POSSIBILITIES OF IMPROVING THE VOICE SERVICES QUALITY IN 5G NETWORKS

Vetoshko Ivan, Serhii Kravchuk
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Abstract

Background. The introduction of fifth-generation (5G) networks creates new opportunities for fast and continuous data exchange, but there are still some problems with the quality of voice services in such networks. With the rapid development of technology and the further spread of 5G, there is a need to understand the impact of key aspects of 5G on voice quality. This requires research that can systematically analyse the features of 5G networks that affect the quality of voice services. Objective. Identification of ways to improve the quality of voice services in 5G networks. Assessment of key indicators of voice service quality in 5G networks. Determination of the best option for the gradual transition to the Standalone mode and the use of VoNR technology in the fifth generation networks. Methods. Analysis of factors affecting the quality of voice services in fifth-generation networks. Analysis of well-known publications on the implementation of 5G networks. Comparison of the implementation of Non-Standalone and Standalone modes in the 5G network. Testing of the modern EVS codec, which provides an opportunity to improve the customer experience. Results. Confirmation that 5G networks can significantly improve the quality of voice services compared to previous mobile communication technologies such as 4G and 3G. Certain factors that may affect the quality of voice services and require additional attention when planning and deploying 5G networks are identified. The optimal steps for the transition to the Standalone mode and the use of VoNR technology in fifth-generation networks are determined. The main differences in the QoS architecture between LTE and 5G are identified, and the purpose of DRB flows for separating traffic types and services is established. Conclusions. It has been confirmed that 5G networks can significantly improve the quality of voice services compared to previous technologies such as 4G and 3G. This is possible due to the broadband capabilities of 5G networks, improved data transmission, low latency, the use of an advanced EVS codec and reduced response time. However, certain factors, such as network coverage, optimisation level and traffic characteristics, can affect the quality of voice services and require additional attention when planning and deploying 5G networks. The QoS management architecture consists of QoS flows, which allow separating packet assignment to flows (managed by the CN) from the assignment of DRB flows (managed by the RAN). As 5G networks are being rolled out gradually, it is important to properly integrate the 5G domain into the existing telecoms provider's network. The transition from Non-Standalone to Dual connectivity is a necessary step for the implementation of VoNR technology in Standalone mode. Using the modern EVS codec allows not only improving the customer experience, but also introducing new voice services.
提高 5G 网络语音服务质量的可能性
背景。第五代(5G)网络的引入为快速、持续的数据交换创造了新机遇,但在此类网络中语音服务质量仍存在一些问题。随着技术的快速发展和 5G 的进一步普及,有必要了解 5G 的关键方面对语音质量的影响。这就需要开展研究,系统分析影响语音服务质量的 5G 网络特征。 目标。确定提高 5G 网络语音服务质量的方法。评估 5G 网络语音服务质量的关键指标。确定在第五代网络中逐步过渡到独立模式和使用 VoNR 技术的最佳方案。 方法。分析影响第五代网络语音服务质量的因素。分析有关实施 5G 网络的知名出版物。比较非独立模式和独立模式在 5G 网络中的应用。测试现代 EVS 编解码器,为改善客户体验提供机会。 结果证实与以前的移动通信技术(如 4G 和 3G)相比,5G 网络可显著提高语音服务质量。确定了可能影响语音服务质量的某些因素,以及在规划和部署 5G 网络时需要额外注意的因素。确定了在第五代网络中过渡到独立模式和使用 VoNR 技术的最佳步骤。确定了 LTE 和 5G QoS 架构的主要差异,并确定了 DRB 流量用于分离流量类型和服务的目的。 结论。已经证实,与 4G 和 3G 等以前的技术相比,5G 网络可以显著提高语音服务质量。这得益于 5G 网络的宽带功能、数据传输的改进、低延迟、先进 EVS 编解码器的使用以及响应时间的缩短。但是,网络覆盖、优化水平和流量特性等某些因素会影响语音服务质量,因此在规划和部署 5G 网络时需要格外注意。QoS 管理架构由 QoS 流量组成,可将数据包分配到流量(由 CN 管理)与 DRB 流量分配(由 RAN 管理)分开。由于 5G 网络正在逐步推广,因此将 5G 领域与现有电信运营商的网络进行适当整合非常重要。从非独立模式过渡到双连接模式是在独立模式下实施 VoNR 技术的必要步骤。使用现代 EVS 编解码器不仅能改善客户体验,还能引入新的语音服务。
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