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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Model Predictive Control for Power and Thermal Management of an Integrated Solid Oxide Fuel Cell and Turbocharger System
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Model Predictive Control for Power and Thermal Management of an Integrated Solid Oxide Fuel Cell and Turbocharger System

机译:集成固体氧化物燃料电池和涡轮增压器系统的功率和热管理的模型预测控制

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摘要

This paper identifies and addresses the control challenges associated with simultaneous power and thermal management of a 5-kW-class solid oxide fuel cell and gas turbine combined cycle system. A model predictive controller (MPC) is developed to achieve improved system performance subject to input and state constraints. The subsystem dynamic couplings and control authority limitations under thermal constraints are investigated by both static and dynamic analysis. Through judicious allocation of penalty parameters in the cost function associated with the fuel cell current, anode fuel flow rate, and generator load, several different MPC implementations are derived to explore different control design degree of freedom and their performance is evaluated. Simulation results show the efficacy of the MPC design by demonstrating the fast load transition while maintaining the stack temperature within the allowable operation limits.
机译:本文确定并解决了与5kW级固体氧化物燃料电池和燃气轮机联合循环系统同时进行功率和热管理相关的控制挑战。开发了模型预测控制器(MPC),以实现受输入和状态约束影响的改进的系统性能。通过静态和动态分析研究了子系统在热约束下的动态耦合和控制权限限制。通过在与燃料电池电流,阳极燃料流量和发电机负载相关的成本函数中合理分配惩罚参数,可以得出几种不同的MPC实现方案,以探索不同的控制设计自由度,并评估其性能。仿真结果表明了快速的负载转换,同时将烟囱温度保持在允许的操作极限内,从而显示了MPC设计的功效。

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