v

The integration of data and reality creates new advantages in development: a new form of ternary integration of humans, machines and objects_China Net

China Net/China Development Portal News Since the 18th National Congress of the Communist Party of China, the party and the country have attached great importance to the integrated development of the digital economy and the real economy. The integrated application of digital technologies such as the Internet, big data, and artificial intelligence in the real economy has become increasingly important. The deeper, the wider. General Secretary Xi Jinping emphasized that it is necessary to promote the integrated development of the digital economy and the real economy, grasp the direction of digitalization, networking, and intelligence, promote the digitalization of manufacturing, service, agriculture and other industries, and use new Internet technologies to carry out all-round and full-chain development of traditional industries. transformation, improve total factor productivity, and give full play to the amplification, superposition, and multiplication effect of digital technology on economic development. According to the “China Digital Economy Development Research Report (2023)”, in 2022, the penetration rate of the digital economy in my country’s primary, secondary and tertiary industries will reach 10.5 respectively Sugar Daddy%, 24.0%, 44.7%. Accelerating the deep integration of the digital economy and the real economy has become a new engine for the transformation and upgrading of my country’s traditional industries and an inevitable choice for high-quality economic development.

Looking around the world, the integration of the digital economy and the real economy (hereinafter referred to as “digital-real integration”) is also a strategic choice for the world’s major countries to create new competitive advantages. In 2006, the National Science Foundation proposed “Cyber-Physical Systems”, which aims to integrate sensing, computing, control and networks into physical objects and infrastructure, and connect them to the Internet and each other. ; Since then, the United States has formulated the “National Advanced Manufacturing Strategy” in 2012, 2018 and 2022, emphasizing the application of digital technology in manufacturing to improve the competitiveness of the U.S. manufacturing industry and drive the reshoring and upgrading of the U.S. manufacturing industry. NZ Escorts has entered the manufacturing sector to reshape national competitiveness. Since Germany proposed the concept of “Industry 4.0” in 2013, it has successively launched strategies such as “Recommendations for Implementing the “Industry 4.0″ Strategy”, “Digital Strategy 2025”, and “German Industrial Strategy 2030”, and has achieved comprehensive awareness and understanding of the production process through digital technology. Control and promote the integration of the physical world and the virtual network world; in 2022, Germany further proposed the “Manufacturing-X” plan, which aims to stimulate the value of data elements by building a data space and promote the overall systematic digital transformation of the supply chain to ensure that Germany Global leader in industry. Facing prominent social problems such as aging and low birthrate, Japan has proposed the “Society 5.0” strategy. Among them, the “Internet Industry” strategy collects massive dataZelanian sugar, connecting people, equipment, systems, technologies, etc. to each other, through artificial intelligence (AI) on big data spanning multiple types of information (AI) analysis, including customer and consumer demand, supplier inventory information and delivery information, etc., thereby not only solving manufacturing problems, but also striving to solve the severe social challenges facing Japan.

Generally speaking, relying on technologies such as sensors, the Internet of Things, big data, and artificial intelligence to realize mutual perception, control, and optimization between the physical world and the digital world has become an important issue for the country to enhance industrial competitiveness and solve the problem. important approach to social development problems. This article aims to further grasp the essential laws of digital-real fusion, clarify the enabling path of digital-real fusion, and analyze the development of digital-real fusion. trends, and put forward countermeasures and suggestions for further promoting the integration of data and reality and shaping new advantages in my country’s economic development.

Digital economy and its enabling nature

From a historical perspective, human society has experienced an agricultural society, an industrial society, and is entering a knowledge society. . In this process, each society has its iconic technology, iconic economic form, as well as iconic features, tools, objects, etc., thus forming different Zelanian EscortIt stands to reason that even if the father dies, relatives from his father’s or mother’s family will also NZ Escorts a>Should step forward and take care of orphans and widows, but he has never seen those people appear since he was a child. state. The digital economy is a typical economic form of the knowledge society, such as the agricultural economy to the agricultural society and the industrial economy to the industrial society. For the knowledge society, a new economic form characterized by knowledge is being given birth to.

