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Access to 5G in bringing more technology jobs in rural areas

 The fifth-generation (5G) mobile networks are expected to be the next leap in mobile broadband. The peak download speed will be high as 20 gigabits per second which will further enable specialized tasks including remote precision medicine, connected cars, augmented reality as well as an array of IoT applications. It is identified that rural electric cooperatives are working excellently, which can further impact the deployment of the 5G network in rural areas. Proper and successful deployment of 5G network in rural areas will improve mobile broadband and will further support the internet of things which will be quite beneficial for bringing more technology jobs in rural areas (Chochliouros et al., 2017). Moreover, the 5G network will influence small businesses in rural areas and will further improve productivity which can boost resilience for rural businesses.

 It is identified that access to 5G technology in rural areas will lower latency and will increase the speed as well as reliability, and thus 5G helps in bringing closer virtual reality as well as augmented reality applications. Due to the use of such types of applications, a number of technical job opportunities arise in the entertainment, manufacturing, gaming, tourism as well as retail industry (Kumar et al., 2020). The small business that is present in the rural areas, including wedding florists, fashion retailers as well as hairdressers, also leverages AR/VR technologies for managing the work function of the clients quite well. Furthermore, it is identified that with the access of the 5G technology, the business can use IoT technology that further raises the need of using an array of applications which further arises technology jobs within the rural areas for tracking, monitoring, optimizing as well as communicating with the help of devices (Schneir et al., 2019).

The rural business will be able to get higher device capacity, and as a result, the business can be able to handle a predefined number of devices quite well. As a result, the organization can be able to handle increased loads of the business. During the deployment of the 5G network, more rural people will get the opportunity of working while setting up the network. Additionally, maintenance of the network will also require the hiring of individuals from the rural areas, which will also increase the chances of technical job opportunities for the residents of the rural areas (Thakur & Prasad, 2021).  The 5G technology can be identified as one of the powerful tools for enhancing the job opportunities for the people who are living in rural areas. Even the farmers are using different types of technologies for undertaking sustainable farming in order to find the correct way for feeding as well as sustaining the planet quite well. Additionally, it is identified that the use of 5G also helps in improving the transportation as well as the warehousing industry by making the entire procedure of the industry automatic, which is possible only because of the technicians who are hired for managing the technical jobs (Taheribakhsh et al., 2020).

Breaking the divide between urban and rural areas

 One of the biggest issues that we are experiencing is due to the fast rate of urbanization in both the developed as well as developing nations, which further resulted in the migration of rural population in urban cities for having a better life. This generally uphill the task for the local council as well as government to properly plan and provide very much quality services to its own residents (Koratagere Anantha et al., 2020). As information and communication, technology has generally impacted the lives of humans in both urban as well as rural areas; therefore, it is considered as one of the perfect ways for breaking the divide that exists between the urban as well as rural areas. The work of rural electric cooperatives is generally impacting the deployment of the 5G network, and it is hoped to reduce the gap that exists between the rural and urban lifestyles of the people (Skouby, 2021).

Most of the countries suffer due to the digital divide when it mainly comes to medical services as well as facilities that are available in the metro in comparison to the services that are present in rural areas. It is identified that timely diagnosis can generally prevent hospital admissions, and it is identified that the rate of which is around 250% higher in rural areas over cities due to improper access to healthcare. The deployment of 5G network will enable real-time interaction between the doctors as well as patients and will also help in the proper use of different types of technologies, including AR/VR/3D imaging, as they will help in providing proper monthly tools for assisting doctors in providing proper as well as accurate diagnosis (Chiaraviglio et al., 2017). Moreover, 5G can be helpful in offering different types of facilities related to healthcare professionals for operating quite remotely using robot prosthetics. Additionally, it is identified that deployment of the 5G network in rural areas will further help in sustainable farming, improving lifestyle as well as helps in providing world-class education, which further can improve the quality of life for the rural population (Aranda et al., 2021).

