Measuring the internal resistance of a cell in assembled batteries
M. Ichimura, T. Horie, Katsuichi Yotsumoto, Kazuo Takano, Y. Konya, Yurika Koizumi
Abstract
M. Ichimura, T. Horie, Katsuichi Yotsumoto, Kazuo Takano, Y. Konya, Yurika Koizumi
Abstract
The condition of a valve-regulated lead-acid battery can be evaluated by measuring the internal resistance, impedance, or conductance. When the internal resistance of a cell in assembled batteries in active service is measured, however, the measured value is often smaller than the actual value because a portion of the measuring current flows into other cells or equipment connected to the cell. This paper describes methods for measuring the internal resistance of a battery cell without disconnecting the cell. It has been clarified that the actual internal resistance of a cell can be calculated theoretically from the measured values for cells in assembled batteries. A new method (called the correction factor method) for estimating the actual internal resistance is to divide the measured value by the correction factor F, where F=(mn-m+1)/mn, where m is the number of cells in parallel and n is the number of cells in series.
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The condition of a valve-regulated lead-acid battery can be evaluated by measuring the internal resistance, impedance, or conductance. When the internal resistance of a cell in assembled batteries in active service is measured, however, the measured value is often smaller than the actual value because a portion of the measuring current flows into other cells or equipment connected to the cell. This paper describes methods for measuring the internal resistance of a battery cell without disconnecting the cell. It has been clarified that the actual internal resistance of a cell can be calculated theoretically from the measured values for cells in assembled batteries. A new method (called the correction factor method) for estimating the actual internal resistance is to divide the measured value by the correction factor F, where F=(mn-m+1)/mn, where m is the number of cells in parallel and n is the number of cells in series.
Key concepts: Internal resistance, Battery (electricity), Electrical impedance, Lead–acid battery, Value (mathematics), Output impedance, Equivalent series resistance, Focused Impedance Measurement