发明名称 Open-loop system and method for fuel cell stack start-up with low-voltage source
摘要 A fuel cell system is provided that includes a fuel cell stack and an air compressor in communication with a cathode inlet, a hydrogen source in communication with an anode inlet, and a start-up battery adapted to power the air compressor. The start-up battery is at least one of a low-voltage battery and a high-voltage battery. A power conversion module is in electrical communication with the start-up battery and the air compressor. The power conversion module is adapted to boost a voltage of the start-up battery as desired and power the air compressor at start-up. A controller is in communication with the power conversion module and is adapted to set an air compressor speed based on an available electrical energy. An open-loop method of operating the fuel cell system at start-up is also provided, wherein an anode purge is scheduled based on the available electrical energy from the battery.
申请公布号 US9005785(B2) 申请公布日期 2015.04.14
申请号 US200711860121 申请日期 2007.09.24
申请人 GM Global Technology Operations LLC 发明人 Alp Abdullah B.;Chowdhury Akbar;Whitehouse Kristian M.;Hortop Matthew K.;Kirklin Matthew C.
分类号 H01M8/04;H01M16/00 主分类号 H01M8/04
代理机构 Fraser Clemens Martin & Miller LLC 代理人 Fraser Clemens Martin & Miller LLC ;Miller James D.
主权项 1. A method for starting a fuel cell system having a fuel cell stack including a cathode inlet, an exhaust directly emitting from the fuel cell stack to an environment external to the fuel cell system, an air compressor in fluid communication with the cathode inlet and the exhaust, a low-voltage start-up battery in electrical communication with the air compressor, wherein the low-voltage start-up battery has an operating voltage less than a fuel cell stack operating voltage, a power conversion module in electrical communication with the low-voltage start-up battery and the air compressor, the power conversion module adapted to selectively boost a voltage of the low-voltage start-up battery supplied to the air compressor, the method comprising the steps of: receiving a start request; enabling the power conversion module to boost the voltage of the low-voltage start-up battery; determining an available electrical energy from the boosted voltage of the low-voltage start-up battery; determining an estimated speed of the air compressor based on the available electrical energy; starting the air compressor and setting the air compressor at the estimated speed with a controller in communication with the power conversion module, wherein a flow of air bypasses the fuel cell stack and is provided to the exhaust by the compressor and no flow of air is provided to the fuel cell stack; measuring an actual speed of the air compressor using a speed sensor in communication with the controller and directly sensing a rotational speed of the air compressor, wherein the actual speed is the rotational speed of the air compressor; comparing the actual speed to a desired speed calculated from the estimated speed; scheduling an anode purge based on the available electrical energy when one of a) the actual speed is greater than the desired speed, and b) a compressor ramp-up time has elapsed, wherein the step of scheduling the anode purge includes at least one of i) setting a time for the anode purge, and ii) setting a flow rate for the anode purge, and wherein the anode purge flow rate is calculated from a look-up table based on the available electrical energy; purging an anode of the fuel cell stack; and providing a controlled flow of hydrogen to the anodes and diverting the flow of air from the exhaust to the cathode inlet.
地址 Detroit MI US