楼宇自动化系统室内环境参数监测

I. Lita, D. Visan, I. B. Cioc, A. Mazare, R. Teodorescu
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引用次数: 5

摘要

本文介绍了一种专门测量和控制系统的新架构的实现,该系统旨在集成在复杂的楼宇自动化系统中。本设计是围绕Arduino Uno开发板上的atmega328单片机实现的。对于室内环境监测,使用不同的传感器与不同的物理量相关联。在我们的方法中使用了三种类型的传感器:具有高精度和数字输出的组合温湿度传感器(AM2302/DHT 22)和数字压力传感器(BMP 180)以及用于光强度测量的光依赖电阻(LDR)。该系统具有可扩展性,并且在提出的配置中能够控制多个负载,包括基于脉宽调制(PWM)的比例控制。通过所实现模块的仿真和实际测试,对监控系统的正确性和可靠性进行了评价。与其他实现相比,所提出的设计具有灵活和通用的实现优势,基于特定于高性能可编程微控制器的可重构概念,结合简单的设备控制用户界面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indoor environmental parameters monitoring for building automation systems
This article presents the implementation of a novel architecture of a specialized measurement and control system that is intended to be integrated in a complex automation system for buildings. The proposed design is realized around Atmega 328 microcontroller embedded on Arduino Uno development board. For indoor environmental monitoring are used different sensors associated with various physical quantities. In our approach were used three types of sensors: a combined temperature-humidity sensor (AM2302/DHT 22) characterized by a high precision and having digital output and digital pressure sensor (BMP 180) together with a light depended resistor (LDR) for light intensity measurements. The system is extendable and in the proposed configuration is capable to control multiple loads, including pulse width modulation (PWM) based proportional control. The correct operation and the reliability of the monitoring and control system were evaluated through simulations and practical test with implemented module. Compared with other implementations, the proposed design has the advantage of a flexible and versatile implementation, based on reconfigurable concepts specific to the high performance programmable microcontrollers, combined with a simple user interface for equipment control.
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