3G and 4G Technologies Pros and Cons and Its role in Today’s Applications

Cellular phone companies operate in different places, and they use various kinds of tech to let us talk, text, and use the internet. Looking at 3G and 4G technologies, they each have their positives and negatives, and they’re important for the apps we use daily. This paper looks at 3G and 4G technologies, their pros and cons and their role in today’s applications

This (3-4) page paper in covers:

  1. A comparison of the pros and cons of 3G and 4G technology to determine the best uses of 3G and 4G technology in today’s applications.
  2. A description of how an enterprise would use 3G, 4G, WWAN, and WIAMX to improve business explaining why they would use one (1) solution over the remaining three (3).
  3. An analysis of the changes in 4G technology since the printing of the textbook in 2009 and identification of those of importance for a user of 4G technology.
  4. A position on the following statement, “Wireless application protocol is a necessity for wireless communication organizations and their users.” Then, explains a personal position with supporting evidence.

3G And 4G Technologies Pros and Cons and its Role in Today’s Applications

3G and 4G are protocols used for wireless communication. Standards define the correct use of airwaves for the transmission of information, including both voice and data. The introduction of 3G took place in Japan in 2001. Until mid-2010, the majority of wireless operators in the U.S. operated on 3G networks. 3G networks represented a substantial advancement compared to 2G networks, providing enhanced data transfer speeds. The enhancement that 4G provides compared to 3G is frequently less noticeable. Drawing comparisons based on the pros and cons of both 3G and 4G is the only way that can help in determining the best usage of either of these protocols.

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A Comparison of the Pros and Cons of 3G and 4G Technology

One of the advantages of 3G compared to 4G networks, is that 3G networks are more developed and often offer greater coverage, particularly in rural regions. Additionally, 3G technology is appropriate for uses where voice communication is a top requirement since it offers stable voice calling capabilities. Yu (2021) argues that because 3G networks demand less power for data transfer than 4G networks, devices linked to 3G networks usually have lower battery consumption. The disadvantage of 3G networks is that in comparison to 4G networks, 3G networks have slower data speeds, which result in poorer streaming, downloading, and web browsing capacities. Due to their limited bandwidth, 3G networks can get congested during periods of high usage, which will slow down data transfer rates. According to Ande et al. (2020) 3G technology might not be the best choice for data-intensive tasks like streaming videos, playing online games, or downloading huge files because of its slower speeds and constrained bandwidth.

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The advantages of 4G Compared to 3G, is that 4G networks provide faster data speeds, allowing for less rigid internet surfing, quicker downloads, and perfect video streaming. Mishra (2023) notes that because 4G technology often offers lower latency than 3G, interactive applications like online gaming and video conferencing respond more quickly. Moreover, compared to 3G, 4G networks facilitate the easier implementation of multimedia-rich applications such as video calling and streaming of high-definition video. The disadvantage of 4G network is that even while its coverage is growing, there can still be some places especially in rural regions where 4G networks are not available or have poor coverage. Mishra (2023) adds that since 4G networks require higher data transmission rates and more processing power than 3G networks, devices linked to 4G networks often use more battery life. Users may pay extra for service since 4G technology may be more costly to install and maintain than 3G. Therefore, it is agreeable that 4G network offers the best services in the use applications that need stable and quick internet access, like online games, downloading big files and streaming videos.

How An Enterprise Would Use 3G, 4G, WWAN, And WIAMX To Improve Business

An organization can employ several wireless technologies, including 3G, 4G, WWAN, and WiMAX, to optimize corporate processes and boost connection. Each of these technologies provides different advantages and is designed for unique business requirements. An enterprise like a hospital can adopt 3G technology to fulfill important communication requirements, such as making phone calls and providing email access to staff operating in regions with poor or unreliable 4G connectivity. For instance, a hospital that operates remotely can utilize 3G technology to facilitate remote patient monitoring by using medical devices that transfer data over the 3G network. Additionally, enterprises can utilize 4G technology for a range of purposes including video conferencing, real-time data analysis, managing mobile workers, and streaming high-definition videos (Sanyal et al. 2020). For example, a hospital situated in a distant area can employ a 4G network to streamline the transfer of data, facilitating superior video conferencing and instantaneous contact for telemedicine and consultations.

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The hospital can utilize WWAN technology to offer secure and fast connectivity for distant offices, mobile workers, and IoT devices deployed in several places. For instance, the remote hospital can utilize WWAN to establish dependable connectivity and transfer data efficiently in emergency response scenarios, thereby improving collaboration with outside groups and medical centers. The enterprises can use WiMAX to provide broadband internet connectivity in regions where conventional wired infrastructure is not accessible or not feasible to construct. For instance, the hospital can use WiMAX to provide fast data transfer, permitting the transmission of huge medical imaging files and leveraging online resources for diagnoses and research. The remote hospital would choose the 4G network over the other three network speeds due to its superior speed, stability, and advanced functionalities. These qualities make 4G networks an exceptionally acceptable option for a medical business, particularly in remote areas where connectivity issues may arise.

The Changes In 4G Technology Since The Printing of the Textbook in 2009

Since 2009, there have been notable breakthroughs and adjustments in 4G technology, resulting in several crucial gains for users. Since 2009, there has been a remarkable growth in data speeds in 4G technology. Early versions of 4G technology, such as WiMAX and LTE, had an ideal maximum speed of around 100 Mbps. Nevertheless, progress in network architecture and technology has propelled these speeds to even greater heights, with certain implementations reaching gigabit-level speeds. The enhanced velocity enables users to rapidly retrieve and transmit data, effortlessly stream high-quality video, and indulge in seamless online gaming experiences. Over time, the extent and accessibility of 4G networks have greatly increased.

The initial focus on metropolitan areas has now expanded to include rural and remote areas, resulting in widespread 4G coverage in many parts of the world (Mishra, 2023). The development has increased the availability of high-speed internet connection, enabling people in different regions to easily communicate, be more productive, and use online services. Progress in network infrastructure and technology has resulted in enhanced stability and steadiness of 4G networks. Initial implementations of 4G technology had difficulties such as network overload and signal interference, resulting in dropped connections and variable performance. Nevertheless, the continuous improvements have effectively resolved numerous of these concerns, leading to a more consistent and dependable connectivity experience for customers.

Position on Wireless Application Protocol

I support the statement that “Wireless application protocol (WAP) is a necessity for wireless communication organizations and their users.” This is because WAP allows users to connect to the internet and utilize many services on their mobile handsets. Mozaffari et al., (2019) substantiates my position by arguing that this level of accessibility is essential for both individuals and companies, as it enables smooth communication and convenient access to information when on the move. Moreover, WAP presents innovative commercial prospects for wireless communication enterprises. By facilitating consumers’ access to services via their mobile devices, organizations can provide customized products and services specifically designed for the mobile platform. According to Mozaffari et al., (2019), WAP is crucial for facilitating mobile commerce. It enables users to carry out transactions, execute payments, and reach online shopping platforms, which is crucial for contemporary enterprises and customers. Additionally, WAP enables smooth communication, allowing users to remain connected via message, email, and social networking platforms. For enterprises, this implies the ability to interact with their target audiences instantly, resulting in enhanced customer satisfaction and loyalty.

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