Scalable Architecture and Structure of Modules for Distributed Process Control System in Industrial Greenhouse Comp

2021 ◽  
Vol 22 (10) ◽  
pp. 527-536
Author(s):  
K. D. Krestovnikov ◽  
A. A. Erashov ◽  
A. N. Bykov

With the growth of the population, the issue of food supply of cities with high-quality agricultural crops becomes urgent. Supply problems arising from this can be solved with the use of industrial greenhouse complexes with artificial lighting and groundless technologies. The development of these complexes makes the task of developing a control system to automate the cultivation processes urgent. Real industrial greenhouse complexes have a significant number of operations with the direct participation of personnel, which can be automated: control of the greenhouse microclimate, lighting, watering and preparation of the nutrient solution composition. This paper presents the architecture of a distributed control system for industrial greenhouse complexes. The system is built on a modular basis and is divided into three levels. The developed architecture is based on the use of standard modules, which makes the control system flexible and scalable. The paper also presents the basic design ratios, with the help of which it is possible to determine the required number of modules for the three levels of the proposed architecture. The use of wireless data transmission between modules based on LoRa technology allows you to abandon the laying of an information bus and at the same time deploy the system over large areas. Control of the system and its parameters is possible through direct human interaction with the interface of the control module or through remote interaction through the cloud. The architecture includes 3 types of executive modules, one combined sensor module and a control module. Each of the executive modules functions according to a given algorithm, and its parameters are controlled by a control module, based on a given growing program and information from sensors. This feature allows you to increase the reliability of the system and continue working in the event of a loss of communication with the cloud, as well as to exclude emergencies in the event of a loss of communication between the modules. The developed solutions make it possible to adapt the proposed control system for greenhouse complexes of various configurations and growing principles.

2010 ◽  
Vol 455 ◽  
pp. 206-210
Author(s):  
Jun Li Liu ◽  
Yan Yan Yan ◽  
G.Q. He

It discusses the reasons of the data transmission time delay and packets loss based on the theory of net data transmission. Aimed to the question of the time delay of data transmission and packets loss, the control system models are set up to analyze their influence to the performance of the control system. Based on the synchronous control model analysis with wireless data transmission, a method to control the system is reached with the state prediction when the communication error or data loss appears. It can control constantly when communication errors appear, and also it can get the most error period by numerical analysis.


2014 ◽  
Vol 513-517 ◽  
pp. 1519-1522 ◽  
Author(s):  
Bin Peng Wang

This paper involves the modern agricultural application control system which is based on internet of things, and this intelligent management system uses intelligent control technology such as S7-300, GSM,WSN and Zigbee to realize the modernization of rural security, agricultural production and residents living fully intelligent managed. This system applies precision agriculture, digital image processing, wireless data transmission and other fields, really combining digital management technology with embedded technology. At the same time, this system which is based on internet of things is the necessary path of modern agriculture informatization strategy. With the mature development of technology of internet of things in modern society, modern agriculture application management system based on internet of things will bring new change to agriculture and high efficiency of agricultural production.


2013 ◽  
Vol 427-429 ◽  
pp. 957-960 ◽  
Author(s):  
Guo Huan Lou ◽  
Chao Chen

Traditional mine hoists have the characteristics of using more meters, complex operation and low production efficiency. To solve these problems, this article introduces an intelligent control system for mine hoist. In the system the industrial fieldbus is combined with the wireless network, the communication protocol of a point to multipoint is developed to realize wireless data collection and wireless data transmission between industrial computer with monitoring computers. For the speed control, a compound control algorithm of ant colony algorithm for optimal control and fuzzy self-adaptive PID control is presented to control hoist operation. Actual application shows that the system worked well.


2013 ◽  
Vol 433-435 ◽  
pp. 1109-1114
Author(s):  
Hui Fang Wang ◽  
Xue Hui Li ◽  
Xiao Ming Liang

: Multimedia assisted teaching plays a more and more important role in modern teaching. It not only can improve the teaching quality, but also provides a platform for the reform of traditional teaching mode and method. For at present classroom utilization rate is low, the fault report and maintenance is not timely, its separate control is not easy to manage, and so on, a set of centralized control system for multimedia classroom equipment is developed by increasing the necessary hardware on the basis of existing multimedia equipment, which is based on network and wireless data transmission technology. A main controller and its peripheral equipment interface circuit are designed, including hardware and software. The system can improve the utilization rate and service life of multimedia equipment, convenient the effective management.


2018 ◽  
Vol 10 (7) ◽  
pp. 168781401878482 ◽  
Author(s):  
Shize Huang ◽  
Fan Zhang ◽  
Qiyi Guo ◽  
Decun Dong

In order to meet the ever-increasing freight capacity demand, operation of heavy-haul freight trains with a 50,000 t capacity has been widely studied for a decade in China. A typical heavy-haul train with a large capacity employs multiple locomotives that are evenly distributed along the train, and each locomotive, or two or more locomotives, hauls a certain amount of freight cars. The synchronicity among locomotives is of great importance to safety. A 50,000-t train developed in China will be pulled by 10 locomotives, and the uneven distribution of traction or brake force, caused by the asynchronous command execution of different locomotives, could eventually lead to severe accidents such as decoupling. This article focuses on how to apply the existing wireless-based multi-locomotive synchronous control system to the trains with the capacity of 50,000 t. The modular functionality of the control system is introduced, and some methods aiming to enhance the reliability of wireless communication are discussed. Then four experiments conducted on real trains or in laboratory are described. Test results show that the wireless synchronous control system can meet the technical requirements of 50,000-t trains and its operation is feasible.


2014 ◽  
Vol 536-537 ◽  
pp. 1157-1160
Author(s):  
Zhuo Kui Wu ◽  
Tao Zeng

According to the demands of electric equipment monitoring and control, a design of on-off control system for electric equipment based on WiFi is presented. The system introduces WiFi wireless communication technology into the communication network construction, which realizes the rapid wireless data transmission, simplifies the network organizing method and saves the network building cost. The WiFi on-off control device and the host computer program based on C# are designed. The WiFi on-off control device has the functions of on-off control of electric equipment and WiFi communication. The host computer program realizes the functions of system login, electric equipment terminal configuration, electric equipment on-off state display and control. The system test and analysis results show that the designed system can realize the remote wireless control of multiple electric equipments and the operation effect is good.


2014 ◽  
Vol 0 (10) ◽  
pp. 73-77
Author(s):  
P. P. Tkachuk ◽  
Y. P. Salnyk ◽  
Y. M. Pashchuk ◽  
I. V. Matala

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