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[太阳能收集系统自适应控制].(Adaptive.Control.of.Solar.Energy.Collector.Systems).(葡)João.M.Lemos.文字版.pdf 6MB
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电子书http://www.minxue.net: 太阳能收集系统自适应控制
原名: Adaptive Control of Solar Energy Collector Systems
别名: 无
作者:  João M. Lemos
Rui Neves-Silva
José M. Igreja
译者:  无
图书分类: 科技
资源格式: PDF
版本: 文字版
出版社: João M. Lemos
Rui Neves-Silva
José M. Igreja
书号: 9783319068527
发行时间: 2014年
地区:  英国
语言:  英文
简介
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目录

Front Matter....Pages i-xxii
Solar Energy Collector Systems....Pages 1-25
Models and Dynamics....Pages 27-52
Predictive Adaptive Control with Linear Models....Pages 53-103
Multiple Model Adaptive Control....Pages 105-130
Nonlinear Adaptive Predictive Control....Pages 131-150
Nonlinear Adaptive Control....Pages 151-175
Adaptive Motion Planning....Pages 177-205
Conclusions....Pages 207-218
Back Matter....Pages 219-253

内容简介:
This book describes methods for adaptive control of distributed-collector solar fields: plants that collect solar energy and deliver it in thermal form. Controller design methods are presented that can overcome difficulties found in these type of plants:
they are distributed-parameter systems, i.e., systems with dynamics that depend on space as well as time;their dynamics is nonlinear, with a bilinear structure;there is a significant level of uncertainty in plant knowledge.
Adaptive methods form the focus of the text because of the degree of uncertainty in the knowledge of plant dynamics. Parts of the text are devoted to design methods that assume only a very limited knowledge about the plant. Other parts detail methods that rely on knowledge of the dominant plant structure. These methods are more plant specific, but allow the improvement of performance.

Adaptive Control of Solar Energy Collector Systems demonstrates the dynamics of solar fields to be rich enough to present a challenge to the control designer while, at the same time, simple enough to allow analytic work to be done, providing case studies on dynamics and nonlinear control design in a simple and revealing, but nontrivial way.

The control approaches treated in this monograph can be generalized to apply to other plants modelled by hyperbolic partial differential equations, especially process plants in which transport phenomena occur, plants like dryers, steam super-heaters and even highway traffic.

An important example, used repeatedly throughout the text, is a distributed-collector solar field installed at Plataforma Solar de Almeria, located in southern Spain. The control algorithms laid out in the text are illustrated with experimental results generated from this plant.

Although the primary focus of this monograph is solar energy collector, the range of other systems which can benefit from the methods described will make it of interest to control engineers working in many industries as well as to academic control researchers interested in adaptive control and its applications.
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备注:
本书可供相关专业学生与研究人员学习参考。
本书是Springer International Publishing出版的Advances in Industrial Control系列组成之一,后续我将继续更新此系列。


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