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军工叠加储能,军工叠加新能源叠加芯片股票

发布时间:2023-12-09-06:43:00 来源:网络 比特币基础 区块   军工   燃料电池

军工叠加储能,军工叠加新能源叠加芯片股票

军工叠加储能、军工叠加新能源叠加芯片股票拓展,这三个关键词都是技术领域的热门话题,它们在未来发展中将扮演着重要的角色。下面,我们就来介绍这三个关键词。

军工叠加储能:军工叠加储能技术是指将军工领域的技术应用于储能领域,将储能技术应用于军工领域,实现军工叠加储能。军工叠加储能技术可以将储能技术应用于军工领域,提高军工储能设备的能量利用率和安全性,提高军工领域的能源利用效率。军工叠加储能技术可以实现储能设备的智能化管理,增强储能设备的安全性,提高储能设备的可靠性,实现储能设备的节能减排。

军工叠加新能源叠加芯片:军工叠加新能源叠加芯片是将军工领域的技术应用于新能源叠加芯片领域,将新能源叠加芯片技术应用于军工领域,实现军工叠加新能源叠加芯片。军工叠加新能源叠加芯片技术可以提高军工领域新能源叠加芯片的能量利用率和安全性,提高军工领域新能源叠加芯片的能源利用效率。新能源叠加芯片可以实现新能源叠加芯片的智能化管理,增强新能源叠加芯片的安全性,提高新能源叠加芯片的可靠性,实现新能源叠加芯片的节能减排。

芯片股票拓展:芯片股票拓展是指将芯片技术应用于股票拓展领域,实现芯片股票拓展。芯片股票拓展可以提高股票拓展的能量利用率和安全性,提高股票拓展的能源利用效率。芯片股票拓展可以实现股票拓展的智能化管理,增强股票拓展的安全性,提高股票拓展的可靠性,实现股票拓展的节能减排。

军工叠加储能、军工叠加新能源叠加芯片股票拓展,这三个关键词都是技术领域的热门话题,它们在未来发展中将扮演着重要的角色。军工叠加储能技术、军工叠加新能源叠加芯片技术、芯片股票拓展技术都是未来发展的重要技术,它们可以提高能源利用效率,提高能量利用率和安全性,实现节能减排。


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⑴ "SAECCE Agenda Spoiler" New Energy Vehicle Big Data Application - Opportunities and Integration

Introduction

The utilization of new energy vehicle big data is not only Huge data dividends have been released within the automobile industry, and it will surely become an important link between the automobile industry and other industries in the future. As my country's "new infrastructure" continues to advance, high-speed and low-latency 5G network coverage and the construction of new energy vehicle charging piles are bound to accelerate the development of new energy vehicles and data blowout. It can be seen that the application of big data technology in new energy vehicles will accelerate the automotive industry's move toward informatization and intelligence, and the integration of new energy vehicle big data and power and other industries will also create a huge blue ocean market.

The 2020 China Automotive Engineering Society Annual Conference and Exhibition (SAECCE 2020) will be held at the Shanghai Automotive Convention and Exhibition Center from October 27-29, 2020. So far, the SAECCE Annual Conference has been successfully held for 26 times, becoming one of the benchmark events in the automotive industry held in China.

With the theme of "New Energy Automobile Big Data Application - Integration and Opportunities", this special branch will invite authoritative experts at home and abroad to give keynote speeches and interactive discussions. By focusing on several topics such as "Research on Global Optimized Energy Management Methods for New Energy Vehicles under the Background of Big Data", we will jointly exchange mainstream technologies and latest development trends in big data applications for new energy vehicles, accelerate the maturity of big data technology for new energy vehicles, and increase Radiation and driving ability of the automobile industry.

