Optimal Observer Design of State Delay Systems

المؤلفون المشاركون

Chou, Fu-I
Cheng, Ming-Yang

المصدر

Mathematical Problems in Engineering

العدد

المجلد 2019، العدد 2019 (31 ديسمبر/كانون الأول 2019)، ص ص. 1-8، 8ص.

الناشر

Hindawi Publishing Corporation

تاريخ النشر

2019-01-31

دولة النشر

مصر

عدد الصفحات

8

التخصصات الرئيسية

هندسة مدنية

الملخص EN

This paper proposes a new method to design the observer for state delay systems such that (i) state estimation errors converge to zero quickly and (ii), at the same time, a quadratic performance measurement of the deviation of estimates from the actual states is minimized for reducing large error during the transient period of observation.

The proposed new approach fuses the merits of both the orthogonal functions approach and evolutionary optimization.

One illustrative example is given to verify the effectiveness and efficiency of the proposed new optimization method on performance improvement of state estimations.

From the illustrative example, in addition to the asymptotical convergence of the estimated state errors, the performance index for the proposed optimal design approach is clearly much lower than that of the nonoptimal design method.

نمط استشهاد جمعية علماء النفس الأمريكية (APA)

Chou, Fu-I& Cheng, Ming-Yang. 2019. Optimal Observer Design of State Delay Systems. Mathematical Problems in Engineering،Vol. 2019, no. 2019, pp.1-8.
https://search.emarefa.net/detail/BIM-1197682

نمط استشهاد الجمعية الأمريكية للغات الحديثة (MLA)

Chou, Fu-I& Cheng, Ming-Yang. Optimal Observer Design of State Delay Systems. Mathematical Problems in Engineering No. 2019 (2019), pp.1-8.
https://search.emarefa.net/detail/BIM-1197682

نمط استشهاد الجمعية الطبية الأمريكية (AMA)

Chou, Fu-I& Cheng, Ming-Yang. Optimal Observer Design of State Delay Systems. Mathematical Problems in Engineering. 2019. Vol. 2019, no. 2019, pp.1-8.
https://search.emarefa.net/detail/BIM-1197682

نوع البيانات

مقالات

لغة النص

الإنجليزية

الملاحظات

Includes bibliographical references

رقم السجل

BIM-1197682