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On reduction of control effort in feedback linearization GPC strategy applied to a solar furnace

机译:减少反馈线性化GPC策略在太阳能炉中的控制工作

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摘要

In this paper, the temperature control of a solar furnace is addressed by taking into account physical and safety constraints. In particular, the use of a feedback linearization generalized predictive control strategy is proposed where the fictitious model providing a virtual control signal is suitably selected to reduce the control effort by considering both the reference tracking task and the compensation of disturbances, represented by the variation of the input energy provided by the Sun, mainly because of the solar daily cycle and passing clouds. Simulation and experimental results show the effectiveness of the methodology in comparison with other approaches helping this technology to become an inexpensive alternative option for the material treatment and testing in the industrial context. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:在本文中,通过考虑物理和安全约束来解决太阳能炉的温度控制问题。特别是,提出了使用反馈线性化广义预测控制策略的建议,其中通过考虑参考跟踪任务和干扰补偿(由的变化表示),适当选择提供虚拟控制信号的虚拟模型以减少控制工作量。太阳提供的输入能量,主要是因为太阳的日周期和云层的经过。仿真和实验结果表明,与其他方法相比,该方法是有效的,从而使该技术成为工业环境中材料处理和测试的廉价替代选择。版权所有(c)2015 John Wiley&Sons,Ltd.

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