N01: New Energy Vehicle Big Data Application - Opportunities and Integration

Meeting Time & Location

October 27, 2020 13:30-18: 00

Shanghai Automobile Exhibition Center

Co-organizer

School of Automotive Engineering, Jilin University

Conference Chairman

Wang Zhenpo

Doctor/Professor/Doctoral Supervisor, Director of the National Engineering Laboratory for Electric Vehicles at Beijing Institute of Technology, Secretary-General of the National Big Data Alliance for New Energy Vehicles

Wang Zhenpo, Professor, Doctoral Supervisor, Director of the National Engineering Laboratory for Electric Vehicles at Beijing Institute of Technology and Secretary-General of the National Big Data Alliance for New Energy Vehicles. Selected into the Ministry of Education's "New Century Outstanding Talents", Beijing's "One Hundred Leading Talents in Science and Technology in Beijing", the Ministry of Science and Technology's "Young and Middle-aged Leading Talents in Science and Technology Innovation", the National "Ten Thousand People Plan" and the "Twelfth Five-Year Plan" Advanced Science and Technology Work in the Machinery Industry By". He has presided over key projects of the National Natural Science Foundation of China (Thermal Runaway and Safety Management of Power Battery Systems), National Key R&D Program Projects (Integration and Control of Distributed Drive Electric Vehicles), National 863He has 12 vertical projects such as planned projects (design integration and management of electric vehicle charging and swapping facilities), published 29 SCI papers as the first author or corresponding author (3 ESI highly cited papers), and more than 60 EI papers as the first author. The first author has published (translated) 4 books ("Electric Vehicle Power Battery System and Application Technology" was selected as the "Twelfth Five-Year Plan" national-level planning textbook for higher education undergraduates), and has authorized 24 invention patents to the first inventor. Won 1 second-class National Science and Technology Progress Award, 3 first-class provincial and ministerial scientific research awards, 2 second-class awards (1 ranked first), 1 first-class China Automotive Industry Science and Technology Award (ranked first), Beijing 1 first-class municipal teaching achievement award.

Chairman of the Joint Meeting

Xu Nan

PhD/Associate Professor/Doctoral Supervisor, School of Automotive Engineering, Jilin University

Xu Nan, Jilin Associate professor and doctoral supervisor in vehicle engineering at the University's School of Automotive Engineering, PhD in Engineering, postdoctoral fellow, director of the National Big Data Alliance for New Energy Vehicles, member of the Institute of Electrical and Electronics Engineers (IEEE), currently serving as Applied Energy, IEEE Transaction on Vehicular Technology, IEEE Transaction Review expert for international journals such as on Power Electronics, International Journal of Electronics and SAE Journal. He has published more than 20 papers in the field of new energy vehicles, 10 authorized invention patents, and 13 software copyrights. As the project leader, he undertakes National Natural Science Foundation Youth Fund Project, National Postdoctoral Science Foundation General Project, Jilin Province Science and Technology Development Plan Project, and corporate cooperative research projects. Won the National Ministry of Education's New Doctoral Student Award, and was selected into the China Scholarship Council's International Clean Energy Top Innovative Talent Training Project (iCET2019), Jilin University's Key Training Program for Outstanding Young Teachers, etc.

Mainly researches urban intelligent transportation system planning and evaluation, vehicle global optimization energy management, human-vehicle-road system data mining and analysis, new energy vehicle power system control and evaluation, open winding motor control, Intelligent assisted driving.

01

Preview the introduction of the speakers and summary of the speech

Research on the application of big data + blockchain in the traceability management of new energy vehicle power batteries

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Liu Peng

Associate professor at Beijing Institute of Technology, master's tutor, deputy secretary-general of the New Energy Vehicle Big Data Alliance

Key points of the speech

1. The development status of new energy vehicle power batteries.

2. Introduction to the construction and application status of new energy automobile power battery traceability management platform.

3. The application status and latest research of big data and blockchain technology in the traceability management of new energy vehicles and power batteries.

4. Problems and challenges faced by power battery data management.

Abstract of the speech

Overview the current status of data research on new energy vehicles and power battery development in recent years, as well as the construction and application of big data platforms, and provide an overview of the new applications of big data and blockchain technology. The application and research on power battery traceability management of energy vehicles are introduced, and the challenges faced in power battery data management are analyzed and prospected.

