Design and Analysis of Maintenance Free Lead Acid Battery System Used in UPS (original) (raw)

Development of A Cost Effective 2.5kva Uninterruptible Power Supply System

This paper is on the detailed development of a cost effective Uninterruptible Power Supply (UPS) system for domestic use. The UPS serves as a standby / backup power supply unit for power supply from the main commercial supply line. In this paper, an easy to implement block diagram showing all the important units of the UPS system is given. Detailed design showing all calculations and considerations were also included in this work. Also, a simple cost analysis showing the cost of producing this system from the scratch and also the cost of a similar product in Nigeria is also shown. The UPS consists of charge a controlling section, an inverting section, an automatic changeover / switching section a transformation and a load section. The battery is charged through a rectifier. The rectified DC output was achieved using a bridge rectifier and a voltage regulator. The changeover was done by an electric relay whose function is to establish connection between the load and either the mains or the batteries.

IJERT-Modeling of Green Energy Based Hybrid UPS with Backup Battery

International Journal of Engineering Research and Technology (IJERT), 2014

https://www.ijert.org/modeling-of-green-energy-based-hybrid-ups-with-backup-battery https://www.ijert.org/research/modeling-of-green-energy-based-hybrid-ups-with-backup-battery-IJERTV3IS10061.pdf Green energy is the recent trend that can be extracted, generated and consumed without any significant negative impact to the environment. In recent days the problem of power failure has complicated the scenario in medium and small scale industries. Moreover it's time to adopt renewable energy / green energy as the available resources keeps on depleting. This project aims in the development of self sustained Uninterrupted Power Supply (UPS) powered by Fuel Cells (FC) which helps in improving the power reliability, minimizing load fluctuations also reducing green house effects. Thus this project supplies superior fast responding reliable power performance using FC's which helps many small and medium scale industries to get benefited. Beyond this the proposed work (Hybrid UPS) has a wide scope in the areas

Design of an Uninterrupted Power Supply with Li-Ion Battery Pack: A Proposal for a Cost-Efficient Design with High Protection Features

Middle Technical University, 2021

While decreasing their cost, lithium-ion batteries began to enter a vast domain for energy storage field, including solar systems and electric vehicles, due to their high energy density compared to other types. Besides, li-ion batteries require a safe and secure ground to reach the best performance and decrease the explosion risk. The safe operation of the battery is based on the main protection features and balancing the cells. This study offers a battery BMS design that protects li-ion batteries from overcharging, over-discharging and overheating. It is also offering passive cell balancing, an uninterrupted power source to load, and monitoring data. The used controller is Arduino mega 2560, which manages all the hardware and software protection features. Software features that include 1) variable charging speed according to the batteries charging status, 2) measuring the batteries state of health and state of charge, 3) controlling the uninterrupted driver, 4) regulating the charge and discharge voltage, and 5) measure and display all readings.

Widely Configurable, DC Operated UPS for Small and Mid Sized Battery Backup Applications

2011

Today's desired power managing devices are smart, embeddable, highly energy efficient and with small form factor. The paper provides details concerning the design and implementation of a miniature uninterruptible power supply (UPS). The battery charging and balancing is analyzed and practical measurement results are presented. The performance can be raised with optimized control algorithms implemented on a powerful MCU platform capable of performing even multiple tasks in parallel. A good shaped charging and balancing algorithm can increase overall battery lifetime and performance when backing up critical systems that need to be up all the time, and doing all these at a relatively reduced cost. Fast reaction time of the system is critical so that the devices connected to the UPS output remain always powered. Several reconfigurable electrical and environmental parameters and different communication channels with this smart UPS ensure that it can be embedded in a wide range of ele...

Analysis of uninterruptable power supply critical-to-quality factors

Analysis of uninterruptable power supply critical-to-quality factors, 2023

The demand for a reliable power supply and electricity continues to increase, which has led to an increase in the production capacities of power generation units and regular utilization of the power transmission infrastructure. This in turn has resulted in significant stress on the system, which can cause issues such as sudden outages. To eliminate these problems, it is important to accurately evaluate the performance of electrical appliances. With this in mind, this paper investigates the power, runtime, and related quantities of Uninterruptible Power Supply (UPS) systems. This information can be used to understand the lifespan, safety, and efficiency of these systems. This study examines how various circuit parameters impact the runtime of a UPS system and analyzes the chronological variations of UPS system runtime using collected parametric data. It also maps the relationship between parameters, such as the temperature at the battery positive terminal, supply voltage, supply current, average power, and total energy stored in the battery with respect to the runtime of the system. Additionally, the future trends of system runtime are inferred using the stated parameters. This study also proposes new methods for assessing the effectiveness of power use and developing forecasting models with relatively small data sets. Overall, the current work offers new insights into UPS system performance and the factors contributing to chronological variations in runtime.