首页> 外文会议>9th International conference on fuel cell science, engineering, and technology 2011 >Simultaneous Turbine Speed Regulation and Fuel Cell Airflow Tracking of a SOFC/GT Hybrid Plant with the use of Airflow Bypass Valves
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Simultaneous Turbine Speed Regulation and Fuel Cell Airflow Tracking of a SOFC/GT Hybrid Plant with the use of Airflow Bypass Valves

机译:使用气流旁通阀同时进行SOFC / GT混合动力装置的涡轮速度调节和燃料电池气流跟踪

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This paper studies a novel control methodology aimed at regulating and tracking turbo machinery synchronous speed and fuel cell mass flow rate of a SOFC/GT hardware simulation facility with the sole use of airflow bypass valves. The hybrid facility under consideration consists of a 120kW auxiliary power unit gas turbine coupled to a 300kW SOFC hardware simulator. The hybrid simulator allows testing of a wide variety of fuel cell models under a Hardware-in-the-Loop configuration. Small changes in fuel cell cathode airflow have shown to have a large impact on system performance. Without simultaneous control of turbine speed via load or auxiliary fuel, fuel cell airflow tracking requires an alternate actuator methodology. The use of bypass valves to control mass flow rate and decouple turbine speed allows for a greater flexibility and feasibility of implementation at the larger scale, where synchronous speeds are required. This work utilizes empirically derived Transfer Functions (TF) as the system model and applies a Fuzzy Logic (FL) control algorithm that can be easily incorporated to nonlinear models of direct fired recuperated hybrid plants having similar configurations. This methodology is tested on a SIMULINK/MATLAB platform for various perturbations of turbine load and fuel cell heat exhaust.
机译:本文研究了一种新颖的控制方法,旨在仅通过气流旁通阀来调节和跟踪SOFC / GT硬件模拟设施的涡轮机械同步速度和燃料电池质量流率。正在考虑的混合动力设施包括一个120kW的辅助动力装置燃气轮机,该燃气轮机与一个300kW的SOFC硬件模拟器相连。混合仿真器允许在“硬件在环”配置下测试多种燃料电池模型。燃料电池阴极气流的微小变化已显示出对系统性能的巨大影响。在没有通过负载或辅助燃料同时控制涡轮速度的情况下,燃料电池气流跟踪需要替代的执行器方法。使用旁通阀来控制质量流量和使涡轮速度解耦可以在需要同步速度的较大规模上实现更大的灵活性和可行性。这项工作利用经验导出的传递函数(TF)作为系统模型,并应用了一种模糊逻辑(FL)控制算法,该算法可以轻松地并入具有类似配置的直燃回热式混合动力植物的非线性模型。该方法论已在SIMULINK / MATLAB平台上经过测试,可对涡轮机负载和燃料电池排热的各种扰动进行测试。

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