The automation of the technological processes in the Manufacturing Internet of Things context for the pharmaceutical enterprises

Author(s):  
Alina Fedoseeva ◽  
David Demidenko
Author(s):  
С.Л. Добрынин ◽  
В.Л. Бурковский

Произведена классификация технологий аддитивного производства по базовому состоянию материала: жидкая основа, твердая основа, порошковая основа. Даны определения распространенных технологий в зависимости от базового состояния материала. Описаны технологические процессы изготовления прототипов и конечных изделий методами аддитивного производства, включающие в себя проектирование 3D-модели, преобразование форматов, нарезку 3D-модели на слои, формирование G-code и непосредственно печать. Рассмотрены технологии четвертой промышленной революции как инструмент повышения эффективности управления технологическими процессами аддитивного производства. Представлена модель модернизации технологического процесса аддитивного производства на основе технологий промышленного интернета вещей, аппаратной реализацией которого является одноплатный компьютер Raspberry Pi, программной реализацией является MTConnect - промышленный стандарт обмена данными станков с числовым программным управлением. Использование Raspberry Pi, подключенных к нему датчиков и программного обеспечения OctoPrint реализует контроль и удаленное управлениe технологическим оборудованием аддитивного производства (3D-принтером) в режиме реального времени. Представлено техническое устройство основных подсистем облачной платформы аддитивного производства. Архитектура предлагаемой системы состоит из четырех уровней: уровень адаптера доступа, уровень виртуализации ресурсов, уровень управления службами, уровень пользовательского инструментария We classified additive manufacturing technologies according to the basic state of the material: liquid base, solid base, powder base. We give definitions of common technologies depending on the basic state of the material. We describe the technological processes of manufacturing prototypes and final products by methods of additive manufacturing, including designing a 3D model, converting formats, slicing a 3D model into layers, forming a G-code and directly printing. We considered the technologies of the fourth industrial revolution as a tool for increasing the efficiency of control of technological processes of additive manufacturing. We present a model of modernization of the technological process of additive manufacturing based on technologies of the industrial internet of things, the hardware implementation of which is a single-board computer Raspberry Pi, the software implementation is MTConnect - an industrial standart for the exchange of data of machine tools with numerical control. Using Raspberry Pi, sensors connected to it and software OctoPrint implements control and remote management of additive manufacturing equipment (3D printer) in real time. We present the technical structure of the main subsystems of the cloud platform for additive manufacturing. The architecture of the proposed system consists of four levels: the access adapter level, the resource virtualization level, the service control level, and the user instrumentation level


Author(s):  
В. В. Нарожный ◽  
А. С. Назаров ◽  
Т. Г. Дегтярева

The past decade can be characterized by the accelerating Internet of Things (IoT) development. Currently, the European Research Cluster on the Internet of Things (IERC) defines IoT as a dynamic global network infrastructure with the possibility of self-tuning based on standard and compatible communication protocols. The Internet and microprocessor technology development caused the rise of IoT. Other factors influencing the rapid IoT development were cloud computing and wireless networks popularity growth. As a result, the widespread use of IoT required an increase in the reliability of the devices.In many areas of modern technological processes and physical researches, the temperature is a significant physical characteristic. The paper describes the hardware and software complex connecting the DS18B20 temperature meter (sensor). The complex is designed to study the fault-tolerance of temperature measurements in IoT. The Wi-Fi module NodeMCU V3 based on ESP8266 is applied as a control unit of the complex.The IoT appearance brought to a new level such an important segment of technical researches as the development of the fault-tolerant solutions. One of the important subsystems of such an application is the physical parameters detection of various devices in real-time. The temperature is a significant physical characteristic in many areas of modern technological processes and physical researches. The hardware and software complex for connecting a DS18B20 temperature measurer (sensor) is described in the paper. The complex is designed to examine the temperature measurement fault-tolerance in IoT. The Wi-Fi module NodeMCU V3 based on ESP8266 is applied as the complex controller.As far as the work of IoT depends mainly on the information provided by the sensors, the sensor performance monitoring is critically important. The autonomous system architecture of IoT includes such tasks as perception, localization, planning, management and control over systems exchanging information with each other.  For this reason, the reliability of the sensors is of high concern. Therefore, one failure can lead to the IoT system dangerous behavior.The IoT fault-tolerance is an important direction of modern systems design. The research of the ensuring possibility of the IoT fault-tolerance functioning is an urgent task. For such studies, hardware and software complexes are developed.


