Set the Source Object ID of the data transmitter to the ID of the common sensor, and the Source Object Properties to the detected value of the common sensor. The Target Object ID is set to the ID of the 3D text, and the Target Attribute is set to the Text Description attribute in the 3D text property. Figure 3 below.
图 3
3. 最后,进行逻辑运算器的设置,用以实现温度的实时显示。打开逻辑运算器,将脉冲器的“脉冲信号”添加至判断条件,当“脉冲信号 = 1”时,执行Job下方添加数据发送器的“发送数据”
3. Finally, the logic operator is set up to achieve the real-time display of the temperature. Open the logical operator, and add the pulse device “pulse signal” to the judgment condition. When the “pulse signal = 1”, execute the “Send data” of the added data transmitter below the Job
图 4
场景运行效果测试:
全部设置完成后进行调试,我们会发现,3D文字显示的数字会以1(s)的间隔进行变化。至此证明该场景温度实时显示的目标已经实现。如图5所示。
Scene operation effect test:
After all the settings are debugging, we find that the numbers displayed in 3D text change at 1 (s) intervals. This proves that the goal of real-time temperature display in the scene has been achieved. As shown in Figure 5.
图 5
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文案 | 邓粤慧
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