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首页> 外文期刊>Journal of intelligent material systems and structures >Multi-objective optimal control of vibratory energy harvesting systems
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Multi-objective optimal control of vibratory energy harvesting systems

机译:振动能量采集系统的多目标最优控制

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This article examines the use of actively controlled electronics to maximize the energy harvested from a stationary stochastic disturbance. In prior work by the authors, it has been shown that when the harvester dynamics are linear and the transmission losses in the electronics are resistive, the optimal feedback controller is the solution to a nonstandard linear-quadratic-Gaussian optimal control problem. This article augments the theory in the following three distinct ways: (a) It illustrates how to use linear matrix inequalities to balance the objective of energy harvesting against other response control objectives (such as minimum requirements on closed-loop damping and maximum levels of voltage response), in the synthesis of the optimal feedback law; (b) it establishes a more realistic characterization of the transmission losses in the actively controlled power electronics used to regulate the extraction of power; and (c) it illustrates how the optimal control theory for resistive loss models can be extended to accommodate the more realistic loss models. The theory is illustrated in the context of a piezoelectric energy harvesting model, and an example is used to illustrate that the theory can be used to simultaneously optimize the feedback law, together with the switching frequency and storage bus voltage of the power electronics.
机译:本文研究了主动控制电子设备的使用,以最大程度地利用静态随机干扰收集的能量。在作者的先前工作中,已经表明,当收割机动力学是线性的并且电子设备中的传输损耗是电阻性的时,最优反馈控制器是非标准线性二次高斯最优控制问题的解决方案。本文通过以下三种不同的方式扩充了该理论:(a)说明了如何使用线性矩阵不等式来平衡能量收集的目标与其他响应控制目标(例如,对闭环阻尼的最低要求和最大电压水平)响应),综合最佳反馈定律; (b)它对用于调节功率提取的主动控制功率电子设备中的传输损耗建立了更现实的描述; (c)说明了如何扩展电阻损耗模型的最佳控制理论以适应更现实的损耗模型。在压电能量收集模型的背景下说明了该理论,并通过一个示例说明了该理论可用于同时优化反馈定律以及功率电子设备的开关频率和存储总线电压。

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