Fr. Mrz 29th, 2024

The high growth of the global 5G satellite communication market is supported by the growing demand to cater to a range of applications where the current communication network technologies and bandwidths struggle to deliver optimum performance. The performance parameters used to represent this new age network are low latency, high bandwidth, high system spectral efficiency, and peak throughput, along with less energy spill out. Moreover, due to a strong demand for 5G network for various application, there has been a surge in enhancing the current communication infrastructure, including towers, fiber network, and small cell, to cater to the technological needs for 5G satellite communication networks.

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Prominent players in the 5G satellite communication market adopted strategies of partnerships and collaborations, contracts, agreements, and other key strategies to expand their business. The companies are also involved in some of the projects that include demonstration, integration, and business expansion. Due to the intensive competition, the 5G satellite communication market requires telecom operators to constantly innovate and develop cost-effective services for 5G with the integration of satellite. The existing companies as well as new entrants aim to develop 5G satellite communication networks in the adherence with the existing and forthcoming industry standards for various end-user applications. The chapter includes key strategies adopted by the major companies operating in the global 5G satellite communication market along with the competitive strength of the key players. The major strategies compiled in the chapter are partnerships and collaborations, contracts, agreements, and new projects related to the integration of 5G and satellite. These strategies and the competitive strength of major companies working in the market are analyzed to present a detailed competitive landscape of the industry.

The major drivers that influence the technology-based industries is the process of the evolution of communication network. The mobile network evolution is constant, innovating, and adjusting in a cyclical pattern. This means, an old technology in a certain period of time, is replaced on the oncoming of a new technology. It has proven to be an essential part of the network technology ecosystem. The changing paradigm of the consumer as well as enterprise market for the requirement of higher bandwidth, and low latency the introduction of 5G network took place, which caters to the growing needs of speed, reliability, and low latency.

In the present and initial phase of 5G, the telecom industry is focused upon positioning enhanced mobile broadband use cases for providing faster speed and lower latency than those of 4G network. Moreover, in the near future, with the introduction of New Radio (5G) and Standalone Access, 5G is expected to become more reliable in terms of Gbps speed and latency. However, currently, neither of these technologies is addressed by the satellite communication operators, as providing the backhaul services through Gbps is highly expensive, and latency below 50ms cannot be achieved without the launch of LEO constellation. This can make satellite communication a difficult task for the deployment of satellite with 5G enhanced mobile broadband, as satellite operators are positioning fiber for backhaul services in dense areas but not in rural areas, where satellite backhaul services can have competitive advantage over 5G enhanced mobile broadband.

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Apart from this, upcoming use cases, such as massive machine type communication (mMTC) and ultra-reliable communications (URLLC), are expected to be more feasible for satellite communication in the coming future, as mobile operators are currently still in the deployment phase for the IoT network using 4G technology. Moreover, apart from the challenges faced by satellite operators, such as issues related to launch of LEO constellation satellite and backhaul services through Gbps, there is an opportunity for 5G-satellite integration in the near future.

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