Digital economy is a typical economic form of knowledge society

Today’s society is making great strides from the industrial economy era to the knowledge economy era. In 1996, the “Knowledge-based Economy” report released by the Organization for Economic Cooperation and Development (OECD) proposed that the “knowledge economy” is an economy based on the production, distribution and use of knowledge and information. UNESCO’s “Towards a Knowledge Society” report believes that the core of a knowledge society is the ability to identify, produce, process, transform, disseminate and use information in order to create and apply knowledge necessary for human development. Knowledge resources are surpassing natural resources such as land, water, plants, minerals, and energy, and are increasingly becoming the key element and the most important factor in the development of social productivity Zelanian sugar resources.

The rise of the digital economy has brought new possibilities to the production, dissemination and use of knowledge. There is a new model for the generation of knowledge. Artificial intelligence based on large-scale dataThrough the learning of data and industry knowledge, multi-field knowledge can be deeply integrated, hidden patterns and associations can be identified and mined, and human beings can expand their horizons. cognitive boundaries. The expression of knowledge takes on a new dimension. The professional technologies and knowledge of the traditional real economy have been digitized, modularized, and standardized, which promotes the explicitness of tacit knowledge and greatly improves the reusability of knowledge. The spread of knowledge breaks through traditional boundaries. The exclusivity of knowledge in the traditional industrial economy era was broken, and an open knowledge society gradually formed.

The empowering nature of digital-real integration

The real economy is the foundation of a country and the foundation of its strength. The report of the 20th National Congress of the Communist Party of China emphasized that we must “persist in focusing our economic development on the real economy.” In essence, the integration of data and reality is the increase of production factors and the reduction of uncertainty. The three-dimensional integration of humans, machines and objects is the link between the integration of data and reality (Figure 1).

The fusion of digital and real is the increase of production factors. In agricultural and industrial societies, economic development mainly relies on production factors such as land, labor, capital, and technology. With the continuous integration of digital technology and economic activities, the data acquisition, transmission, storage, processing, and processing capabilities in production activities have been greatly improved. Massive industrial data, user data, and upstream and downstream data in the industrial chain continue to emerge, which opens up a new path for enterprises. Each link and multi-dimensional data provide strong support for strategic competitive decisions and bring added value. Data Zelanian sugar has become increasingly important in production and competition, gradually becoming independent from auxiliary resources and becoming a digital economy empowering entity The core production factors of the economy. According to the “Digital China Development Report (2022)”, my country’s data output will reach 8.1 ZB in 2022, a year-on-year increase of 22.7%, accounting for 10.5% of the world, ranking second in the world. Of course, the advantage of data stock alone is not enough to meet the urgent demand for data elements in economic and social development. What is more important is to use a complete supporting system to promote the use of data like other commodities Newzealand SugarThe orderly circulation and use in the market realize the integration and connection of data in various fields, thereby truly releasing the value creation of data in the real economyNewzealand SugarMade.

The fusion of numbers and reality is the reduction of uncertainty. Norbert Wiener, American mathematician and founder of cybernetics ) proposed that information, material and energy are the three major elements of the real world. From an economic point of view, due to the different information possessed by the parties to the transaction, it will affect the efficiency of the market mechanism in allocating resources, causing the party with information advantage to gain in the transaction. There will be a serious imbalance in the profit distribution structure, which is a market failure caused by information asymmetry. Under the development of the digital economy, based on data aggregation, cleaning and processing, through the application of Internet of Things technology, big data analysis and AI. , will generate multi-dimensional information that will help to gain insight into the market, capture trends, and discover patterns, thereby reducing information asymmetry in the traditional real economy and improving the optimal control of production material and energy flows and the efficiency of resource use. For example, with With the development of digital platforms, information from the supply side and the demand side converges on the platform; under the influence of algorithms, information from both supply and demand sides is accurately and efficiently matched to achieve optimal allocation of resources.

The three-dimensional integration of humans, machines, and things is the integration of data and reality. In today’s world, a new round of scientific and technological revolution and industrial transformation are accelerating. Big data, Internet, artificial intelligence, 5G communications, cloud computing, Internet of Things and other new generation information technologies are the most active key technology groups in this round of scientific and technological revolution. Application empowerment is in the ascendant, blurring the boundaries between human society (people), digital space (machine), and the physical world (things). New forms of digital-real integration based on the three-dimensional integration of humans, machines, and things are taking shape. The widespread application of products and technologies such as equipment and virtual reality (VR) enables human activities to be mapped in virtual space; technologies such as the Industrial Internet and smart manufacturing enable machines to perform tasks more intelligently, thereby optimizing the production process and improving production efficiency; Internet of Things technology enables the physical world to have the ability to perceive and interact, thus forming an interconnected ecosystem of people and people. The way of connecting people and things and things and things is expanding from physical space to digital Sugar Daddy space, becoming remote, full-time and global. Connection becomes a reality; the interactive integration of machine capabilities and human capabilities achieves a leap in productivity. The three-dimensional integration of humans, machines, and things not only improves productivity, but also generates and will continue to generate new business models and service methods, promoting the transformation of the real economy. Upgrading.

