Transmission processing method, network device, terminal, apparatus and storage medium
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Solution Overview
Problem
The high power consumption of 5G radio access networks, particularly from active antenna units, poses a significant challenge, and existing power-saving technologies are not compatible with open RAN architectures, leading to increased operating costs for telecommunication operators.
Innovation Solution
A method for determining a transmission frequency domain based on frequency domain configuration information to adjust transmission bandwidth, including data, information, and signal transmission, which can be applied in network devices and terminals to reduce power consumption.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of energy
If traditional proprietary power-saving technologies are implemented, then power consumption is reduced, but compatibility with open RAN architecture is lost
Solution Approach 1:
The patent implements a universal frequency domain determination method that can be applied across different open RAN network devices and terminals. The method uses standardized frequency domain configuration information exchange mechanisms that work regardless of specific equipment manufacturers, enabling multi-vendor compatibility while achieving power savings through dynamic frequency domain adjustment.
Solution Approach 2:
The patent dynamically adjusts the transmission frequency domain based on real-time network conditions and configuration information. By changing the frequency domain parameters according to actual transmission needs, the system achieves power consumption reduction without compromising open RAN compatibility, as the adjustments are made through standardized protocol mechanisms.
2Productivity
If transmission bandwidth is increased, then network performance is improved, but power consumption increases
Solution Approach 1:
The patent implements dynamic frequency domain determination where the transmission bandwidth and frequency domain are adjusted in real-time based on network conditions, traffic load, and configuration information. This dynamic adaptation allows the system to optimize between network performance and power consumption by using larger bandwidths only when necessary and reducing bandwidth when conditions permit, thereby resolving the contradiction between productivity and energy consumption.
Data Source
AI summary
Provided in the embodiments of the present disclosure are a transmission processing method, a network device, a terminal, an apparatus and a storage medium. The method is applied to the network device, and includes determining a transmission frequency domain of a network device according to frequency domain configuration information; and executing a transmission operation on the transmission frequency domain, and the transmission operation includes one or more of the following: data transmission; information transmission; and signal transmission. By means of the transmission processing method, the network device, the terminal, the apparatus and the storage medium provided in the embodiments of the present disclosure, the network device can determine, according to frequency domain configuration information, a transmission frequency domain thereof, and execute a transmission operation on the determined transmission frequency domain, and energy conservation of the network device can be realized by adjusting a transmission bandwidth.


