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Titlebook: Control Reconfiguration of Dynamical Systems; Linear Approaches an Thomas Steffen Book 2005 Springer-Verlag Berlin Heidelberg 2005 Control

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,Staatsverschuldung — ein Problem?,external output of the reconfigured control loop match the output of the nominal control loop. The approach builds on the virtual actuator, designed in Chap. 8 to stabilise a plant after actuator faults. In contrast to the reconfiguration problems treated earlier, this goal does not lead to an equiv
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,Marktkorrektur und Ergänzungsbedürftigkeit,whether a signal path is present or not. The structural model is, therefore, a collection of binary values. The parameters of the system (the amplification of the signal paths) are not stored in the structural model. There are two main types of structural models developed by different communities: t
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Stoffe mit fraglichem Vitamincharakter,lity of this problem, which will be presented in this chapter. The next chapter will develop a novel solution inspired by the test presented here. In both cases, the structural approach to the disturbance decoupling problem has advantages over the classical approach. It is simple to implement, and i
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Allgemeine Grundrechtsdogmatik,ntral routine decouples a single output variable by assigning the necessary value to one control input variable, such that all influences on the chosen output variable are cancelled out. The important aspect is that the output variable is decoupled not only from the disturbance, but also from all ot
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https://doi.org/10.1007/978-3-642-97181-5In this chapter, the general reconfiguration problem is specialised by applying it to linear systems. The advantage is that the problem can be broken down into smaller parts by making use of superposition. This permits the analysis of how typical fault locations interact with the reconfiguration goals defined in the previous chapter.
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