Optimal energy-saving operation strategy of 5G base station
Dec 1, 2025 · To further explore the energy-saving potential of 5 G base stations, this paper proposes an energy-saving operation model for 5 G base stations that incorporates
Dec 1, 2025 · To further explore the energy-saving potential of 5 G base stations, this paper proposes an energy-saving operation model for 5 G base stations that incorporates
Feb 22, 2023 · This new base station product can meet the construction needs of future 5G base stations, adapt to the future intensive, miniaturized, intelligent station construction mode, and
Apr 13, 2025 · This paper discusses the site optimization technology of mobile communication network, especially in the aspects of enhancing coverage and optimizing base station layout.
Feb 22, 2023 · This new base station product can meet the construction needs of future 5G base stations, adapt to the future intensive,
Sep 5, 2024 · With the rapid development of 5th Generation Mobile Communication Technology (5G), the increased bandwidth not only bolsters communication efficiency but also paves the
May 9, 2025 · The 5G BBU is the baseband processing unit of the SageRAN`s XLink™ 5G distributed small cell solution. It is a small and low-power indoor distributed small base station
Nov 1, 2020 · Aiming at the indoor localization with a single base station, this paper proposes a 5G signal based localization method by employing the estimates of the angle of arrival (AoA)
Oct 22, 2024 · Abstract As commercial 5G systems rapidly expand, indoor positioning using 5G signals holds great potential for serving a large number of users. In this paper, an effective
We consider a 5G mmWave downlink scenario, with a single fixed BS and a single moving UE, as shown in Fig. 1. Both of them are equipped with an uniform rectangular array (URA).
Nov 2, 2025 · Overview The 5G RAN architecture is composed of multiple nodes and components that work together to provide seamless connectivity to users. These nodes include the User
Nov 18, 2020 · With the growing demand for high accuracy indoor localization, the fifth generation (5G) wireless communication technology based localization attracts increasing attention.
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As commercial 5G systems rapidly expand, indoor positioning using 5G signals holds great potential for serving a large number of users. In this paper, an effective fingerprint solution is proposed for indoor positioning with 5G signal base station by exploring the multi-beam property.
In this setting, a 5G system is deployed using a digital indoor distribution model, with only one base station (BS) clearly detectable. Figure 5(a) illustrates the test environment, where 60 test points are arranged. The two-dimensional coordinates of the BS are preset at (0 m, 0 m), while the coordinates of position 01 are set at (2 m, 1.5 m).
Currently, the large-scale deployment of fifth-generation (5G) mobile communication networks has introduced a range of new features, such as ultra-dense networks (UDN), antenna arrays, and advanced multiple access schemes.
In this paper, an effective fingerprint solution is proposed for indoor positioning with 5G signal base station by exploring the multi-beam property. Multi-beam channel state information (CSI) and multi-beam reference signal received power (RSRP) are used as the observations for fingerprinting.