 The rural areas are using 3G and 4G networks, and as a result, they are experiencing a lot of connectivity issues which generally can generate a proper business case for the returns corresponding to the infrastructure investment-related requirements. The deployment of 5G will generally help in improving speed and will further help in revolutionizing the rural industries (Khalil et al., 2017). Additionally, successful use of new types of precision capabilities on the farm equipment with the help of real-time connectivity can make the rural business competitive and will further keep pace with the global food demand. Moreover, the 5G network is also creating job opportunities for the remote communities within rural areas for balancing the population distribution within both rural as well as urban areas. Creating jobs within the rural areas generally have a positive spiral effect on the greater economic welfare.

Leveraging existing infrastructure for defraying costs

  The costs as well as investment that is mainly associated with 2G, 3G, and 4G network, is very much different over time, and similarly, the infrastructure costs that are needed for 5G network also differs over time and mainly depends on the local conditions. As the deployment cost of 5G network is high, it would be quite challenging for the local council as well as the government of the rural areas to take proper initiative for handling the expenses quite well. It is very much essential to use a very conservative approach for managing the infrastructure costs of the 5G network (Lin, 2020).

 It is identified that 5G network infrastructure generally comprises of standalone 5G infrastructure that has their own cloud-native network that will further be connected to the 5G NR technology and NSA infrastructure, which will partially rely on the 4G LTE infrastructure. The network carriers generally need to build out independent infrastructure that is mainly required for 5G; however, it is quite expensive (KA, Stewart & Crawford, 2021). It is very much possible to leverage the existing infrastructure for assisting in defraying the costs that are mainly required for deployment, and it can be possible by combining the 5G radio access network with the 5G NR interface as well as the existing LTE infrastructure as well as core network in order to provide a 5G like experience within the rural areas which will be identified to be very much beneficial for the development and success of the rural areas. Moreover, it is identified that the standalone 5G deployment generally comprises user equipment, the RAN as well as NR interface as well, as the 5G core network that is mainly dependent on the service-based framework with the virtualized network-related functions. Furthermore, it is identified that a network generally functions run-on hardware that becomes virtualized and generally runs as software (Najjuuko et al., 2021). The 5G Ran element is identified to be best suited for very much less densely populated areas with very much dispersed infrastructure as well as very much less network congestion.

It is identified that access to the 5G network in rural areas will generally help in providing faster internet speed to the small business in the rural areas. Faster speed of internet generally means much more actions in a very much less time. Small businesses will get the opportunity of reaching to retailers or large businesses with the help of the internet. Small businesses will get the chance to take their business online so that more customers from different parts of the world can be able to reach them, which not only enhances the profitability of the business but will also increase the brand value (Maccari et al., 2018). Mobile network towers with the help of the 5G technology will generally help in enhancing the capacity compared to 4G, and as a result, more people, as well as more devices, would be able to communicate at the same time by using conference calls, telephone as well as skype interviews which will help the rural business in improving their business connectivity quite well.

 If 5G delivers on its promise, then it will generally creep into every aspect of the business operations, which generally influences the small business to start a new business operation. Even during the coronavirus pandemic, the rural business can be able to work remotely with the help of a high-speed internet facility that not only helps the organization in undertaking their work quite well but will also help in empowering the organization to undertake business despite the situation (Watts et al., 2018). 5G will help in introducing very much higher speeds and very much minimal latency across various networks, and therefore small business communication will get the benefit through a very much higher quality of audio, video, and the ability to fill different types of contacts. Furthermore, the small business will also get influenced as the 5G network will be quite beneficial in bridging the skills gap and thus help the small business in undertaking their work quite excellently at a very much lower cost that will be quite profitable for the business (Goussal et al., 2017). With the help of the 5G network, the rural business will get relieved from the expenses that are mainly associated with IT maintenance as well as monitoring and savings from the reduced administration as well as other processes. Moreover, the small business that is present in the rural areas will get the opportunity of lowering costs, and as a result, they can bring new products within the market by successfully engaging with local rural suppliers for offering greater convenience, independence as well as the proper choice for customers.