The path of digital-physical integration to empower industry systemic change

General Secretary Xi Jinping emphasized that the digital economy is highly innovative, highly permeable, and Wide coverage. The digital economy’s empowerment of the real economy shows the characteristics of the whole process and the whole chain, penetratingIn all aspects of R&D innovation, production and manufacturing, collaborative integration, and supply services, we will nurture systemic changes in the real economy.

The digital economy empowers the real economy to accelerate R&D and innovation

Innovation is the source of power for industries to continue to maintain competitiveness. Driven by digital technology, the real economy’s innovative thinking, innovation models, and innovation cycles are undergoing comprehensive and profound changes.

The digital economy leads open innovation thinking. The development of the digital economy has transformed innovative entities from an exclusive relationship of perfect competition to a symbiotic and win-win relationship, and from closed innovation to open innovation; at the same time, the network effect of the Internet platform has also caused a single enterprise, a single industry, a single region, a single The country’s innovation model has been broken, and the vitality of open innovation with the participation of the whole society has been stimulated. For example, software open source is a typical practice of open innovation. Through the open source community, developers from all over the world jointly promote the iteration and enrichment of software functions.

Data sharing promotes collaborative innovation model. Relying on big data, blockchain and other digital technologies, the open innovation ecosystem breaks the information barriers of regions, departments, organizations and links, accelerates the dissemination of information upstream and downstream of the industry chain, and achieves upstream and downstream collaboration in the industry chain with a componentized and modular flexible architecture. Innovation, new business formats and new models in the service industry.

Digital closed loop shortens the iterative innovation cycle. In the digital age, the traditional one-way innovation path has evolved into closed-loop iterative innovation. After the product prototype enters the market, digital technology can timely collect data on user usage habits, product performance and other data, and feedback it upward to the innovation chain, guiding the R&D link to fully understand market demand, thus forming a B2C2B data closed loop, promoting the close connection between the innovation chain and the industrial chain, and promoting The direction of industrial innovation is a spiral iterative upgrade.

The digital economy empowers the real economy to optimize production and manufacturing

As a core link in the development of the real economy, production is one of the important ways for the digital economy to empower traditional industries. As the integration of data and reality deepens, three major changes will occur.

Change from product-centered to user-centered. Driven by big data, various industries in the real economy capture user needs more clearly and accurately, guiding the transformation of traditional product-centered production values ​​into user-centered values; customized production and user-first concepts not only enhance user The experience further enhances the competitiveness of enterprises.

Transition from experience-driven to knowledge-driven NZ Escorts. Using digital means, the domain knowledge, tacit knowledge or experience of the production process is solidified into streamlined, standardized and intelligent software components, thereby achieving precisely controlled process production and improving production efficiency and production levels.

Transform from scale to flexibility. Based on the explicitness and modularization of knowledge, digital technology provides automatic Zelanian EscortIt is possible to complete the combination of various elements, realize the automation of the production process, and support the flexible manufacturing model of multiple varieties and small batches. For example, Haier Home Appliances Shenyang Factory realizes human-machine, The high-quality and efficient interconnection of machines has created a flexible production line that supports more than 500 models of products, resulting in a substantial increase in customer customization and a substantial improvement in production efficiency.

Digital economy empowers entities. Economic Enhancement Collaborative Integration

Industrial synergy is the fundamental guarantee for the efficient and orderly operation of the real economy. The digital economy helps the real economy achieve synergy and integration within and between industries, improve industrial competitiveness, and promote industrial transformation and upgrading. .

