Adaptive Inverse Control

Chapter 9 - System Integration

System Integration

 

9.0 INTRODUCTION

Many different control systems can be configured from the parts that have been developed in the previous chapters. Each system would have an adaptive inverse controller connected to a plant to be controlled. The plant may or may not have an attached adaptive disturbance canceler. Among these systems, one has been selected for discussion here and its block diagram is shown in Fig. 9.1. In this system, the plant uses an adaptive disturbance canceler like that of Fig. 8.7. The controller and the offline method for obtaining it are the same as those of Fig. 6.4. The adaptive process for finding k(z) incorporates dithering scheme C.

This system was built in software and tested extensively. Although it has many parts, it turns out to be a solid, robust system. A straightforward start-up procedure is the following: Use the panic button to break the disturbance canceling feedback loop until k(z) converges to P(z), then close this loop. In the event of a sudden catastrophic change in P(z) that would cause the entire system to go unstable, push the panic button until k(z) converges to the new P(z). Without the disturbance canceler, stability is much less of a consideration. Basically, the system will be stable as long as the plant P(z) is stable.

Several questions remain about this system: the choice of dither power, the choice of µ, and the resulting time constant of the adaptive process. Finally, the output error power needs to be evaluated.

09_Adaptive_Inverse_Control-1.jpg

Figure 9.1 A completely integrated adaptive inverse control system using dither.

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