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The application of the Internet of Things in industry.
The Internet of Things is an important part of the new generation of information technology, and so is it"Informatization"An important stage of development of the times.
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The Industrial Internet of Things (IIoT) is an Internet of Things technology in the industrial sector.
The industrial Internet of Things is to continuously integrate various collection and control sensors or controllers with perception and monitoring capabilities, as well as mobile communication, intelligent analysis and other technologies into all aspects of the industrial production process, so as to greatly improve manufacturing efficiency, improve product quality, reduce product cost and resource consumption, and finally realize the upgrading of traditional industry to a new stage of intelligence. In terms of application form, the application of industrial Internet of Things has the characteristics of real-time, automation, embedded (software), security, and information interconnection.
Extended information: The basic characteristics of the Internet of Things From the perspective of communication objects and processes, the information interaction between things and people, is the core of the Internet of Things. The basic characteristics of the Internet of Things can be summarized as holistic perception, reliable transmission, and intelligent processing.
1. Overall perception - all kinds of information about objects can be perceived and obtained by sensing devices such as radio frequency identification, intelligent sensors, etc.
2. Reliable transmission - through the integration of the Internet and wireless network, the information of the object is transmitted in real time and accurately, so as to facilitate information exchange and sharing.
3. Intelligent processing - use various intelligent technologies to analyze and process the data and information perceived and transmitted, so as to realize the intelligence of monitoring and control. According to the above characteristics of the Internet of Things, combined with the perspective of information science, the functions of the Internet of Things to process information can be summarized around the flow process of information
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The definition of industrial property defense is the one-in-one model, which is Zhang Ruimin's definition of enterprises in the era of the Internet of Things. The industrial Internet of Things model, or the industrial Internet of Things ecosystem model, is relative to the traditional e-commerce platform or the social platform with concealment, these are two completely different development paths, Haier internally called lane change overtaking, that is, from the traditional product economy model and the Internet e-commerce model of the "road" to the Internet of things ecosystem model of the "road". Its essence is different, which is reflected in the fact that Haier's IoT ecosystem model has three ecological characteristics that traditional e-commerce does not have.
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To put it simply, the industrial control Internet of Things is to continuously integrate all kinds of collection and control sensors with perception and monitoring capabilities into all aspects of industrial production.
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The Internet of Things is a general term for an industry, such as automobiles, rice, the Internet and other industries, which are not an organization or a company.
Definition of the Internet of Things: The Internet of Things is an important part of the new generation of information technology, and it is also an important stage of development in the "information" era. Its English name is: "Internet."
ofthings(iot)”。As the name suggests, the Internet of Things is the Internet of Things. This has two meanings:
First, the core and foundation of the Internet of Things is still the Internet, which is an extension and expansion of the network on the basis of the Internet; Second, its user terminal extends and expands to any item and item for information exchange and communication, that is, the exchange of things. The Internet of Things is widely used in the integration of networks through communication perception technologies such as intelligent perception, recognition technology and ubiquitous computing, so it is also known as the third wave of the development of the world's information industry after computers and the Internet. The Internet of Things is the application expansion of the Internet, and it is not so much a network as the Internet of Things is a business and application.
Therefore, application innovation is the core of the development of the Internet of Things, and innovation with user experience as the core is the soul of the development of the Internet of Things.
The Industrial Internet of Things is the Internet of Things applied to industry.
It is a part of the Internet of Things, among which companies such as Xiangkong Cloud Network and Siemens have done more research on the Industrial Internet of Things.
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In general, IIoT tends to have a more structured connectivity environment because the responsibilities performed by an IIoT system are more critical than typical IoT applications. Response time is often an issue, and IoT applications like fitness tracking can often store data locally and process it when a wireless link is available. IIoT is also typically targeted at existing devices and standards, while consumer IoT devices are generally new.
Compared with the previous form, the IIoT standard spans a wider range of communications and services in the IoT environment. This means that more companies are involved. This is why IoT development and deployment tend to be more complex and expensive, although, in theory, the final implemented system should be more efficient, more flexible, and ultimately less costly, while offering more functionality.
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"Industrial Internet of Things".Compared with the traditional manufacturing industry, the traditional production equipment is a machine and has no networking function"Industrial Internet of Things".Through intelligent collection of production data, upload to the cloud after big data calculation, in the mobile phone to display "production progress", "material consumption", "equipment maintenance status" and so on.