  It is identified that with the help of the 5G network, it will be quite easy for the agricultural industry to properly optimize the agricultural-related workflows, including water management, livestock safety, crop management as well as maturity monitoring. It is identified that by leveraging the Internet of Things (IoT), the farmers of the rural areas generally get the opportunity of observing as well as automating their entire agricultural system which further enhances productivity as well as the profitability of the business which also improves the safety as well as efficiency of the agricultural business (Kumar et al., 2022). In addition to this, in the healthcare industry, 5G generally helps in providing low latency that further helps in permitting massive quantities of the data which can be sent to the doctors in real-time, and as a result, proper service can be provided to the patients even in the rural areas. Moreover, low latency, as well as the improved speed of the network, also helps in paving the way for different types of remote business that are helpful for improving productivity as well as boosting resiliency for the success and development of the rural business (Neokosmidis, Rokkas & Xydias, 2017).

 The factory setting that is present in the rural areas will get the opportunity to use 5G network as it will help in offering very much high bandwidth as well as low latency that is mainly needed for sustaining the augmented reality for supporting training, repair as well as maintenance which is quite beneficial for improving the productivity of the organization (Tang et al., 2021). It further helps in enabling the manufacturers to enable smart factories in order to leverage automation, AI as well as IoT in order to become much more flexible as well as efficient, which boosts resiliency for the rural business. Furthermore, the supply chain management industry can be able to use 5G-enabled sensors that are mainly installed so that even the rural business can be able to bring a real-time volume of data for making a correct decision for the managers. The introduction of the 5G IoT sensors within the supply chain generally can lessen the losses that stem from human error and thus help the business in enhancing their productivity. As 5G technologies help in bringing a higher level of management to the supply chain, the potential generally helps in increasing production as well as in streamlining the logistical workflows (Mendes et al., 2021). It is identified that 5G technology will also help in providing enhanced visibility as well as control over the transportation networks, including the private logistics networks as well as public buses. As 5G networks are prevalent, the cities will be able to access invaluable real-time data for providing higher visibility within the transportation networks. With the access of 5G technology, it becomes quite easy to share data with the insurers, and thus it is very much easy to make much more accurate decisions and for providing tailoring quotes for the customers. The enhanced quality, as well as the popularity of the 5G, enabled devices, will help in providing the insurers to provide proper policies that are helpful in avoiding accidents.

Conclusion

It can be concluded from the paper that if a 5G network will be deployed within the rural areas, then it would be quite beneficial for the rural business as they will receive an opportunity to improve productivity and boost resilience. Additionally, significant speed improvement will also influence the small business of the rural areas. Furthermore, the 5G network will also help in providing a number of job opportunities to the local people who are the residents of the rural areas, which will not only improve their lifestyle but will also add to the economy of the country. Furthermore, the 5G technology will help in allowing the small organizations or businesses to become much more efficient by further enhancing their capability to accomplish in less time for minimizing costs as well as for enhancing the revenue of the organization quite well. It is also identified from the paper that 5G aims to combine the benefits of the present technologies, including 2G, 3G, 4G, in order to provide high speed, density as well as reliable connections at very much low power.

References

Aranda, J., Sacoto Cabrera, E. J., Haro Mendoza, D., & Astudillo Salinas, F. (2021). 5G networks: A review from the perspectives of architecture, business models, cybersecurity, and research developments. Novasinergia, 4.

Chiaraviglio, L., Liu, W., Gutierrez, J. A., & Blefari-Melazzi, N. (2017, November). Optimal pricing strategy for 5G in rural areas with unmanned aerial vehicles and large cells. In 2017 27th International Telecommunication Networks and Applications Conference (ITNAC) (pp. 1-7). IEEE.

Chochliouros, I. P., Kostopoulos, A., Spiliopoulou, A. S., Dardamanis, A., Neokosmidis, I., Rokkas, T., & Goratti, L. (2017, November). Business and market perspectives in 5G networks. In 2017 Internet of Things Business Models, Users, and Networks (pp. 1-6). IEEE.

