BOE Wang Dongsheng: There are three major technical challenges in the Internet of Things

Today, BOE held the BOE Global Innovation Partner Conference. Its chairman, Wang Dongsheng, delivered a keynote speech on the Internet of Things and artificial intelligence. Wang Dongsheng believes that the Internet of Things, artificial intelligence and big data will follow the steam engine. The fourth industrial revolution after power and computers.

We will usher in the fourth industrial revolution. The Internet of Things, artificial intelligence and big data are driving humanity from the information society to the intelligent society. The fifth industrial revolution will be a revolution in the science of the universe. Only humans have realized their own evolution. It is possible to take the era of the earth and open the era of the universe.

The fourth revolution is also a technological revolution in silicon-based and carbon-based living organisms. In this industrial revolution, the Internet of Things, artificial intelligence and big data will bring trillions of dollars in market opportunities. In Wang Dongsheng's view, BOE is also part of this industrial transformation.

"The core elements of the Internet of Things are interconnected smart devices, massively transmitted big data, and artificial intelligence in the cloud. The underlying core components are mostly based on silicon-based materials, which we can call silicon-based living organisms. (But there are also carbon-based or other forms); life sciences and health industries are basically related to carbon-based living things."

Internet of Things challenge

Of course, in order to complete the transition to the Internet of Things era, this process needs to face technical challenges.

The Internet of Things consists of functional hardware, computing units, sensing units, human-computer interaction units, communication units, software and content. Wang Dongsheng believes that the development of the Internet of Things needs to solve the following three major problems:

First, more powerful information gathering, transfer, calculation, storage and display capabilities. For example, an intelligent LCD factory can store 500 T data, and a newborn genetic data storage requires 15 T. The current information processing capability is obviously insufficient, and we need more powerful information processing capabilities.

Second, more scientific, reasonable, efficient, and constantly optimized algorithm support. The Internet of Things is ubiquitous, and its vitality lies in cross-border subdivision and infiltration integration. Each “cross-border subdivision” has its own different expertise and technology, including physical, chemical, biological, etc. Artificial intelligence to achieve infiltration and integration, create new value, need more, scientific, reasonable and efficient Mathematical models and algorithm support.

Third, high quality big data. Artificial intelligence must evolve through the integration of expertise and technology in various segments, and by continuously feeding in the big data in this segment. High-quality, ultra-large, continuous big data is the foundation for ensuring the evolution of artificial intelligence and the creation of new values. This involves the opening of data in the professional field, as well as legal, privacy protection and many other issues.

These issues involve basic components and materials technologies such as sensing, computing, storage, display, and transmission; computing and communication systems; software and algorithms; dataization capabilities of various industries; information security, privacy protection, and other legal and social issues. . In a nutshell, all aspects of government, industry, and research can work together to solve the above problems.

The chip is the core component of the computing, communication, sensing and other units; the display is the core component of the human-computer interaction unit, and the most important information portal of the future Internet of Things; the software and content are invisible, exist or be transmitted like air; All kinds of functional hardware are tangible, they need to be the node or port of the Internet of Things, and need to add core, screen and software. The Internet of Things is a harmonious combination of related chips, display devices, software and content, and functional hardware to form a value creation system that connects people, people and things, things and things.

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