The Device for Houseplants Caring

Mykola Volodymyrovych Myroshnichenko
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Abstract

The article is devoted to the development of an automated device for plant care at home. The main factors influencing plant development are considered. A comparative analysis of existing devices was made. The growth of plants is influenced by many factors: the level of light, soil moisture, room temperature, carbon dioxide level. When plants are growing indoors, the most important thing is timely watering and access to light. The required amount of light for most plants is 12-18 hours per day. Our country is in the temperate climate zone, so we have 15 hours of light in summer, 13 hours in autumn and spring, and 9 hours in winter. The amount of light in summer is normal, in autumn and spring - within normal limits, but in winter there is a certain lack of light. The lack of natural insolation in winter leads to light starvation of houseplants and reduced intensity of photosynthesis. Therefore, the decrease of the amount of natural light is compensated by artificial light sources. Analysis of the devices on the market has shown that devices that can solve such problems exist, but there is no device with all functions simultaneously. Lighting devices illuminate on a timer, regardless of natural light. Irrigation devices are intended for industrial, not for domestic use. Existing technological solutions for home cultivation have only a warning function: sound or light, which can bring some inconvenience. Looking on these problems, a device is created to maintain the required soil moisture and the required amount of light. The control unit is based on a microcontroller that analyses the data obtained from the sensors and sends the appropriate signals to the climate control devices. The device is equipped with a soil moisture sensor, a light sensor, a real - time sensor, an LED lamp, a water pump, an LED lamp driver, and a control key of water pump. To control soil moisture, a capacitive humidity sensor is used, the advantages of it is the absence of corrosion of metal parts of the sensors that touch the ground. A light meter based on the BH1750 chip is used as a light sensor. This sensor has a wide measuring range, measuring accuracy - 1 lux, small dimensions and the ability to connect to a microcontroller via I2C interface. The DS3231 chip is used as a real-time clock that required to maintain a circadian rhythm close to the natural one for a given plant. An LED strip with red and blue LEDs is used for lighting. The ratio of blue / red LEDs depends on the stage of growth and the type of plant, but it is usually from 1/3 to 1/5. The key that controls the LED strip and the water pump are the MOS transistors. They are silent and allow you to adjust the brightness of the LED strip.
室内植物护理装置
本文致力于研制一种用于家庭植物养护的自动化装置。讨论了影响植物发育的主要因素。对现有装置进行了对比分析。植物的生长受到许多因素的影响:光照水平、土壤湿度、室温、二氧化碳水平。当植物在室内生长时,最重要的是及时浇水和采光。大多数植物每天需要12-18小时的光照。我国属于温带气候区,因此夏季日照时间为15小时,秋春两季为13小时,冬季为9小时。夏季的光照量是正常的,秋季和春季在正常范围内,但冬季有一定的光照不足。冬季缺乏自然日照导致室内植物光饥饿和光合作用强度降低。因此,自然光量的减少是由人造光源来补偿的。通过对市场上的设备进行分析,可以解决这些问题的设备是存在的,但是没有同时具备所有功能的设备。无论自然光如何,照明设备都会定时照明。灌溉装置是工业用的,不是家庭用的。现有的家庭养殖技术解决方案只有一个报警功能:声音或光,这可能会带来一些不便。针对这些问题,发明了一种装置来维持所需的土壤湿度和所需的光照量。控制单元基于一个微控制器,该微控制器分析从传感器获得的数据并向气候控制装置发送适当的信号。该装置设有土壤湿度传感器、光传感器、实时传感器、LED灯、水泵、LED灯驱动器、水泵控制键。为了控制土壤湿度,使用电容式湿度传感器,其优点是接触地面的金属部件没有腐蚀。光传感器采用基于BH1750芯片的测光表。该传感器测量范围宽,测量精度- 1勒克斯,尺寸小,能够通过I2C接口连接到微控制器。DS3231芯片被用作实时时钟,需要维持给定植物接近自然的昼夜节律。带有红色和蓝色LED的LED条用于照明。蓝/红led的比例取决于植物的生长阶段和类型,但通常在1/3到1/5之间。控制LED灯带和水泵的关键是MOS晶体管。他们是无声的,并允许您调整LED灯条的亮度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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