From the perspective of vertical intra-industry collaboration, the data integration of terminal sensing based on the Internet of Things and the industrial Internet platform has enabled the information barriers related to materials, production, procurement, and logistics distribution in the upstream and downstream of the real economy industry chain to be broken through. ;At the same time, the dynamic matching of supply and demand information reduces supply costs, improves the stability of the industrial chain, and also provides new opportunities for industrial equipment sharing, personnel sharing, production capacity sharing and virtual industrial parks, etc.Sugar DaddyBusiness formats and new models lay a solid foundation for information collaboration.

From the perspective of horizontal inter-industry collaboration, digital technology helps industries connect information, demand, and Service docking expands industrial connotation and development space. Manufacturing servitization is one of the representative directions of cross-industry collaborative development. Under the influence of digital technology, the manufacturing value chain has transformed from manufacturing-centered to service-centered. Digital technologies such as networking and 5G communications can further provide extended services such as operating status monitoring and preventive maintenance on the basis of product sales, increasing the added value of products and assisting industrial transformation and upgrading.

Empowering the digital economy. The real economy improves its supply capacity

Under the traditional supply model, information communication between producers and consumers is poor, and it is difficult to meet market demand in a timely manner. Digital technologies such as the Internet of Things, social networks, and digital platforms provide access to the industry. The multi-form channels of consumers make user demand and user experience a new driving force for industrial supply to improve the level of industrial service supply.

Under the influence of digital technology, the traditional economy has expanded. The single offline supply model has been fully transformed into an online and offline integrated development model. Tools such as the Internet, mobile Internet, big data, and artificial intelligence have broken the space and time constraints of traditional marketing, allowing enterprises to reach out more broadly. The good wild vegetable cake walked to the front porch and placed it on the railing of the bench next to her mother-in-law. She smiled and said to her mother-in-law who was leaning on the railing: “Mom, this is Aunt Wang teaching her daughter-in-law to reach her target customers. Especially in the real economy’s expansion of overseas markets, the digital economy plays an important role. According to statistics, my country’s cross-border e-commerce import and export scale will reach 2.1 trillion yuan in 2022, an increase from 202030.2% longer.

The digital economy improves the accuracy of services in the real economy. On the basis of onlineization, the physical industry uses digital means to collect consumption data, and uses data analysis to learn user behaviorNZ Escorts patterns and demand characteristics, Form digital portraits of users to make products and services more accurate, timely and diverse.

The development stages and trends of digital-real fusion

The initial stage of digital-real fusion: technology-driven

Early digital-real fusion has achieved Benefit from the rise of the Internet and the popularity of computers. In the 1990s, as Internet technology became increasingly mature, network access rapidly became popular around the world, and digital technology rapidly spilled over from the information industry, thus bringing about a comprehensive impact on the economy and society. In 1995, the book “Digital Survival” predicted the impact of digital technology on future production, life, and education. During this period, the typical practice of applying digital technology to the real economy was the widespread application of enterprise information systems, such as the use of enterprise resource planning (ERP), customer relationship management (CRM) and other systems. Although academia and industry often refer to this stage of digital technology application as “informatization”, its essence is still the integration of digital and real.

The fusion of data and reality at this stage has three characteristics: digitization. Various physical entities and natural information are converted into data expressed in 0s and 1s and stored in computers, so that computers and software can identify, control, store, calculate and other data, realizing the transformation from paper documents to digital documents; this Although the efficiency of information access has been improved, business process optimization and value creation have not yet been achieved. A la carte. Digital technology is only used in specific aspects of business, such as using ERP systems for enterprise production management, using CRM systems for enterprise customer management, and using office automation (OA) systems for enterprise office management. discretization. Digital technology applications are still relatively fragmented, and there is a lack of coordination and connectivity between applications in each link. For example, enterprises use different information systems in different business units, resulting in data that cannot be shared and coupled.

The development stage of digital-real integration: data-driven

In the 21st century, with the rapid development of the Internet and mobile Internet, the platform economy is rapidly emerging, and massive data are continuously being collected, stored, and Process and use to create new value. In 2012, the New York Times published an article “The Era of Big Data”, pointing out that “big data” is having a profound impact on every field, announcing the arrival of the era of big data.

