Cell-to-Cell-Variations of a Panasonic NCR18650B
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Cell-to-Cell-Variations of Panasonic NCR18650B This dataset contains raw characterization data from 92 Panasonic NCR-18650B cells at the beginn of life. Information on the measurements performed can be taken in part from this readme file. Further details can be found in doi:\\ . Pulse measurements, pseudo-open circuit measurements, and impedance measurements are recorded. All measurements are performed in a Binder MK 155 climate chamber at 25°C. Pseudo Open Circuit Voltage POCV is recorded with a constant current of 0.05C in the charge and discharge direction. The measurements are performed with an Arbin LBT 5V-25A cell tester. The data is stored as a Matlab struct containing the following entries: pocv.ch % POCV of during charging pocv.dc % POCV of during discharging pocv.soc % SoC of the pocv curves The POCVs are interpolated to 5000 equidistant SOC points and sorted in the direction of the SOC vector. Impedance Impedance measurements are at 50% SOC(actual measured discharge C/20 capacity as reference) after 4h of relaxation. The measurements are conducted with a Zahner Zenium Pro spectroscope with an amplitude of 250 mA in a frequency range between 0.01 Hz and 10 kHz with 10 steps per decade. The data is stored as a Matlab struct containing the following entries: impedance.f % Frequency in Hz impedance.Z_imag % Imaginary Part of the impedance in Ohm impedance.Z_real % Real part of the impedance in Ohm impedance.Z % Complex valued impedance in Ohm Each row corresponds to a dataset of an individual cell and each column corresponds to a measurement frequency. The same applies to the .csv files. Pulse Test Pulse measurements are performed at 50% SOC (actual measured discharge C/20 capacity as reference) after 2h of relaxation. The measurements are performed with an Arbin LBT 5V-25A cell tester. The pulse test is performed with a current of 0.5C for 10s followed by a relaxation of 30 minutes. The discharge pulse follows the charge pulse. The data is stored as a Matlab struct containing the following entries: pulse.neg_time % Time of the discharge pulse sequence pulse.neg_voltage % Voltage of the discharge pulse sequence pulse.pos_time % Time of the charge pulse sequence pulse.pos_voltage % Voltage of the charge pulse sequence



