New technologies: technological mega-trends that are changing the world

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Mega trends are processes of change that will have a long-term and lasting impact on our society.

This change is becoming ever faster and more complex. Particularly in the technological field. Advancing digitization and the further development of artificial intelligence are current examples of this. You can see these developments on the new Roulette Games at Hell Spin Casino.

The Mega Trend Map makes the complex and dynamic changes visible and easier to understand. Mega trends provide information. On which developments will influence our society in the long term.

1. artificial intelligence

Whether “digital personal assistants” or “smart speakers” such as Apple’s HomePod, Amazon’s Echo or Google’s Assistant. More and more AI-based systems are already conquering our everyday lives.

And AI research continues to make rapid progress.

Neural networks and deep learning are making AI algorithms capable of learning. And cognitive computing simulates human thought processes. So that complex tasks can be solved independently.

The deeper AI penetrates our everyday lives. The clearer the potential dangers of AI-based processes become.

This is particularly evident in predictive analytics. Where AI systems support us humans in making decisions. When granting loans or in application procedures). Many algorithms reinforce prejudices that they picked up during the development phase.

This makes trust in AI, or AI trustability, a decisive factor for the future acceptance of the technology.

2. data era

The amount of data we produce worldwide is growing exponentially. Whether living beings, devices or machines – almost all objects can be recorded and tracked.

The intelligent use of such data is becoming an important challenge. It is not only important to ensure its security, but also to handle it with understanding.

The following developments will shape the data era:

  • The appropriate handling and correct interpretation of collected data will become a standard qualification. Data literacy will become the ability to handle large volumes of data competently.
  • Smart data solutions reduce the amount of data to useful and high-quality data even before it is analyzed. 
  • Data-based insights can be used for targeted user profiling. Hyper-personalization of content and services is designed to better understand individual users.

Thanks to open data, a lot of data is made openly accessible and can be used freely.

Approaches such as decentralized computing are shifting. Computing power via the Internet infrastructure and data volumes can be processed faster.

Quantum computers promise even faster analysis of data volumes in the future.

Distributed ledger technologies such as blockchain open up new business and service models. They also enable tamper-proof e-voting systems and the management of digital rights.

Cybersecurity will play a central role in all of this in the future. The protection of privacy and property will become a constant race.

3 Engineered evolution

Humans are expanding their natural abilities and senses through technology.

Developments range from wearables. That can be worn to human enhancement technologies. That are permanently connected to the body, for example as implants. This not only removes personal limitations, but also enables improved sensory perception.

In bioengineering, the principles of engineering and natural sciences are transferred to the tissues, cells and molecules of natural systems. In particular, genetic technologies such as Crispr-Cas promise not only to cure diseases, but also to develop new resistant plant varieties or animals with specific characteristics.

Brain-computer interfaces enable a bidirectional exchange of information between man and machine and also lead to a fusion on a mental level.

4. exponential industries

Industrial and manufacturing processes are undergoing exponential change:

  • 3D printing is increasingly overcoming the limitations of conventional production methods. This allows almost unlimited freedom of design.
  • Machine Sensi enables machines to record their environment using technologies and sensors.
  • Nano engineering allows materials to be manipulated at an atomic level. This gives them new functions and properties.
  • Smart materials adapt to new environmental conditions. This expands the functional spectrum of a material or makes it easier to recycle or compost.
  • Robotics is enabling more and more automation of production tasks that were previously carried out by humans.
  • Additive manufacturing, decentralized production and a prescriptive analysis of demand enable flexible production.
  • Value chains are increasingly becoming resilient supply chains. That are resilient thanks to agility, transparency and sustainability and can be relocated quickly.
  • As a result, more and more innovations are emerging at the interfaces of previously separate industries. The so-called overlap markets. Formerly separate industries are thus becoming drivers of innovation.

5 Intelligent Infrastructure

The infrastructure of the future faces major challenges – particularly in terms of mobility and energy supply.

The following developments are on the horizon for energy supply:

  • Intelligent power grids, smart grids will automatically control the generation, consumption and storage of energy.
  • The energy transition will result in more and more energy storage systems.
  • Green IT supports energy saving through suitable technologies and the optimization of energy and resource consumption in the production, operation and recycling of technical devices.

Our mobility will also continue to change:

  • Connected mobility brings together a wide variety of mobility solutions. So that people can seamlessly use different services.
  • Autonomous systems such as self-driving cars and other autonomous. Driving and flying systems will prevail.
  • Our infrastructure will become increasingly intelligent. Advanced network tech is a prerequisite for this. It includes technologies such as 5G, NFC, lasers, but also the transmission of energy.
  • High-performance city operating systems will enable us to create smart cities. In which information and communication technologies interact with sensor networks. To control the flow of goods, people and traffic or energy consumption.

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