Goussal, D. M., Skouby, K. E., Williams, I., & Gyamfi, A. (2017, May). Rural broadband in developing regions: Alternative research agendas for the 5G era. In the Book: Handbook on ICT in developing countries: 5G perspective, Eds.: KE Skouby, I. Williams, and A. Gyamfi, Wireless World Research Forum (WWRF) River Publishers, Denmark.

KA, S., Stewart, R., & Crawford, D. (2021, June). Rural connectivity using 5G neutral host networks: game theory framework. In Doctoral School Multidisciplinary Symposium 2021.

Khalil, M., Qadir, J., Onireti, O., Imran, M. A., & Younis, S. (2017, March). Feasibility, architecture and cost considerations of using TVWS for rural Internet access in 5G. In 2017 20th Conference on Innovations in Clouds, Internet and Networks (ICIN) (pp. 23-30). IEEE.

Koratagere Anantha Kumar, S., Stewart, R., Crawford, D., & Chaudhari, S. (2020). Business model for rural connectivity using multi-tenancy 5G network slicing.

Kumar, S.K.A., Stewart, R., Crawford, D. & Chaudhari, S. (2020, December). Business model for rural connectivity using multi-tenancy 5G network slicing. In 2020 IEEE 17th International Conference on Smart Communities: Improving Quality of Life Using ICT, IoT and AI (HONET) (pp. 182-188). IEEE.

Kumar, S. K. A., Ihita, G. V., Chaudhari, S., & Arumugam, P. (2022, January). A survey on rural internet connectivity in India. In 2022 14th International Conference on COMmunication Systems & NETworkS (COMSNETS) (pp. 911-916). IEEE.

Lin, J. (2020). Modern accounting data analysis platform based on 5G network and FPGA. Microprocessors and Microsystems, 103388.

Maccari, L., Karaliopoulos, M., Koutsopoulos, I., Navarro, L., Freitag, F., & LoCigno, R. (2018, June). 5G and the Internet of everyone: motivation, enablers, and research agenda. In 2018 European Conference on Networks and Communications (EuCNC) (pp. 429-433). IEEE.

Mendes, L. L., Moreno, C. S., Marquezini, M. V., Cavalcante, A. M., Neuhaus, P., Seki, J., ... & Fettweis, G. (2020). Enhanced Remote Areas Communications: The Missing Scenario for 5G and Beyond 5G Networks. IEEE Access, 8, 219859-219880.

Najjuuko, C., Ayebare, G. K., Lukanga, R., Mugume, E., & Okello, D. (2021, May). A Survey of 5G for Rural Broadband Connectivity. In 2021 IST-Africa Conference (IST-Africa) (pp. 1-10). IEEE.

Neokosmidis, I., Rokkas, T., & Xydias, D. (2017, November). Roadmap to 5G success: Influencing factors and an innovative business model. In 2017 Internet of Things Business Models, Users, and Networks (pp. 1-8). IEEE.

Schneir, J. R., Ajibulu, A., Konstantinou, K., Bradford, J., Zimmermann, G., Droste, H., & Canto, R. (2019). A business case for 5G mobile broadband in a dense urban area. Telecommunications Policy, 43(7), 101813.

Skouby, K. E. (2021). 5G Business Models & Trends in Rural Communication. Journal of Mobile Multimedia, 175-186.

Taheribakhsh, M., Jafari, A., Peiro, M. M., & Kazemifard, N. (2020, January). 5g implementation: Major issues and challenges. In 2020 25th International Computer Conference, Computer Society of Iran (CSICC) (pp. 1-5). IEEE.

Tang, Y., Dananjayan, S., Hou, C., Guo, Q., Luo, S., & He, Y. (2021). A survey on the 5G network and its impact on agriculture: Challenges and opportunities. Computers and Electronics in Agriculture, 180, 105895.

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Watts, S., Liolis, K., Diaz, S., & Van der Wee, M. (2018). Use cases to business modelling of satellite backhaul in 5G.

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