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Descriptions of products, methods, and procedures relating to stationary batteries, battery electrolyte spill mechanisms, electrolyte containment and control methodologies, and firefighting considerations are provided.
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Monitoring and measurement of battery parameters is an important element of maintaining a fully operational battery system. This guide presents and discusses measurable parameters of batteries used in stationary battery systems and the utilization of such observations. This guide does not give a listing of commercially available systems, but it does provide a means of establishing specifications for the desired parameters monitored.
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Operational parameters that may be observed by battery monitoring equipment used in stationary applications and the relative value of such observations are discussed in this guide. Although a list of commercially available systems is not given, a means for establishing specifications for the desired parameters to be monitored is provided. Keywords: airflow, ambient temperature, automated battery monitoring, battery applications, battery current, battery environment, battery monitoring equipment, battery monitoring techniques, battery temperature, battery types, battery voltage, charge and discharge, communications interfaces, connection, connection resistance, coup de fouet, cycles, ground fault detection, grounding, humidity, IEEE 1491, measurement parameters, ohmic value, operating environment, reports, ripple current, safety, sensors, software, specific gravity, temperature, voltage.
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Operational parameters that may be observed by battery monitoring equipment used in stationary applications and the relative value of such observations are discussed in this guide. Although a list of commercially available systems is not given, a means for establishing specifications for the desired parameters to be monitored is provided.
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This recommended practice defines the areas of recommended knowledge for installers and maintainers of stationary batteries and related systems to the extent that they affect the battery. Design of the dc system and sizing of the dc battery charger(s) are beyond the scope of this document. This recommended practice covers only lead-acid and nickel-cadmium battery technologies. Its purpose is to provide an outline (not necessarily in training order) of the items that should be covered by training programs for stationary battery installation and maintenance personnel. The IEEE will not be certifying trained personnel nor providing its own battery technician training programs. Keywords: battery, certification, classroom, competent, course, curriculum, education, experience, inspect, install, instruct, knowledge, level, maintenance, monitor, preventative, proactive, proficient, qualification, routine, service, skill, student, teach, technician, test.
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Descriptions of products, methods, and procedures relating to stationary batteries, battery electrolyte spill mechanisms, electrolyte containment and control methodologies, and firefighting considerations are provided.
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The areas of recommended knowledge for installers and maintainers of stationary batteries and related systems, to the extent that they affect the battery, are defined in this recommended practice. Design of the dc system and sizing of the dc battery charger(s) are beyond the scope of this document. Only lead-acid and nickel-cadmium battery technologies are covered in this recommended practice. An outline (not necessarily in training order) of the items that should be covered by training programs for stationary battery installation and maintenance personnel is provided. Certifying trained personnel and providing its own battery technician training programs will not be performed by IEEE.
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