The digital-real fusion at this stage shows three characteristics: networking. As a large number of users, machines, and items are connected to the Internet, the connections between people and people, people and things, things and things, and services and services are experiencing explosive growth. Under the influence of Metcalfe’s Law, the resulting network value has also shown exponential growth, opening up a vast new space for development of the real economy.. Data shows that as of the end of 2022, the number of Internet users in my country has reached 1.067 billion, and the number of mobile IoT terminal users has reached 1.845 billion; my country has become the first country in the world to have a “Superman of Things”. Platformization. The platform economy has risen rapidly at this stage, forming a huge digital ecosystem. This ecosystem achieves efficient connections between supply and demand by gathering and integrating massive amounts of data, allowing enterprises, service providers and consumers to more conveniently participate in digital economic exchanges and cooperation, and promotes the rapid development of the real economy. Valuation. The emergence and popularization of big data can not only provide effective support for decision-making activities, but also profoundly affect and change the production models of all walks of life. This is reflected not only in terms of economic value such as empowering the real economy to reduce transaction costs, improving production efficiency, and expanding market space, but also in terms of social value such as improving people’s livelihood and well-being and achieving sustainable development. For example, Didi Chuxing Technology Co., Ltd. cooperates with Jinan, Wuhan and other places to use road condition data from the traffic control department and combine it with smart traffic algorithms to automatically adjust the light changing time; by optimizing more than 2,000 intersection signal lights, it has reduced congestion and delays during peak hours in Jinan City. Time is reduced by an average of 20%. This not only improves traffic operation efficiency, but also reduces carbon emissions caused by congestion.

The deepening stage of digital-real integration: intelligence driven

With the release of the chat robot ChatGPT, artificial intelligence technology represented by large models has entered a new stage of accelerating its application, which is the integration of digital and real. It provides new tools and injects new momentum. my country’s large model industry is booming and has entered the “Hundred Model Era”; among them, there are general large models such as “Wen Xin Yi Yan” and “Pangu”, as well as industry large models for vertical fields such as education, finance, and media. These large models provide services for professional solutions for specific business scenarios, pushing the integration of data and reality into a new stage of intelligence drive.

This stage of digital-real integration shows three further deepening characteristics, bringing huge changes to the development of the real economy: subverting the way of intelligent interaction. Relying on technologies such as machine vision and natural language models, the supply of digital technology is closer to human interaction habits than ever before, thus lowering the threshold for using artificial intelligence technology and providing a feasible path for artificial intelligence to empower the real economy. Enhance multimodal data fusion. Large models integrate text, images, audio, video and other multi-modal data, allowing machines to more comprehensively and deeply understand complex scenarios in the real economy, optimizing and improving the model’s ability to serve the real economy. Promote the emergence of new knowledge. Driven by new theories and technologies such as the mobile Internet, big data, supercomputing, sensor networks, and brain science, artificial intelligence presents characteristics such as deep learning, cross-border integration, human-machine collaboration, open group intelligence, and autonomous control. It can Discovering the laws and patterns hidden behind the data provides new ideas and methods for the emergence of new knowledge and creates new possibilities for the development of the real economy. For example, Baidu Online Network Technology (Beijing) Co., Ltd. cooperated with Geely Automobile to pre-train models based on tens of millions of unlabeled data., built a knowledge base in the automotive field, thereby saving 85% of R&D time and cost, and realizing cost reduction and efficiency increase of large model-empowered R&D Newzealand Sugar.

The development trend of digital-real integration: people-oriented three-dimensional integration of humans, machines, and things

Technology-driven technology has laid an important foundation for digital-real integration. Data-driven technology has expanded the elements of digital-real integration. Intelligent drive will become a powerful engine for the integration of digital and real data. In the future, the development of digital technology will extend from the economic field to the entire human society. With the help of cloud computing, Internet of Things, mobile communications, artificial intelligence, virtual reality, brain-computer interface and other technologies, the human society (human)-digital space (machine) will be realized. -Information sharing and collaborative computing between the physical world (things) form a new form of digital-real fusion that is human-centered and a three-dimensional fusion of humans, machines and objects, serving human needs and ultimately providing solutions to major economic and social problems faced by national development. .

