5G | Science & Technology for UPSC CSE PDF Download

Introduction to 5G

  • 5G is the next generation of mobile broadband that will eventually replace, or at least augment 4G LTE connection.

Features and benefits of the 5G technology

  • Operate in the millimeter wave spectrum (30-300 GHz) which have the advantage of sending large amounts of data at very high speeds.
  • Operate in 3 bands, namely low, mid and high frequency spectrum.
  • Reduced latency will support new applications that leverage the power of 5G, the Internet of Things (IoT), and artificial intelligence.
  • Increased capacity on 5G networks can minimize the impact of load spikes, like those that take place during sporting events and news events.
    1G to 5G
    1G to 5G

Significance of the Technology

India’s National Digital Communications Policy 2018 highlights the importance of 5G when it states that the convergence of a cluster of revolutionary technologies including 5G, the cloud, Internet of Things (IoT) and data analytics, along with a growing start-up community, promise to accelerate and deepen its digital engagement, opening up a new horizon of opportunities.

What are the potential health risks from 5G?
To date, and after much research performed, no adverse health effect has been causally linked with exposure to wireless technologies.

  • Tissue heating is the main mechanism of interaction between radiofrequency fields and the human body. Radiofrequency exposure levels from current technologies result in negligible temperature rise in the human body.
  • As the frequency increases, there is less penetration into the body tissues and absorption of the energy becomes more confined to the surface of the body (skin and eye).

Provided that the overall exposure remains below international guidelines, no consequences for public health are anticipated.

What are the international exposure guidelines?
Two international bodies produce exposure guidelines on electromagnetic fields. Many countries currently adhere to the guidelines recommended by:

  • The International Commission on Non-Ionizing Radiation Protection.
  • The Institute of Electrical and Electronics Engineers, through the International Committee on Electromagnetic Safety.

These guidelines are not technology-specific. They cover radiofrequencies up to 300 GHz, including the frequencies under discussion for 5G.

International efforts- International Electromagnetic Fields (EMF) Project

WHO established the International Electromagnetic Fields (EMF) Project in 1996. The project investigates the health impact of exposure to electric and magnetic fields in the frequency range 0-300 GHz and advises national authorities on EMF radiation protection.

1. Hurdles in Rolling Out 5G Technology

  • Enabling critical infrastructures: 5G will require a fundamental change to the core architecture of the communication system. The major flaw of data transfer using 5G is that it can't carry data over longer distances. Hence, even 5G technology needs to be augmented to enable infrastructure.
  • Financial liability on consumers: For transition from 4G to 5G technology, one has to upgrade to the latest cellular technology, thereby creating financial liability on consumers.
  • Capital Inadequacy: Lack of flow of cash and adequate capital with the suitable telecom companies (like Bharti Airtel and Vodafone Idea) is delaying the 5G spectrum allocation.

2. Utility of 5G Applications: Combined with IoT, cloud, big data, AI, and edge computing, 5G could be a critical enabler of the fourth industrial revolution.

  • For India: 5G networks could improve the accessibility of services such as mobile banking and healthcare, and enable exponential growth in opportunities for unemployed or underemployed people to engage in fulfilling and productive work. For this Government has rolled out enabling policies.

3. 5G Enabling Policy

  • India’s National Digital Communications Policy 2018 highlights the importance of 5G when it states that the convergence of a cluster of revolutionary technologies including 5G, the cloud, Internet of Things (IoT) and data analytics, along with a growing start-up community, promise to accelerate and deepen its digital engagement, opening up a new horizon of opportunities.
    • It aims to reach 100% teledensity, high-speed internet highways and delivery of citizen-centric services electronically.

4. Global Progress on 5G

  • Global telecom companies have already started building 5G networks and rolling it out to their customers in many countries:
    • 5G had been deployed in 50 cities in the United States.
    • South Korea has rolled out 5G to 85 cities.
    • Japan and China have too started 5G mobile service on a trial basis.
The document 5G | Science & Technology for UPSC CSE is a part of the UPSC Course Science & Technology for UPSC CSE.
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FAQs on 5G - Science & Technology for UPSC CSE

1. What is 5G technology?
Ans. 5G technology refers to the fifth generation of wireless communication technology. It is designed to provide faster and more reliable internet connectivity compared to previous generations. It offers higher data transfer speeds, lower latency, and increased network capacity, enabling advancements in various fields such as Internet of Things (IoT), autonomous vehicles, virtual reality, and more.
2. What are the main advantages of 5G technology?
Ans. The main advantages of 5G technology include faster data transfer speeds, reduced latency, increased network capacity, and improved reliability. With 5G, users can experience seamless streaming of high-definition videos, faster downloads and uploads, real-time gaming with minimal lag, and enhanced connectivity in crowded areas. Additionally, 5G enables the Internet of Things (IoT) ecosystem to thrive, connecting a vast number of devices simultaneously.
3. How does 5G differ from 4G?
Ans. 5G differs from 4G in several ways. Firstly, 5G offers much faster data transfer speeds compared to 4G. While 4G can provide speeds up to 100 Mbps, 5G can achieve speeds of several gigabits per second. Secondly, 5G has significantly lower latency, reducing the delay in data transmission. 4G typically has a latency of around 50 milliseconds, whereas 5G aims to bring it down to just a few milliseconds. Lastly, 5G has a higher network capacity, allowing more devices to connect simultaneously without compromising performance.
4. How will 5G impact various industries?
Ans. 5G technology is expected to have a profound impact on various industries. It will revolutionize sectors such as healthcare, transportation, manufacturing, and entertainment. For example, in healthcare, 5G can enable remote surgeries and real-time patient monitoring. In transportation, it can facilitate the development of autonomous vehicles and enhance traffic management systems. In manufacturing, 5G can improve efficiency and enable the widespread adoption of smart factories. Similarly, in entertainment, 5G can enhance virtual reality experiences and enable high-quality streaming on mobile devices.
5. Will 5G replace 4G completely?
Ans. While 5G is expected to become the dominant wireless technology, it is unlikely to replace 4G completely in the near future. 4G will continue to be used for some time due to its widespread infrastructure and compatibility with existing devices. However, as 5G networks expand and more devices become 5G-compatible, the usage of 4G will gradually decrease. Eventually, 5G is expected to replace 4G as the primary wireless technology, offering superior connectivity and capabilities.
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