Grid-Interactive Data Center UPS Energy Management Method

TR202613072A2Pending Publication Date: 2026-08-21TURK TELEKOMUNIKASYON A S
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Patent Information

Application Number
TR202613072
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2026-08-03
Publication Date
2026-08-21

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Abstract

The invention relates to a grid-interactive data center UPS energy management method that encompasses UPS (Uninterruptible Power Supply) systems used in data centers, energy storage, and smart grid integration, aiming specifically at achieving energy efficiency and cost optimization through the interactive operation of battery systems in data centers with the energy market and the grid.
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Description

1 TARIFF Grid-Interactive Data Center UPS Energy Management Method Technical Area The invention relates to UPS (Uninterruptible Power Supply) applications used in data centers. (Source) systems, energy storage and smart grid integration 5 encompassing, in particular, battery systems in data centers, the energy market and the grid. to achieve energy efficiency and cost optimization through interactive operation This relates to grid-interactive data center UPS energy management methods. State of the Art Today, the large battery capacities found in data centers are used inefficiently. It is being used and high energy consumption is occurring. UPS systems used in data centers typically provide power during power outages to reduce load. They are designed to provide power. These systems often require batteries to be constantly available. It is based on the principle of keeping it full and only using it during power outages. However, battery capacities in data centers are quite high, and this capacity is one 15 The section is awaiting use during normal operation. This situation concerns energy storage. This leads to inefficient use of our capacities. In conclusion, due to the negative aspects described above and the current solutions being the subject of discussion... Due to its shortcomings, an improvement is needed in the relevant technical field. It has been made. 20 Purpose of the Invention The invention was created by drawing inspiration from existing situations and overcoming the aforementioned drawbacks. It aims to solve the problem. The main purpose of the invention is to analyze energy price data and data center energy consumption data. by optimizing the charging and discharging times of battery systems, thus 25 a system where energy costs are reduced, efficiency is increased, and the carbon footprint is decreased The goal is to develop a method that provides this. 2 Another aim of the invention is to ensure the efficient use of battery capacities. Electricity UPS batteries ready for power outages, continuous benefit with active energy management system. It is switched to the system it provides. Energy costs are improved by 10-30%. Another purpose of the invention is to achieve cost savings. UPS batteries provide electricity. It supports data center loads during peak hours when prices are high, and offers low-cost 5 They are charged within hours. This reduces electricity costs. Another purpose of the invention is to balance the grid load during peak demand hours. By fully utilizing the battery, grid loads are reduced. In this case, the infrastructure is balanced and efficient. It is used. Another aim of the invention is to achieve 10 more efficient energy use compared to existing technology. The goal is to reduce the carbon footprint of the data center. To achieve the objectives described above, energy price data and data center information are required. By analyzing energy consumption data, the charging and discharging times of battery systems can be determined. Network-interactive data center UPS energy management that enables optimization. The method has been improved, and the method in question is: 15 - firstly, sensors located in the data center and data center load monitoring through modules the data center's energy consumption and UPS load rate measuring, - real-time and projected energy price data from the electricity market and from the field The collected energy data is processed through a smart energy management control module. gathering, - the health status of UPS batteries that store electrical energy, UPS via battery and monitoring module to intelligent energy management control module transfer, - The smart energy management control module provides real-time and projected energy price data. 25 and energy data collected from the field and the health status of UPS batteries. to analyze, - As a result of this analysis, the network communication and control module, UPS It needs to decide whether to be powered by batteries or from the mains. - The bidirectional inverter enables energy conversion between AC and DC energy sources. 30 It includes the steps involved in the process. 3 The structural and characteristic features and all the advantages of the invention are given in the figures below. This becomes clearer thanks to the detailed explanation written with references to these figures. This will be understood, and therefore the evaluation should also take these forms and detailed explanations into consideration. It needs to be done by taking precautions. Figures to Help Understand the Invention 5 Figure 1 shows the communication between the elements involved in the method described in the invention. It is a representative drawing illustrating this. Explanation of Part References 1. UPS battery and monitoring module 2. Bidirectional inverter 10 3. Smart energy management control module 4. Data center load monitoring module 5. Network communication and control module Detailed Description of the Invention In this detailed explanation, the preferred configurations of the method described in the invention are only 15. This is explained to facilitate a better understanding of the subject. UPS battery and monitoring module (1), housing the monitoring module and the UPS battery is the element. In the UPS battery and monitoring module (1), the UPS battery electrical energy The storage and monitoring module intelligently monitors the health status of the UPS battery using energy management. It transmits to the control module (3). 20 Bidirectional inverter (2) converts energy between AC-DC (alternating current-direct current) energies. It is a power electronics component that enables the conversion. The intelligent energy management control module (3) is the main control that analyzes all system data. It is a module. Data center load monitoring module (4), UPS load rate in data center, rack cabinet 25 (Equipment cabinet) This module monitors energy consumption and load rates. 4 Network communication and control module (5), network status information, load switching in the data center. and it is the module that monitors stability. In the method described in the invention, energy consumption, UPS load, and battery charge level are real. The data is analyzed in a timely manner and provided to the energy management system. On the other hand, electricity By analyzing data from the market, 5 areas where energy costs are high and low were identified. The timing is planned. Battery temperature, voltage, and other parameters are monitored via the battery management system. Health conditions are monitored to ensure safe use. The procedural steps of the method described in the invention are as follows: - firstly, sensors located in the data center and data center load monitoring The energy consumption and UPS load ratio of the data center through modules (4) is 10 measuring, - real-time and projected energy price data from the electricity market and from the field collected energy data via the smart energy management control module (3) gathering, - the health status of UPS batteries that store electrical energy, UPS 15 Smart energy management control via battery and monitoring module (1) transfer to module (3), - Smart energy management control module (3), instantaneous and estimated energy price data and energy data collected from the field and the health of UPS batteries analyzing the situation, 20 - as a result of this analysis, the network communication and control module (5), UPS It needs to decide whether to be powered by batteries or from the mains. - bidirectional inverter (2), energy conversion between AC-DC energies to ensure.

Claims

REQUESTS 1. By analyzing energy price data and data center energy consumption data, battery grid that enables the optimization of charging and discharging times of systems Interactive data center UPS is an energy management method with the following features: - firstly, sensors located in the data center and data center load monitoring 5 energy consumption and UPS load rate of the data center through modules (4) measuring, - real-time and projected energy price data from the electricity market and from the field collected energy data via the smart energy management control module (3) collection, 10 - the health status of UPS batteries that store electrical energy, UPS Smart energy management control via battery and monitoring module (1) transfer to module (3), - smart energy management control module (3), instantaneous and estimated energy price data and energy data collected from the field and the health of UPS batteries 15 to analyze the situation, - as a result of this analysis, the network communication and control module (5), UPS It needs to decide whether to be powered by batteries or from the mains. - bidirectional inverter (2), energy conversion between AC-DC energies 20 It includes the steps of the process.