The people-oriented three-dimensional integration of humans, machines, and things, and the digital-real integration will promote three new trends in my country’s economic development: Collaboration. The three-dimensional integration of humans, machines, and things enables real-time perception of human needs and the status of the physical world and digital space through the interconnection of all things and the intelligent connection of all things, thereby accelerating the efficient collaboration and optimal allocation of the three major elements of material, information, and energy, thereby improving industrial resilience and The quality of economic development provides new possibilities. For example, intelligent manufacturing uses technologies such as human-machine collaboration, robot automation, and digital twins to quickly perceive changes in the environment and demand during production activities and make timely responses. Servitization. The fundamental purpose of digital-real integration is to enable technology to better benefit people’s well-being. Human needs, experience and participation are the core of digital-real integration; the three-dimensional integration of humans, machines and things will promote the real economy to organize around the personalized needs of individuals. Customized production activities, so that everyone will enjoy more accurate, more comfortable and higher-quality services in lifelong education, social leisure, shopping and entertainment, health care, food, clothing, housing and transportation, etc. For example, Internet of Things applications will monitor users’ heart rate, blood pressure, sleep quality and other health data in real time to provide personalized health Zelanian sugar manage. Go green. In the economic development form of the three-dimensional integration of human, machine and material, the production of products will be based on the actual needs of people and manufactured on demand. This not only accurately meets individual needs, but also avoids the waste of resources caused by over-supply; humans and nature will gradually realize harmonious coexistence, and machines will gradually rise from tools to human partners, realizing the realization of human society (people)-digital space ( machine) – the coordination and unity of the physical world (things).

Problems, challenges and countermeasures faced by digital-real integration

Problems and challenges

Currently, my country’s digital economy and real economy continue to integrateDeepening and achieving positive results, however, the new development form that is far from the deep integration of human, machine and material still faces problems and challenges at the levels of theoretical methods, industrial technology, social ethics and other aspects.

Theoretical method level. The underlying logic of deep integration of humans, machines and objects needs to be optimized. How to make machines better serve people’s production and life, promote inclusiveness in the workplace, and improve people’s quality of life is the core of digital-real integration under the integration of humans, machines, and things – machines should be made to serve people, not replace them. . A theoretical system that deeply integrates production and manufacturing with social needs needs to be established urgently. The existing digital-real integration is mostly centered on business scenario workflow and focuses on using the new generation of information technology to improve production efficiency; however, there is still a lack of connection from production supply to demand satisfaction, and it has not opened up people’s needs for education and medical careZelanian sugar Treatment and other practical needs are integrated with service and manufacturing systems, and a theoretical system that solves economic and social development problems with a closed loop of production, manufacturing and service needs has not yet been formed NZ Escorts.

Industrial technology level. Insufficient fusion of human, machine and object data. In Zelanian Escort a digital society where humans, machines, and things are integrated, human needs are transformed and connected between different scenarios, so it is important for cross-industry and cross-border Newzealand SugarData fusion across fields, across time, and across space puts forward very high requirements. Existing data fusion mostly focuses on a single field, and is difficult to meet the needs of cross-field and multi-type data in the context of the three-dimensional fusion of humans, machines and things Sugar Daddy computing requirements. The standard and specification system is incomplete. The development of digital-real integration of the three-dimensional integration of humans, machines, and things requires the support of a standard specification system; however, different companies and industries currently use different data formats and standards, which results in data being unable to circulate and Newzealand Sugar shared, increasing the difficulty of data integration. Network security issues are prominent. The three-dimensional integration of humans, machines, and things has enabled a large number of enterprises of different sizes and different types of human-computer interaction devices to access the Internet. This has led to the expansion of network attack surfaces and intensified network security risks, thereby threatening the safety of personal life and property, and even threatening economic and social security. national security.

Social and ethical aspects. Data privacy and security issues. In the form of the three-dimensional fusion of humans, machines, and objects, a large number of entitiesEconomic data will be collected and used, which may lead to personal privacy leaks, data abuse and data security incidents. Especially in the future, with the mature use of technologies such as brain-computer interfaces and biochips that are deeply integrated with human body movements and thinking, people’s consciousness and emotions may face the risk of being read, or even hijacked, rewritten, and deleted. The problem of algorithmic bias. Due to algorithm design flaws or incomplete data in algorithm model training, the algorithm will lead to bias and discrimination against certain groups, thus deviating from the original intention of making technology benefit mankind. Algorithmic uninterpretability. Artificial intelligence models have “black box” characteristics, and their internal operating mechanisms are difficult to explain. As technologies such as artificial intelligence continue to be increasingly applied in the real economy, it is crucial that algorithms can be explained in manufacturing, medical, transportation and other fields. Therefore, there is an urgent need to improve the transparency and accountability of algorithms. Employment and social equity issues. The integration of data and reality may lead to the reduction of jobs in some traditional industries, while also creating new job opportunities. However, most of the new jobs require workers to have higher digital skills, which may affect workers’ fair employment opportunities and lead to social inequality.

