Abstract :
In spite of a number of new, alternative power supply back up technologies, batteries are here to stay. Continuous monitoring of back up systems on the battery level becomes a vital factor of many mission-critical installations. In this paper, the authors explore the possibilities of implementation of new generation, state of the art battery monitoring systems based on wireless technology. This technology introduces a number of challenges, particularly in noisy UPS and industrial environments. The latest developments, however, indicate that all known issues could be resolved. This paper presents the concept of a monitoring system consisting of "intelligent" probes measuring various parameters, for both single batteries and the battery system; a local or remote data processing and storage unit (DPS); and, usually, remote management and reporting applications. One of distinguishing features of the proposed system is the absence of wire connections between battery probes and the DPS. This is a major step, so important in the field, towards improving the ease of installation and maintenance of the monitoring system, as well as increasing its overall reliability. While smart probes and a DPS are sufficient for basic monitoring and alarm indications, the real strength of the system is its capability of evaluating the batteries\´ "health", thus making it possible to replace a battery BEFORE critical failure. Management and monitoring applications, running on a remote computer, collect data from multiple DPS\´s, store it in a relational database, and give the user the capability of creating both predetermined (canned) and ad-hoc reports. Processed data and reports are available in the multi-user environment. Finally, the paper addresses practical aspects of field installation, set up, maintenance and networking
Keywords :
battery management systems; maintenance engineering; monitoring; radio networks; relational databases; uninterruptible power supplies; UPS; ad-hoc reports; alarm indications; battery monitoring systems; battery probes; intelligent probes; mission-critical installations; multiuser environment; power supply back up technologies; relational database; remote computer; remote data processing and storage unit; remote management; system maintenance; wireless technology; Batteries; Computerized monitoring; Condition monitoring; Intelligent systems; Mission critical systems; Power supplies; Probes; Remote monitoring; Uninterruptible power systems; Working environment noise;