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Our company uses dandelion router to achieve industrial remote, which can realize the comprehensive perception, dynamic transmission, and real-time analysis of equipment data, which is much more convenient, and can be deployed like this a long time ago.
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In order to figure out which technologies such as 5G, artificial intelligence, and big data will become the main trends in the future, we must first have a more comprehensive understanding of these technologies.
The core of cloud computing is service, providing users with cheap computing resource services through the Internet, providing three levels of services such as IaaS, PaaS and SaaS according to different users, cloud computing has changed the traditional way of obtaining computing resources, and cloud computing will become an important support for Internet services in the future. Due to the many advantages of cloud computing, the cloudification of traditional enterprise management software is a relatively obvious trend.
The Internet of Things can be divided into six components architecturally, namely devices, networks, platforms, analytics, applications, and security, of which security covers the other five parts. The Internet of Things is the key to the construction of the industrial Internet, and it is also an important application environment for artificial intelligence products (agents).
Big data is the inevitable result of the development of the Internet of Things, the web and traditional information systems, big data and cloud computing have many overlaps in the technical system, the focus is distributed storage and distributed computing, but cloud computing focuses on services, while big data focuses on the value operation of data. At present, big data has formed a preliminary industrial chain, including data collection, storage, security, analysis, presentation and application.
5G provides basic communication service support, further improves the data transmission rate, improves capacity support, and improves security to a certain extent on the basis of 4G. With the implementation of 5G communication standards, the curtain of industrial Internet development is also slowly opening, and the Internet of Things, big data, cloud computing and artificial intelligence are the core technologies of the industrial Internet, so these technologies have a wide range of development prospects.
According to the Gartner report, the IoT platform is in a "period of expectation inflation", and it is believed that in the near future, the IoT platform will also mature. Compared with big data and other technologies, artificial intelligence-related technologies (machine learning, etc.) are still in the early stage of development, so the current demand for talents in the field of artificial intelligence is still dominated by mid-to-high-end R&D talents.
I have been engaged in the Internet of Things industry for many years, and my main research direction is concentrated in the field of big data and artificial intelligence.
If you have any questions about the Internet of Things, you can consult me, thank you!
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IIoT is essentially machine-to-machine (M2M) support that extends to the cloud. In this sense, IIoT is not really a new idea, but a new term for existing systems. The biggest difference is:
How can existing systems change? And what is the availability of these technologies?
It's the same – both are lofty words like "cloud" and "internet", both of which encompass almost any connected device, but IIoT refers more to industrial applications. The challenge is that many of the applications that are planned to be classified as IIoT will be limited to areas of industrial layouts, such as factory or warehouse automation. At the same time, applications such as industrial lighting are classified as consumer or enterprise, because at least the user's smartphone or tablet is used to control the operation of the application.
A basic IoT environment (Figure 1) connects devices (or edge nodes) to the cloud, typically through gateways. Today, the cloud generally refers to computing and storage resources connected to the internet. IoT services like analytics and management tools leverage data in the cloud.
Raw and processed information can be accessed through the user interface, such as smartphones and PCs.
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Industrial Internet of Things equipment is the equipment required by the Internet of Things in the industrial field, the common MQTT gateway, WG500 series simple gateway is called the industrial Internet of Things gateway, the common Siemens PLC, Schneider PLC, etc. are called orange hidden Internet of Things equipment WG5858 industrial gateway.
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Industrial IoT Origins:
In the past, the production equipment in the industrial field did not have the active networking function, resulting in the production data, material consumption, and product tracking all completed by manual work, with low efficiency, many errors and omissions, and with the faster and faster product iteration, manufacturing enterprises need to have strong agility (for example, merchants insert orders for production, and can adjust the production plan at any time).
The role of the Internet of Things is to obtain the production data of the equipment in real time through hardware technology (which was impossible before), and finally present it on the user's mobile phone through big data analysis (such as how much material is consumed, how much inventory there is, and what is the production progress of each production line).
IIoT is made up of a large number of connected industrial systems that communicate with each other and coordinate data analysis and actions to help improve industrial efficiency and benefit society as a whole. Industrial-grade systems that bridge the digital and physical worlds with sensors and actuators can solve more complex control problems. At present, various systems are combining huge amounts of simulation data and solutions, hoping to gain deeper knowledge through data and analysis.
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Dandelion routers can meet the needs of seamless connectivity for off-site networks, and there is no need for complex configuration commands
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