Countermeasures and Suggestions

Deepen the research on theoretical methods for the integration of humans, machines, materials, and reality. Construct a people-centered theoretical framework for the three-dimensional integration of humans, machines, and objects. Guided by the national major strategic Newzealand Sugar development needs, major social issues and future social development vision, we will conduct in-depth research on human-machine Zelanian EscortThe theoretical framework of the three-dimensional integration of things breaks through the digital-real integration development model that simply aims to improve efficiency, and forms a people-oriented, human-machine complementary digital-real development model. Integrated development logic system. Build an evaluation system for human-machine collaboration. In order to make machines better serve human goals, an evaluation system for human-machine collaboration should be established from the dimensions of human-machine collaboration efficiency, human-machine collaboration quality, and human-machine collaboration satisfaction to improve the operability and evaluability of human-machine collaboration. Guide various industries to carry out people-oriented digital and real integration to protect the basic rights and interests of workers.

Deepen the exploration and demonstration of the integration of human, machine, physical, digital and real applications. Develop unified data standards. Focus on the key areas of the three-dimensional integration of human Newzealand Sugar and organize industry associations, enterprises and experts in the field to formulate standards. Promote data circulation and sharing by formulating cross-industry and cross-field data exchange and sharing standards. Building a cross-industry, “I can’t figure it out.” If you are still persistent, are you too stupid? Lan Yuhua laughed at herself. Cross-domain data space. In key areas such as education, medical care, and transportation, we use advanced data fusion technology to integrate the entire life cycle based on people’s needs.Periodically correlate data to achieve unified storage, management, analysis and service of multi-domain and multi-scenario data, promote trusted sharing of data across time, space and scenarios, and meet data fusion needs in the context of the three-dimensional integration of humans, machines and things. Accelerate application demonstrations in key scenarios. Explore people-centered scenario innovation and model innovation for the three-dimensional integration of humans, machines, and things, and launch pilot demonstrations for the three-dimensional integration of humans, machines, and things in areas such as smart transportation and smart medical care. By exploring the standardized development of the three-dimensional integration of humans, machines, and objects, experiences and models that can be replicated and promoted will be formed. Strengthen network security prevention capabilities. Deploy advanced threat detection and response systems to promptly identify and respond to potential security threats; strengthen privacy protection technology, strengthen identity verification, and perform data analysis without exposing original data.

Deepen the construction of technical ethics standards for the integration of humans, machines, materials, and reality. Strengthen the establishment of data collection and use standards. For different data-real integration scenarios, clearly define the principles of data collection, use, storage and sharing to ensure individuals’ right to know and control the collected data. Strengthen classification and classification supervision of algorithms. Establish an algorithm review agency, and establish an algorithm classification and hierarchy system covering the public and commercial fields based on algorithm application scenarios and their impact on economic and social security; for areas closely related to national public security, strengthen the information disclosure of relevant data and algorithms , establish a traceability and accountability mechanism for the entire life cycle of the algorithm. Improve algorithmic ethics guidelines. Clarify the research and application principles of artificial intelligence technology, and strengthen the need for academic research institutions and enterprises to strictly abide by scientific and technological ethics, technical standards, and laws and regulations throughout the entire life cycle of artificial intelligence, so as to guide scientific researchers to develop responsible artificial intelligence. Speed ​​up labor skills training. Encourage digital skills training institutions to cooperate in depth with enterprises in vertical subdivisions to develop targeted training courses to enhance workers’ digital skills and maximize Sugar Daddy Adapt to the needs of technological development; at the same time, encourage the strengthening of cooperation between universities and enterprises, set up relevant professional courses and practical teaching, and cultivate compound talents that adapt to the development needs of the three-dimensional integration of humans, machines, and things.

(Authors: Pan Jiaofeng and Wu Jing, Institute of Science and Technology Strategy Consulting, Chinese Academy of Sciences, School of Public Policy and Management, University of Chinese Academy of Sciences. Contributor to “Proceedings of the Chinese Academy of Sciences”)