System Electrical Power Monitoring Manifold Based on Software Development and an Embedded System for Intelligent Buildings

2011 ◽  
Vol 137 (1) ◽  
pp. 1-10 ◽  
Author(s):  
M. Trejo-Perea ◽  
G. Herrera-Ruiz ◽  
D. Vargas-Vázquez ◽  
R. Luna-Rubio ◽  
G. J. Ríos-Moreno
Author(s):  
Fransiscus Yudi Limpraptono ◽  
Eko Nurcahyo ◽  
Mochammad Ibrahim Ashari ◽  
Erkata Yandri ◽  
Yahya Jani

The increasing demand for electrical energy and the decreasing supply of fossil fuels in recent years have increased the cost of electrical energy. So that the culture of saving electrical energy is a habit that must be cultivated in the community. On the other hand, energy-saving behavior cannot be realized massively without a support system that can control energy use. With these concerns, it is necessary to develop a method that encourages a culture of saving electrical energy. This paper proposes a system that supports active energy efficiency methods that can support an energy-efficient culture. This system is an electric power monitoring system that is integrated with a smart electrical panel that continuously monitors the use of electrical energy and can control electrical loads automatically, record electricity usage, provide comprehensive reports and analyze energy usage. The method used to carry out this research is research and development. This research has produced a prototype of electrical power control and monitoring system that has a smart panel based on a raspberry PI 3 and PZEM-004t power energy meter. The monitoring system performs and executes automatic control of electrical loads. The system can also provide reports in the form of data monitoring in daily, weekly, monthly or annual period. From the test results, it can be concluded that the system can work well. This research is expected to contribute to providing a system that can support government efforts in saving energy.


2021 ◽  
Vol 2107 (1) ◽  
pp. 012021
Author(s):  
M M M. A Kader ◽  
Z B Razali ◽  
W A Mustafa ◽  
S A Saidi ◽  
A A Nagoor Gunny ◽  
...  

Abstract This research is used to crank start automotive vehicle. There are many different system used in order to start-up vehicles using electric starter, in the time of battery low-power or totally drained. The purpose of this research is to help the driver to get out of this difficulty. Nowadays there are many people that have experienced such a bad moment, where they are stranded at road side due to malfunction starter in their car because of battery problem. Most of the vehicle electric starter failure is because of battery corrosion or battery undercharged. The importance of this research is to solve this problem. Starter is a vital part of the vehicle, without it no automotive vehicles able to operate. These starters will rotate an internal-combustion engine to initiate the engine’s operation under its own power. Starters also can be malfunction too due to corroded electrical connections or an undercharged battery. This system can be used to solve this problem. This system used human energy by using mechanical parts in order to produce electrical power. In order to produce electrical current, workforce will be applied by rotating the wheel that already linked by belt and from that rotations will trigger a magnetic force and it will produce an electrical current and supply it into battery. This system is divided into two development; hardware development and software development. The hardware development involved, mechanical device which is used and electrical device such as monitor. For software development, Fritzing is used to construct circuit.


2013 ◽  
Vol 443 ◽  
pp. 531-534
Author(s):  
Fang Xu ◽  
Xiao Xia Peng

Along with the continuous development of computer technology, the embedded system, as one of the most important computer applications, has been more and more widely used in the world. In this paper, the embedded system is briefly introduced, and also the application of the embedded system to software development is analyzed and expounded.


2013 ◽  
Vol 321-324 ◽  
pp. 3049-3055
Author(s):  
Xian Bo He ◽  
Ming Dong Li ◽  
Li Yang ◽  
Gang Yuan Zhang ◽  
Miao Yue

How to train embedded software development talents that can meet the demands of embedded system companies is a very important task to the computer majors of colleges and universities. Some efficacious measures are given in this paper. These measures include infiltrating embedded software developing ideas and knowledge to existed related computer major courses such as computer operation system, data structure and the principles of computer composition, offering specialized embedded software developing course, studying and researching open source embedded operating system software, and introducing students to participate in embedded software developing course design and application project. Our practical teaching results proved they are very helpful to improve students’ embedded software design ability.


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