2020 ◽  
pp. 1-12
Author(s):  
Zhang Caiqian ◽  
Zhang Xincheng

The existing stand-alone multimedia machines and online multimedia machines in the market have certain deficiencies, so they cannot meet the actual needs. Based on this, this research combines the actual needs to design and implement a multi-media system based on the Internet of Things and cloud service platform. Moreover, through in-depth research on the MQTT protocol, this study proposes a message encryption verification scheme for the MQTT protocol, which can solve the problem of low message security in the Internet of Things communication to a certain extent. In addition, through research on the fusion technology of the Internet of Things and artificial intelligence, this research designs scheme to provide a LightGBM intelligent prediction module interface, MQTT message middleware, device management system, intelligent prediction and push interface for the cloud platform. Finally, this research completes the design and implementation of the cloud platform and tests the function and performance of the built multimedia system database. The research results show that the multimedia database constructed in this paper has good performance.


Author(s):  
Uppuluri Sirisha ◽  
G. Lakshme Eswari

This paper briefly introduces Internet of Things(IOT) as a intellectual connectivity among the physical objects or devices which are gaining massive increase in the fields like efficiency, quality of life and business growth. IOT is a global network which is interconnecting around 46 million smart meters in U.S. alone with 1.1 billion data points per day[1]. The total installation base of IOT connecting devices would increase to 75.44 billion globally by 2025 with a increase in growth in business, productivity, government efficiency, lifestyle, etc., This paper familiarizes the serious concern such as effective security and privacy to ensure exact and accurate confidentiality, integrity, authentication access control among the devices.


Author(s):  
Shreya Joshi ◽  
Ms Bhavyaa ◽  
Suhani Gupta ◽  
Lalita Luthra

Blockchain is considered to be a disruptive core technology. Although many researchers have realized the importance of blockchain, but the research of it is still emerging. It is the record-keeping technology behind bitcoin and is one of the hottest and fastest growing skills in the IT sector today. It serves as an immutable ledger which allows transactions to take place in a decentralized man Blockchain-based applications are rising up, covering numerous fields including finance, healthcare, product management, Internet of Things (IoT), and many more. However, there are still some challenges of blockchain technology such as scalability and security problems which need to be overcome. This paper comprises of a comprehensive study of Blockchain technology. We have included here a deep dive into how blockchains work, its architecture, consensus and various applications. Furthermore, technical challenges are briefly listed.


2018 ◽  
Vol 3 (2) ◽  
pp. 74
Author(s):  
Helina Apriyani ◽  
Sismadi Sismadi ◽  
Sefrika Sefrika

AbstrakInternet of things (IoT) adalah sebuah konsep yang menghubungkan komputer dan perangkat elektronik melalui internet dan dapat dikendalikan dari jarak jauh. Konsep terpenting dalam Internet of things (Iot) adalah modul sistem informasi, koneksi internet dan penyimpanan datanya dalam cloud computing. Konsep ini memiliki manfaat besar dalam perkembangan usaha dan kelangsungan bisnis perusahaan dimana hampir semua bidang menggunakan IoT untuk dapat bersaing di pasaran. Indonesia merupakan sebuah negara yang dianugerahi kekayaan alam yang melimpah ruah. Salah satu komoditi unggulan adalah produk pertanian. Penelitian ini bertujuan untuk membantu para petani dalam memasarkan produknya melalui e-commerce dengan menggunakan konsep Internet of things IoT. Metode penelitian dengan menggunakan metode incremental.  Incremental digunakan untuk mendesai produk, kemudian  diimplementasikan, dan diuji secara bertahap (setiap modul akan ditambahkan bertahap) hingga produk selesai. Hasil penelitian ini digunakan untuk membantu petani di Kabupaten Bogor untuk mendistribusikan penjualannya secara luas, meningkatkan revenue dan memutus rantai panjang proses penjualan. Kata kunci— sistem penjualan, incremental, Internet of Things (IoT), produk pertanian, Kabupaten Bogor Abstract Internet of things (IoT) is a concept that connects computers and electronic devices via the internet and can be controlled remotely. The main concept in Internet of things (IoT) is information systems, internet connections and data storage in cloud computing. This concept has great benefits in the efforts and efforts used to use IoT to be able to compete in the market. Indonesia is a country that is blessed with abundant natural resources. One of the leading commodities is agricultural products. This study aims to help farmers market their products through e-commerce using the IoT Internet of things concept. Research method using incremental method. Incremental to design the product, then implemented, and gradually delay (each module will be added gradually) until the product is finished. The results of this study are to help farmers in Bogor Regency to distribute sales widely, increase revenue and break the sales process. Keywords—sales system, incremental, Internet of Things (IoT), agricultural products, Kabupaten Bogor


Sign in / Sign up

Export Citation Format

Share Document