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Around 85 percent of all residents in the Dominican Republic have access to the Internet.
Approximately 10 percent of Dominican Republic residents have a fast internet connection, which is faster than the former ISDN (more than 256 kbit/s). However, the expansion of broadband internet connections in the Dominican Republic is lagging behind, with around 85 percent of all residents having internet access.
A user in the Dominican Republic spends 4.4% of his income on mobile telephony. This is a high consumption rate in a worldwide comparison, where the average is around 6.6%.
The Dominican Republic ranks 106th for download speed with an average of 21.29 Mbit/second in mobile internet. The upload speed was around 8 Mbit, placing it 119th in the Speedtest Global Index published by Ookla based on several million individual measurements in August 2023 from 182 countries.
Given the significant increase in electricity consumption in 5G networks, which contradicts the concept of communication operators building green communication networks, the current research focus on 5G base stations is mainly on energy-saving measures and their integration with optimized power grid operation.
The 5G communication base station can be regarded as a power consumption system that integrates communication, power, and temperature coupling, which is composed of three major pieces of equipment: the communication system, energy storage system, and temperature control system.
This model encompasses numerous energy-consuming 5G base stations (gNBs) and their backup energy storage systems (BESSs) in a virtual power plant to provide power support and obtain economic incentives, and develop virtual power plant management functions within the 5G core network to minimize control costs.
The 5G network is the wireless terminal data; it first sends a signal to the wireless base station side, then sends via the base station to the core network equipment, and is ultimately sent to the destination receiving end.
Most of the BESS systems are composed of securely sealed battery packs, which are electronically monitored and replaced once their performance falls below a given threshold. Batteries suffer from cycle ageing, or deterioration caused by charge–discharge cycles.
The system is built of two main blocks. The PCS building block, responsible for the main control of the mobile BESS. The nominal power rating of the PCS block is 225 kVA, with a maximum peak power in the peak shaving mode of 275 kW . The second block is the modular battery pack.
These all-in-one BESS systems can be scaled from utility scale to industrial and commercial applications. The environmental control system (ECS) within the container combines the fire and HVAC systems to maintain a stable environment.
This thesis project, carried out at Northvolt Systems, aims to analyze the existing and readily used communication interfaces for a specific set of mobile BESS applications. The analysis is performed by a literature review of typical mobile BESS applications with the identified corresponding communication interfaces.