为了改善惯性动量轮的动静态性能,提高其转速跟踪精度和输出力矩精度,提出一种滑模变结构控制算法。通过建立包括永磁无刷直流电机和功率变换器在内的惯性动量轮状态空间平均模型,基于李导数形式表述的到达条件,设计并推导出滑模变结构...为了改善惯性动量轮的动静态性能,提高其转速跟踪精度和输出力矩精度,提出一种滑模变结构控制算法。通过建立包括永磁无刷直流电机和功率变换器在内的惯性动量轮状态空间平均模型,基于李导数形式表述的到达条件,设计并推导出滑模变结构控制律。为验证该控制律的有效性,在惯性动量轮上进行实验分析,实验结果表明:相比传统的PID控制算法,所采用的滑模变结构控制算法响应时间和超调量较小,绕组电流更加平滑,具有更好的动静态性能,转速跟踪精度从2.51 rad/s提高到0.21 rad/s,输出力矩精度从0.01 N m提高到0.001 N m。展开更多
Integrator forwarding is a recursive nonlinear design technique for the stabilization of feed-forward systems. However, this method still has some limitation. An improved design method is proposed to extend the field ...Integrator forwarding is a recursive nonlinear design technique for the stabilization of feed-forward systems. However, this method still has some limitation. An improved design method is proposed to extend the field of application of this technique. This method is used to design a stabilizer for the inertia wheel pendulum system. Moreover, it is shown that the control Lyapunov function which is obtained from this method can also be used to design a globally asymptotically stabilizing controller with optimality.展开更多
文摘为了改善惯性动量轮的动静态性能,提高其转速跟踪精度和输出力矩精度,提出一种滑模变结构控制算法。通过建立包括永磁无刷直流电机和功率变换器在内的惯性动量轮状态空间平均模型,基于李导数形式表述的到达条件,设计并推导出滑模变结构控制律。为验证该控制律的有效性,在惯性动量轮上进行实验分析,实验结果表明:相比传统的PID控制算法,所采用的滑模变结构控制算法响应时间和超调量较小,绕组电流更加平滑,具有更好的动静态性能,转速跟踪精度从2.51 rad/s提高到0.21 rad/s,输出力矩精度从0.01 N m提高到0.001 N m。
文摘Integrator forwarding is a recursive nonlinear design technique for the stabilization of feed-forward systems. However, this method still has some limitation. An improved design method is proposed to extend the field of application of this technique. This method is used to design a stabilizer for the inertia wheel pendulum system. Moreover, it is shown that the control Lyapunov function which is obtained from this method can also be used to design a globally asymptotically stabilizing controller with optimality.