A data-based evaluation method of energy consumption of electric vehicles in all operating conditions

Yuan Xinmei

Professor, School of Automotive Engineering, Jilin University

Key points of the speech

1. The need for energy consumption evaluation of electric vehicles.

2. A new type of electric vehicle energy consumption model and data-based energy consumption evaluation method.

3. Simulation experiment results and discussion.

4. An application of this method in highway charging station planning.

Speech summary

Energy management strategy for intelligent connected new energy vehicles

Song Ke

Fuel cell innovation research at Tongji University School of Automotive Director

Key points of the speech

1. Overview of intelligent connected cars.

2. Communication technology for intelligent connected cars.

3. The development history of energy management technology for intelligent connected new energy vehicles.

4. Development trend of intelligent networked new energy automobile energy management technology.

Speech summary

Intelligent networked vehicles and new energy vehicles will be two important directions for the development of future automotive technology. Today's society and people have put forward higher requirements for the coordinated development of these two technologies. By using intelligent network technology (ICT), new energy vehicles can interact with the outside world (such as other driving vehicles, road infrastructure, the Internet, etc.) in real time. This is the so-called vehicle-to-everything system (V2X). Based on in-depth analysis of various traffic information, the vehicle can identify current driving conditions and effectively predict future driving conditions, thereby achieving real-time optimization of energy management of the vehicle power system to meet vehicle driving needs under different driving conditions. This can not only greatly improve the fuel economy of new energy vehicles, but also effectively alleviate traffic congestion problems. Introducing the application of intelligent network technology in new energy vehicles in recent years, based on intelligent networkThe research status of new energy vehicle energy management strategies of connected technology and the trend of coordinated development of intelligent connected technology and new energy vehicle technology.

Research on the application of big data in safety risk prevention and control of new energy vehicles


Zhang Zhaosheng

Beijing Institute of Technology Mechanical Engineering With Associate Professor of the School of Vehicles

Key points of the speech

1. Statistical analysis of the safety situation of new energy vehicles.

2. Research on new energy vehicle safety warning and prevention and control methods.

3. Data analysis of typical accident cases.

Speech summary

Based on the data of the new energy vehicle national supervision platform, we statistically analyze vehicle alarms and accident vehicle related situations, analyze the factors affecting the safety of new energy vehicles from the perspective of big data, and propose new Energy vehicle safety early warning and prevention and control methods, and analyze new energy vehicle early warning situations with specific accident cases, providing technical support for new energy vehicle safety management and control and the healthy development of the industry.

Globally optimized energy management method for new energy vehicles under the background of big data

Method research


Xu Nan< /p>

Associate professor at the School of Automotive Engineering, Jilin University, doctoral supervisor, director of the New Energy Vehicle Big Data Alliance

Key points of the speech

1. Current research status of energy management methods for new energy vehicles .

2. Opportunities and challenges faced by global optimization energy management methods in the context of big data.

3. The establishment and application of the three-layer global optimization architecture of "information-matter-energy".

4. The application prospects of the global optimized energy management platform.

Speech summary

Overview the current research status of new energy vehicle energy management methods in recent years, introduce the opportunities brought by big data for global optimized energy management, and clarify the requirements of global optimized energy management methods. Facing the problems and challenges, a three-layer global optimization architecture of "information-matter-energy" is proposed to solve the practical application problems of the global optimization energy management method. Finally, relevant suggestions and prospects are put forward for the future application of the global optimized energy management platform in regional transportation energy consumption optimization.

Exploration and research on data-driven lithium-ion power battery management algorithm

Han Xuebing

Assistant researcher, School of Vehicles and Transportation, Tsinghua University

Key points of the speech

1. Battery management based on cloud big data is the future development direction.

2. Based on data, it canTo effectively realize battery safety warning.

3. Battery life estimation can be effectively realized based on data.

Speech summary

In the process of using new energy vehicles, as the battery is used, the battery performance continues to decay, the inconsistency between the cells in the battery pack continues to increase, and the consistency problem It may also cause the battery pack to fail, causing safety issues. With the widespread application of cloud data, electric vehicle data can be monitored and recorded. Based on these data, the consistency of the battery pack can be effectively evaluated, the battery life can be estimated, battery safety warning can be carried out, and safer and more reliable battery management can be achieved.

