首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems;SMASIS2011 >NONLINEAR STOCHASTIC FEEDBACK CONTROLLERS FOR VIBRATORY ENERGY HARVESTERS WITH POWER FLOW CONSTRAINTS
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NONLINEAR STOCHASTIC FEEDBACK CONTROLLERS FOR VIBRATORY ENERGY HARVESTERS WITH POWER FLOW CONSTRAINTS

机译:具有潮流约束的振动能量采集器的非线性随机反馈控制器

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This study addresses the formulation of feedback controllers for stochastically-excited vibratory energy harvesters. Maximizing power generation from stochastic disturbances can be accomplished using LQG control theory, with the transducer current treated as the control input. For the case where the power flow direction is unconstrained, an electronic drive capable of extracting as well as delivering power to the transducer is required to implement the optimal controller. It is demonstrated that for stochastic disturbances characterized by second-order, bandpass-filtered white noise, energy harvesters can be passively tuned such that optimal stationary power generation only requires half of the system states for feedback in the active circuit. However, there are many applications where the implementation of a bi-directional power electronic drive is infeasi-ble, due to the higher parasitic losses they must sustain. If the electronics are designed to be capable of only single-directional power flow (i.e., where the electronics are incapable of power injection), then these parasitics can be reduced significantly, which makes single-directional converters more appropriate at smaller power scales. The constraint on the directionality of power flow imposes a constraint on the feedback laws that can be implemented with such converters. In this paper, we present a sub-optimal nonlinear control design technique for this class of problems, which exhibits an analytically computable upper bound on average power generation.
机译:这项研究解决了随机激励振动能量采集器的反馈控制器的制定问题。可以使用LQG控制理论来实现将随机干扰产生的能量最大化,并将传感器电流作为控制输入。对于功率流向不受限制的情况,需要一个能够提取功率并将功率传递给换能器的电子驱动器来实现最佳控制器。事实证明,对于以二阶带通滤波白噪声为特征的随机干扰,可以对能量采集器进行被动调整,以使最佳的固定式发电只需要系统状态的一半即可在有源电路中进行反馈。但是,在许多应用中,由于双向电力电子驱动器必须承受更高的寄生损耗,因此难以实施。如果将电子设备设计为仅能够单向传输电流(即,在电子设备无法进行功率注入的情况下),则可以大大减少这些寄生现象,这使得单向转换器更适合于较小的功率规模。功率流方向性的约束对可以用这种转换器实现的反馈定律施加了约束。在本文中,我们针对此类问题提出了一种次优的非线性控制设计技术,该技术表现出平均发电量的解析可计算上限。

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