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Smart Control of Air Conditioning System Based on Number and Activity Level of Persons

机译:基于人数和活动水平的空调系统智能控制

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Air conditioner (AC) is a device that requires high power. To reduce the energy waste by AC, the temperature setting should be adjusted to the room condition. It can be affected by the number of persons and the level of activity in the room. To save electricity consumption, this research is conducted to design an intelligent and automatic AC system based on identification of number of persons and activity level to control working temperature of AC using fuzzy logic refers to thermal comfort standard in Indonesia issued by SNI council. The system used USB camera as an image capture device. In image processing, Histogram of Oriented Gradient (HOG) method is used to identify the number of people, while background subtraction method is used to identify the activity level. This system is implemented into Raspberry Pi 3 as a single board computing. Test results show that the system is capable to detect people from a distance of 3m to 9m and distinguish 2 people within a distance of 30 cm to 150 cm, The system can also differentiate small, medium and high of activity levels. The test results show that the working temperature controlled by the designed fuzzy logic has the lowest value of 21°C and the highest value of 27°C which is in accordance with the thermal comfort standard that has been defined by the SNI council. The differences between working temperature and measured room temperature are within only 0.2°C to 1.2°C.
机译:空调(AC)是需要高功率的设备。为减少交流电浪费的能源,应将温度设置调整到室温。它会受到人数和房间活动水平的影响。为了节省电力消耗,本研究基于人的身份和活动水平,设计了一种智能,自动化的交流系统,该系统采用模糊逻辑(参考SNI理事会在印度尼西亚制定的热舒适标准)来控制交流的工作温度。系统使用USB相机作为图像捕获设备。在图像处理中,使用定向梯度直方图(HOG)方法来识别人数,而使用背景减法来确定活动水平。该系统作为单板计算实现到Raspberry Pi 3中。测试结果表明,该系统能够检测3m至9m范围内的人员,并可以区分30 cm至150 cm范围内的2个人。该系统还可以区分活动程度的小,中和高。测试结果表明,所设计的模糊逻辑控制的工作温度的最低值为21°C,最高值为27°C,这符合SNI理事会制定的热舒适标准。工作温度与室温之间的差异仅在0.2°C至1.2°C之内。

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