Electric vehicle batteries based on energy storage applications under the background of big data

Secondary utilization

Ban Boyuan

Chinese Academy of Sciences Hefei Associate Researcher, Institute of Physical Sciences

Key points of the speech

1. The necessity of secondary use of decommissioned electric vehicle batteries.

2. The nature of the attenuation phenomenon of electric vehicle lithium batteries.

3. SOH estimation, the key technology for secondary utilization of retired electric vehicle batteries.

4. Domestic application examples of secondary utilization of retired electric vehicle batteries.

Speech summary

In recent years, the electric vehicle (EV) industry has developed rapidly. In order to ensure the dynamic performance and driving safety of the vehicle, electric vehicle batteries need to be recharged after a certain service time or performance degradation. replace. The secondary utilization of retired vehicle batteries is the use of retired electric vehicle battery packs that retain sufficient performance for use in specific energy storage systems. In this report, the relevant laws and regulations on the secondary use of lithium-ion vehicle batteries are sorted out, and relevant methods of SOH estimation are collected. In particular, under the current big data background, an SOH estimation method integrating electric vehicle energy management systems is proposed and listed. Possible secondary use scenarios for retired car batteries. Finally, based on the current status of secondary utilization of retired electric vehicle batteries in China, relevant suggestions and prospects are put forward.

Opportunities and challenges brought about by the data integration of new energy vehicles and the external environment

Challenges

Wang Chuanjiu

Beijing Hongda Jiutong Technology Chairman of Development Co., Ltd.

Key points of the speech

1. Big data allows new energy vehicles to see further and understand more. At the same time, we also have a deeper understanding of vehicles.

2. The relationship between vehicles and road traffic systems.

3. What can big data bring us?

4. Several big data application scenarios.

Speech Summary

New EnergyThe exchange of big data between source cars and the external environment will enable vehicles to better integrate into the road traffic system and improve the efficiency of the entire traffic system. At the same time, all aspects of vehicle design, production, sales, and quality control will play a different role than in the past. .

About SAECCE 2020

The 2020 Society of Automotive Engineers of China Annual Conference and Exhibition (SAECCE 2020) will be held at the Shanghai Automotive Convention and Exhibition Center from October 27-29, 2020. We sincerely invite Corporate executives, technical leaders, senior experts and scholars, and scientific and technological workers in the automotive and related industries participated in the meeting. With the theme of "Auto +, Collaborative Innovation", SAECCE focuses on new energy vehicle technology, intelligent connected vehicle technology, and key common automotive technologies, and conducts in-depth discussions on how to quickly promote technological innovation and reshape the new industrial landscape.

The Society of Automotive Engineering of China Annual Conference and Exhibition (SAECCE) has been successfully held for 26 times and has become one of the benchmark events in the automotive industry held in China. In addition, the 7th International Intelligent Connected Vehicle Technology Annual Conference (CICV 2020), originally scheduled to be held in Beijing in May this year, will be held jointly with the 2020 China Automotive Engineering Society Annual Conference and Exhibition (SAECCE 2020).

SAECCE2020 will organize a 1-day (2 sessions) plenary session, more than 50 special sessions, and more than 20 (paper exchange) technical sessions. The exhibition area is about 10,000 square meters and is expected to attract more than 3,000 people from government agencies. Representatives from industry organizations, vehicle companies, parts companies, universities and research institutes attended the meeting and visited.

We welcome enterprises, universities, scientific research institutes and other institutions, as well as science and technology workers to actively participate through group or individual registration!

02

SAECCE 2020 schedule structure

⑵ BAIC New Energy will launch more than 40 new cars in the next decade

China Although the automobile industry started late, under the guidance of national policies, new energy vehicles were definitely the first to enter the industry. Many people in the industry also regard it as a major opportunity to achieve "overtaking on corners." As the leader, BAIC New Energy has been struggling for ten years. From the real "breakthrough" in 2013 to 2014, it advanced again in 2018. BAIC New Energy's current cumulative production and sales have exceeded 500,000 vehicles, for 7 consecutive years. Become the domestic pure electric vehicle sales champion.

On January 15, at the BAIC New Energy Global Partner Conference, Ma Fanglie, deputy secretary of the BAIC New Energy Party Committee and general manager, announced: Officially bidding farewell to the Weilan Journey 1.0 era and creating a Weilan Journey 2.0 new era. He also said that in the next ten years, BAIC New Energy will enrich new energy vehicle products that deeply integrate electrification and intelligent connectivity, and createMore than 3 exclusive platforms for electric vehicles, development of 11 new energy vehicle product series and more than 40 new products.

