The Application of Locomotive Management System in Internet of Things Area

2013 ◽  
Vol 411-414 ◽  
pp. 2347-2350
Author(s):  
Yong Yang ◽  
Yu Yang Lu ◽  
Hao Long ◽  
Na Huo

the paper presents a brand new system about mine locomotive monitoring and management based on wireless video technology, which has high communication rate, strong anti-disturbance capability, more secret, longer distance and object recognizing on high speed moving and other technology advantages. These make the system suit for complex and harsh working environment underground. It uses optical cable to translate data for saving electric cable and decreasing installation and maintenance workload. The full-course real-time supervising improves the efficient of locomotive transportation management and makes locomotive schedule much more convenience.

2012 ◽  
Vol 622-623 ◽  
pp. 1841-1845 ◽  
Author(s):  
Cheng Jun Zhang ◽  
Li Chao Zhang ◽  
Yu Sheng Shi

Currently, battery management system is one of the attraction research topics in the battery management technologies. This paper researches a battery management system based on RS232 and Ethernet, which provides the managers manage the remote batteries in the comfortable and large office. It greatly betters the workers working environment and lights the labor strength. Arm as the kernel of the management system, which is programmed by the real-time operate system uc/os. Through analyzing the requirement of the battery management, hardware system and software system are designed by the thought of layering. The layering thought builds the management system, which can be amended to adapt to the other management. It provides the flexible for the battery management system.


2013 ◽  
Vol 432 ◽  
pp. 609-614
Author(s):  
Xiao Jie Liu ◽  
Quan Liu ◽  
Wen Jun Xu ◽  
Li Wen Yang ◽  
Li Fan ◽  
...  

In this paper, an intelligent warehousing management system (IWMS) using Internet of Things is designed to facilitate the warehousing management. Firstly, the characteristics of IWMS are analyzed, together with some new advanced technologies and theories, such as RFID, Zigbee and heterogeneous network are introduced. Then, the architecture of IWMS is developed and the related management system is accomplished as well. Finally, through the implementation of a prototype system in practical working environment, the operation results show the IWMS can facilitate storekeeper to manage the warehouse and improve logistics capability efficiently.


2021 ◽  
Vol 10 (1) ◽  
Author(s):  
Shi-Jie Yang ◽  
Ning Xiao ◽  
Jing-Zhong Li ◽  
Yu Feng ◽  
Jun-Ying Ma ◽  
...  

Abstract Background As a neglected cross-species parasitic disease transmitted between canines and livestock, echinococcosis remains a global public health concern with a heavy disease burden. In China, especially in the epidemic pastoral communities on the Qinghai-Tibet Plateau, the harsh climate, low socio-economic status, poor overall hygiene, and remote and insufficient access to all owned dogs exacerbate the difficulty in implementing the ambitious control programme for echinococcosis. We aimed to design and implement a remote management system (RMS) based on internet of things (IoT) for control and surveillance of echinococcosis by combining deworming devices to realise long-distance smart deworming control, smooth statistical analysis and result display. New methods and tools are urgently needed to increase the deworming coverage and frequency, promote real-time scientific surveillance, and prevent transmission of echinococcosis in remoted transmission areas. Methods From 2016 to 2019, we had cooperated and developed the smart collar and smart feeder with the Central Research Institute of Shanghai Electric Group Co., Ltd. (Shanghai, China) and Shenzhen Jizhi Future Technology Co., Ltd. (Shenzhen, China). From September 2019 to March 2020, We had proposed the RMS based on IoT as a novel tool to control smart deworming devices to deliver efficient praziquantel (PZQ) baits to dogs regularly and automatically and also as a smart digital management platform to monitor, analyse, and display the epidemic trends of echinococcosis dynamically, in real time in Hezuo City, Gannan Tibetan Autonomous Prefecture, Gansu Province, China. Starting from January 2018, The RMS has been maintained and upgraded by Shanghai Yier Information Technology Co., Ltd (Shanghai, China). The database was based on MySQL tools and the Chi-square test was used to probe the difference and changes of variables in different groups. Results The smart collars are fully capable of anti-collision, waterproof, and cold-proof performance, and the battery’s energy is sufficient, the anti-collision rate, water-proof rate, cold-proof rate and voltage normal rate is 99.6% (521/523), 100.0% (523/523), 100.0% (523/523) and 100.0% (523/523), respectively. The RMS can accurately analyse the monitoring data and parameters including positive rates of canine faeces, and the prevalence of echinococcosis in the general population livestock, and children. The data of dogs deworming and surveillance for echinococcosis is able to be controlled using RMS and has expanded gradually in townships to the whole Hezuo region. The automatic delivering PZQ rate, collar positioning rate, deliver PZQ reminding rate, and fault report rate is 91.1% (1914/2102), 92.1% (13 580/14 745), 92.1% (1936/2102) and 84.7% (1287/1519), respectively. After using the RMS from 2019, the missing rate of monitoring data decreased from 32.1% (9/28) to 0 (0/16). A total of 48 administrators (3, 3, 8, 11, 23 at the provincial, municipal, county, township, village levels, respectively) participated in the questionnaire survey, with 93.8% of its overall satisfaction rate. Conclusions The existing difficulties and challenges in the way of prevention and control for echinococcosis can partially be resolved using the innovative, IoT-based technologies and tools. The proposed RMS advance the upgrade of existing manual prevention and control models for echinococcosis, especially in the current ongoing COVID-19 pandemic, as social distance and community blockade continue. Graphic abstract


