scholarly journals Arduino Based Home Automation using TV Remote

Author(s):  
K Mounika

House control and monitoring system using Bluetooth and infrared. In Bluetooth with android smart phone connectivity and for accessing and controlling devices and appliances remotely using Android based Smart phone applications. In IR-based house Appliances Control System is a control system using which the user can control different home appliances with a remote controller. The future system does not require a dedicated server PC with respect to similar systems and offers a novel communication protocol to monitor and control the house environment with more than just the switching functionality. House automation using Bluetooth is a residence incorporating a communications network that connects the electric home equipment and offerings letting them be remotely controlled, monitored or accessed. house automation System includes different approaches to achieve multiple objectives range from enhancing consolation in day by day existence to permitting a greater unbiased existence for aged and handicapped people. The system design is based on Arduino Microcontroller using C/C++, language software, Bluetooth and infrared (IR) which is used in different monitoring and control processes. This project the combination hardware and software implementation of a multiple form control system for house automation, combines both hardware and software technologies. The system results show that it can be classified as comfortable, secure, private, economic and safe house automation in addition to its great flexibility and Reliability.

2019 ◽  
pp. 41-48
Author(s):  
Yan Guojun ◽  
Oleksiy Kozlov ◽  
Oleksandr Gerasin ◽  
Galyna Kondratenko

The article renders the special features of the design of a tracked mobile robot (MR) for moving over inclined ferromagnetic surfaces while performing specified technological operations. There is conducted a synthesis of the functional structure and selective technological parameters (such as control coordinates) of the computerized monitoring and control system (CMCS) intended for use with this MR. Application of the CMCS with the proposed functional structure allows substantially increasing the accuracy of the MR monitoring and control, which in turn provides for a considerable enhancement in the quality and economic efficiency of the operations on processing of large ferromagnetic surfaces.


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