This article comes from the author of Autohome Chejiahao and does not represent the views and positions of Autohome.

⑶ Research on energy blockchain and dual-carbon strategy | Five common renewable energy sources

Five common renewable energy sources

Today, benefits Due to the continuous advancement of science and technology and production technology, humans have developed more and more diverse green energy sources in an effort to get rid of dependence on fossil fuels. Below is an introduction to five common renewable energy sources.

Solar power generation

Solar energy is a renewable energy source that has been playing a huge role in human production and life for more than 5,000 years. The uses of solar energy have changed greatly over time, from heating to powering satellites in space. However, there is still a lack of highly energy-efficient and low-priced solar power generation equipment in homes and various buildings.

The way a solar panel works is very simple, it is a panel made up of millions of solar cells. When the sun shines on these panels, the solar radiation energy is directly or indirectly converted into electrical energy through the photoelectric effect or photochemical effect by absorbing sunlight. This energy can power homes and is very affordable.

Wind power

When people look at the sea, they will find many wind turbines on the sea level. While they may not be the most attractive, they are very efficient. Because Europe and some regions have long stretches of coastline, wind power is more common in these places.

Wind turbines are like the air intakes of jet engines. When air enters, it first encounters a set of fixed blades, which direct the air into a set of rotating blades. The air pushes against the blades and emerges on the other side, where the air flows more slowly than outside the turbine. The screen is shaped so that it directs the relatively fast-moving air outside into the area behind the rotor. Fast-moving air accelerates slow-moving air, causing the area behind the turbine blades to become low-pressure to draw more air past them.

Hydroelectric power

Hydroelectric power uses water with potential energy from high places such as rivers and lakes to flow to low places, converting the potential energy contained in it into kinetic energy of water turbines. Then the water turbine is used as the driving force to drive the generator to generate electrical energy. The height of the water, the weight of the water, and even the speed at which the water flows can be used to generate electricity.

The large number of rivers and different types of water flow on Earth means that we can install hydroelectric power stations in large numbers.

Biomass energy

The application of biomass energy is becoming more and more common in daily life. Biodiesel can be used for automobiles,Buses and commercial vehicles power buses and commercial vehicles; biomass generators power homes, and new biomass energy sources are discovered every day.

Geothermal energy

Geothermal energy is natural thermal energy extracted from the earth's crust. This energy comes from the lava inside the earth and exists in the form of heat. It is the energy that causes volcanic eruptions and earthquakes. Because radioactive particles slowly decay, geothermal energy is a renewable energy source. And as long as the earth is still rotating, geothermal energy will always exist, and there is no need to worry about them running out.

National Energy Information Platform contact number: 010-65367702, email: [email protected], address: People’s Daily, No. 2 Jintai West Road, Chaoyang District, Beijing

⑷ Chongqing: By 2025, more than 240,000 charging piles will be built to cover all new residential areas

Bitauto News Recently, it was learned from official channels that Chongqing City issued the "Chongqing City Promotes Intelligent Networked New Energy Vehicle Infrastructure Construction and Service Actions" Plan (2022-2025)" mentioned that by 2025, more than 240,000 charging piles will be built in the city, and all new residential areas will be covered.



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⑸ What highlights can make the Beijing Winter Olympics the most successful one?

The 2022 Beijing Winter Olympics is in full swing, and the incomparable enthusiasm of athletes has also made this winter Olympics the most successful. The Olympic Games shine brightly. For the Chinese people, it is the first time in history that they have witnessed the world's highest level of ice and snow competition at their doorstep.

So, what are the highlights of this Olympic Games that can be called the most successful one.

Highlight 1: Green Olympics

Comprehensively implement green Olympics initiatives, fully renovate and utilize original Olympic venues such as the Bird's Nest, Water Cube, and Wukesong, and reduce the number of new venues from the design source Regarding the impact on the environment, the National Speed ​​Skating Stadium "Ice Ribbon" has become the first avenue speed skating stadium in the world to use a carbon dioxide transcritical direct cooling system to make ice, with carbon emissions approaching zero; all venues for the Winter Olympics meet green building standards. Conventional energy uses 100% green electricity. Energy-saving and clean energy vehicles accounted for 84.9% of all vehicles guaranteed during the Winter Olympics, the highest number in any previous Winter Olympics. At the opening ceremony, "no fire" was used instead of "light", and "light fire" was used instead of raging fire, which fully reflected low-carbon and environmental protection. It can be said that this is a new starting point for the Green Olympics.

