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Discrete-time design of state-derivative feedback control laws

机译:状态导数反馈控制律的离散时间设计

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State-derivative feedback control laws can be very useful in the control of systems using accelerometers as sensors. Moreover, in cases where both state and state derivative measurements are available, a state-derivative feedback controller can be employed as a backup alternative in the case of sensor failure. The present work is concerned with the design of such a controller in a discrete-time framework, assuming that the plant input is kept constant between sampling times, which is typically the case in digital control implementations. More specifically, this paper proposes a method to design a state-derivative feedback gain matrix in order to obtain equivalence to a given discrete-time state feedback control law. It is assumed that the plant is linear and time-invariant, and that the sampling of the state-derivative occurs just before the update of the control value. The proposed method consists of a direct digital design in the sense that it does not require the preliminary design of a continuous-time controller. For illustration, a simulated example involving the suppression of vibrations in a mechanical system is presented. The results show that the state-derivative feedback controller provides suitable damping of the vibrations in the case of failure of a displacement sensor employed by the conventional state feedback controller, even in the presence of measurement noise and parameter variations.
机译:在使用加速度计作为传感器的系统控制中,状态导数反馈控制律可能非常有用。此外,在状态和状态导数测量值均可用的情况下,在传感器故障的情况下,可以使用状态导数反馈控制器作为备用方案。本工作与离散时间框架中这种控制器的设计有关,假设工厂输入在采样时间之间保持恒定,这在数字控制实现中通常是这种情况。更具体地说,本文提出一种设计状态导数反馈增益矩阵的方法,以便获得与给定离散时间状态反馈控制律的等价性。假设工厂是线性的并且是时不变的,并且状态导数的采样就在控制值更新之前进行。在不需要连续时间控制器的初步设计的意义上,所提出的方法包括直接数字设计。为了说明,给出了一个涉及抑制机械系统中振动的模拟示例。结果表明,即使在存在测量噪声和参数变化的情况下,在传统状态反馈控制器使用的位移传感器出现故障的情况下,状态导数反馈控制器也可以提供适当的振动阻尼。

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