Author(s):  
Justin Ophir Isaac

The intention of this research is to establish a platform or livestock monitoring and management system. The IOT framework provides IOT solutions in a wide range of domains and applications in farming, livestock, and agricultural front. The technology stack is based on the Internet of Things (IOT) with relevant sensors available to determine the dairy monitoring system to be placed on the animal. This document provides Use Cases (UC) of the domain, and performs evaluations in different conditions which are close to real-time scenarios and operational ones. With the IOT stack, with appropriate sensors for determining geographical boundaries, assets, interoperability, re-usability and functionality, the technical use-case is described in terms of entity/informational model, deployment view, functional view, business process hierarchy. This document provides detailed analysis of the flow of data and its interactions.


Author(s):  
Meng Wang ◽  
Yongsheng Ma ◽  
Mohammed Sadiq Altaf ◽  
Mohamed Al-Huseein

Modular construction and panelized construction have been promoted and recognized globally as advanced construction techniques. Not only have these construction methods been utilized in the oil and gas industry, but they have also successfully been introduced into the residential construction industry. In North America, the panelized construction technique has become popular particularly for wood-frame wall panels. However, although utilizing this advanced construction method can greatly improve the working environment and productivity, the conventional mentality in construction, which overlooks the value of an automated management system to support offsite prefabrication and onsite installation, hinders its potential. An Internet of Things (IoT)-based management system can capture all dynamic data in real time and effectively synthesize it along the supply chain associated with various types of resources. Eventually, with the assistance of a feature-based modeling method, IoT-based information collection can be merged into an Enterprise Resource Planning (ERP) system. Although highly dynamic market demands result in continual changes in the production plan, schedule, and inventory levels, adopting an IoT-based system accounts for the dynamic changes characteristic of this advanced construction method in order to maximize production. Therefore, in this paper, a conceptual framework for an IoT-based inventory control system is proposed in order to enhance the production and satisfy Just-in-Time inventory principle. IoT-based real-time technology is introduced and the development of supportive software is described. Part of the proposed IoT-based inventory control system is implemented as a case study in a panelized construction manufacturing facility, ACQBUILT, Inc., based in Edmonton, Alberta, Canada.


2021 ◽  
Vol 2021 ◽  
pp. 1-10
Author(s):  
Yan Feng ◽  
Zhongyu Pan

Due to the limitation of economic geography condition, the existing health resources distribution is uneven, the emergence of remote medical disciplines perfectly solved this difficult problem, using computer and network communication network on audio video information transmissions, querying, display, storage, and backup and realizing the network of outpatient service, remote consultation, health advice, and other functions. Telemedicine enables the limited available medical resources to be shared and fully utilized and also enables many economically underdeveloped provinces to enjoy a higher level of medical sharing services. Public health emergency management system on the overall design of the low latency according to system function will be based on the Internet of things. The remote public health emergency management system is divided into three subsystems low latency modules, basic subsystems of platform, application platform, and specific application subsystems, and designs the structure of the various modules. The implementation process is given. In the realization of the system, this paper describes in detail how to realize the functions of the public medical low delay emergency management system, and, in the end, the realization process of the system is reasonably summarized. The application of Internet of things technology in regional emergency rescue can realize the identification and real-time positioning of material personnel, the collection and transmission of the wounded’s physiological information, real-time information transmission, and interaction based on mobile handheld devices, as well as the integration of emergency rescue resources, information integration, and command decision-making, so as to assist rescue operations and improve rescue efficiency.


Author(s):  
Sakthivel G ◽  
Amudha A ◽  
G. Emayavaramban ◽  
M. Siva Ramkumar ◽  
S. Divyapriya ◽  
...  

2014 ◽  
Vol 687-691 ◽  
pp. 1868-1871 ◽  
Author(s):  
De Lin Shi

The paper introduces the concept and general situation of Internet of Things technology system. From Hubei province development status and agriculture application level, we proposed a intelligent agriculture management system based on Internet of Things that can long distance inert high speed. According to project implementation condition, summarized the problem of agriculture Internet of Things in the development, discussed study direction in the future.


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