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Commissioning of the system was undertaken by a representative of Prudent Energy from the Burnaby, BC, Canada office together with ACEP engineers on September 20~21, 2010. The flow battery system was connected to the mains via a Xantrex XW6048 inverter charger (6.0 kW 48V split phase) – this provides grid interface functionality via a control panel. The process of commissioning entailed running some charge and discharge cycles and verifying that there were no leaks. Fig. 6. Commissioning: ACEP’s Tom Johnson (L) and Aleks Velhner of Prudent Energy. Commissioning involved setting the VRB system to an initialization state, where the battery controller first completes a series of diagnostic checks to ensure that the battery is functioning within allowable parameters. This check included ensuring that no critical event flags are active within the battery. The controller then executed a routine that circulated electrolyte through the cell stack to confirm that the sensors were functioning. After confirming that electrolyte flow had been established, the battery controller automatically shifted to the connected state (if there were major or critical events, the controller would have gone to the fault state). The system was left to make one 8-hr full cycle for acceptance. ACEP 12-03 | March 2012 Commissioning ADVANCED ENERGY STORAGE RESEARCH 10 | A C E PPDF Image | Advanced Battery Storage Systems Testing at ACEP VRB ESS
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