Having said so much, I can’t help but feel proud of being a Chinese. This is a reflection of a country’s comprehensive national strength. The convening of the Beijing Winter Olympics has allowed people around the world to see earth-shaking changes. We are moving closer to our own dream of China's great rejuvenation. I believe that day will come soon.

⑹ Akio Toyoda speaks out for the first time: This Olympics is the Olympics to "defeat the new coronavirus epidemic"

Akio Toyoda speaks out for the first time: This Olympics is the Olympics to "defeat the new coronavirus epidemic"

< p>In the 1988 Seoul Olympics, kimchi went out of Korea and into the world.

For the 2020 Tokyo Olympics, Toyota has more ambitions than pickles.

Just now, Toyota President Akio Toyoda responded to questions about the postponement of the Olympic Games at the launch ceremony of Japan's new YARIS:

As the new crown epidemic becomes increasingly severe, I express my sincere gratitude to all parties. I would like to express my sincere gratitude and deep respect for making such a difficult decision!

The original spirit of the Olympic Games was the "Revival Olympics", and Fukushima Prefecture was set as the starting point for the torch relay. Including the Great East Japan Earthquake, it is athletes who give us courage and strength in times of crisis. They give us emotion and hope.

I think the players will also have many thoughts of their own regarding such a decision.

As a contestant, your best form is time-limited. They prepared for this time of the summer, so maybe some people will be disappointed and some people will readjust.

I think no matter what, this decision can at least provide a clear goal for all contestants.

In addition to the "reviving Olympics", this Olympics is also the "Olympics to defeat the new coronavirus epidemic". The Northeastern region of Japan will also participate. "Olympics with the people", "Olympics loved by the world", as a global partner, we will provide all-round support.

The original title of the following article: "Toyota's "Big Truth" and "Small Truth""

New energy planning: Based on Toyota's own new energy vehicles The plan is to launch 10 pure electric models one after another starting from 2020; sales of pure electric vehicles will reach 1 million in 2025; and the target of selling 5.5 million electric vehicles will be completed five years ahead of schedule. Just yesterday (March 25), the BYD Toyota joint venture was registered and planned to be put on the market before 2025. This is a top priority for Toyota to realize its new energy plan five years in advance.

Hydrogen fuel: Toyota's obsession with "hydrogen fuel" is obvious to all, and it has invested heavily in research and development and promotion. The Olympic Games is an important stage for the promotion of its plan. Toyota positions hydrogen energy as "the clean and environmentally friendly energy of the future" and has developed hydrogen fuel cell vehicles (FCEV) for this purpose.

Previously, Toyota and Hyundai cooperated to develop hydrogen-powered trucks. On the 23rd of this month, Toyota Motor and Hino Motors jointly released a news that the two parties will jointly develop a heavy-duty fuel cell truck and will begin actual road testing. The truck powertrain is equipped with two Toyota fuel cell stacks based on technology developed by Toyota for the Mirai (Toyota Hydrogen Fuel Cell Vehicle).

Smart City: with HinoOne day after announcing the development of heavy-duty fuel cell trucks, Toyota Motor and Nippon Telegraph and Telephone Company (NTT) signed an agreement on March 24, agreeing to jointly develop smart cities and invest 200 billion yen (approximately US$1.8 billion) in each other. Toyota plans to transform 175 acres (about 0.71 square kilometers) of a former car factory in Japan into a "future model city" powered by hydrogen fuel cell technology.

To put it simply, Toyota is on its own path. The Olympics are a world-class stage show for companies. What's more, the 2020 Tokyo Olympics have not been cancelled, just postponed. If there is no black swan again in 2020, Toyota's status as a top sponsor will remain unchanged and it will run and dance as usual.

By then, the technologies we have listed and Toyota's ambition to transform a travel service provider will be revealed one by one as planned.

Qingdong Observation:

"Small truth" will not ultimately affect the "big truth".

This article comes from the author of Autohome Chejiahao and does not represent the views and positions of Autohome.

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