scholarly journals Optimize the maintenance activity with computer application

2021 ◽  
Vol 1781 (1) ◽  
pp. 012068
Author(s):  
L M Crisan ◽  
A E Crisan ◽  
D Brebenariu ◽  
I Borza
2020 ◽  
Author(s):  
wulan sipahutar

Software Component is a computer application that is useful for carrying out a desired job. This application is needed as a liaison between the brain (brainware) with hardware (hardware). Software also means a computer program that serves to perform special tasks, such as making documents, manipulating photos, making financial reports, or designing a house. Software can be divided into two, namely: System Operation. Software that functions to connect between users and computers, for example Windows 7, Windows 8, Linux, and Windows 10. Application. Software that can be applied to meet user needs. System network adapter drivers, network operations, and network protocols. As for examples of software in online communication, as follows. skype, hangout, web conference, whatsapp, Microsoft excel, video and audio, earlerning


2019 ◽  
Author(s):  
Atul Sharma ◽  
OmeadIbraheem Hussain ◽  
Ashish Sharma

Author(s):  
Zheng Xiao

Background: In order to study the interference of wired transmission mode on robot motion, a mobile robot attitude calculation and debugging system based on radio frequency (RF) technology is proposed. Methods: Microcontroller STM32 has been used as the control core for the attitude information of the robot by using MEMS gyroscope and accelerometer. The optimal attitude Angle of the robot is calculated through nRF24L01 which is the core of the wireless communication module, attitude acquisition module and wireless data communication upper computer application platform. Results: The results shows that the positioning accuracy is better than±5mm. Conclusion: The experimental results show that the proposed attitude solving and debugging system of mobile robot based on RF technology has better reliability and real-time performance. The propped model is convenient for debugging of mobile robot system and has certain engineering application value.


2020 ◽  
Vol 7 (03) ◽  
Author(s):  
UMESH SRIVASTAVA

In order to revitalize Indian education system, the Government of India has recently approved National Education Policy-2020 (NEP-2020) and proposed sweeping changes including opening up of Indian higher education to foreign universities, dismantling of the UGC and the AICTE, introduction of a 4-year multidisciplinary undergraduate program with multiple exit options, and discontinuation of the M Phil program. It aims at making ‘India a global knowledge superpower’. In the light of National Education Policy-2020, agricultural education system needs to be redefined in India as it increases knowledge or information and farmer’s capacity to learn. As the level of agricultural education increases, farmers will become more and more self-reliant and will depend more on their self-studies dealing with farming. It is suggested that reorientation of agricultural higher education in context of globalization, food security, diversification, sustainability of ecosystems, and agribusiness is necessary. The curriculum of agricultural higher education needs to be made more broad based and manpower has to be trained scientifically in topics such as biotechnology, genetic engineering, agro-meteorology, environmental science, agro-ecology, computer application, information technology, conservation of natural and human resources, specialized job-oriented courses, and trade and export in agribusiness. Finally, adequate emphasis should be placed on practical skills and entrepreneurial capabilities among the students to achieve excellence. To properly address the challenges faced by today’s Indian agriculture, competent human resource in sufficiently large numbers would be required in the near future. There is a vast scope for young graduates to undertake agriculture as their profession which is directly or indirectly contributing to the economic and social development of the country.


2021 ◽  
Vol 13 (11) ◽  
pp. 5848
Author(s):  
Isaías Gomes ◽  
Rui Melicio ◽  
Victor M. F. Mendes

This paper presents a computer application to assist in decisions about sustainability enhancement due to the effect of shifting demand from less favorable periods to periods that are more convenient for the operation of a microgrid. Specifically, assessing how the decisions affect the economic participation of the aggregating agent of the microgrid bidding in an electricity day-ahead market. The aggregating agent must manage microturbines, wind systems, photovoltaic systems, energy storage systems, and loads, facing load uncertainty and further uncertainties due to the use of renewable sources of energy and participation in the day-ahead market. These uncertainties cannot be removed from the decision making, and, therefore, require proper formulation, and the proposed approach customizes a stochastic programming problem for this operation. Case studies show that under these uncertainties and the shifting of demand to convenient periods, there are opportunities to make decisions that lead to significant enhancements of the expected profit. These enhancements are due to better bidding in the day-ahead market and shifting energy consumption in periods of favorable market prices for exporting energy. Through the case studies it is concluded that the proposed approach is useful for the operation of a microgrid.


Sign in / Sign up

Export Citation Format

Share Document