Target New ArrivalsHalloweenClothing, Shoes & AccessoriesHome & DecorKitchen & DiningPatio, Lawn & GardenGroceryHousehold EssentialsBabyBeautyTarget Beauty StudioPersonal CareSports & OutdoorsPetsHealthWellnessSchool & Office SuppliesToys & GamesElectronics & TechVideo GamesBooks, Music & MoviesParty SuppliesGift IdeasGift CardsShop by CommunityTarget OpticalDealsClearanceNew ArrivalsBack to SchoolCollegeTop DealsTarget Circle DealsWeekly AdShop Order PickupShop Same Day DeliveryRegistryRedCardTarget CircleFind Stores
Optimization of Dynamical Systems with Impulse Controls and Shocks - (Systems & Control: Foundations & Applications) (Hardcover) - 1 of 1

Optimization of Dynamical Systems with Impulse Controls and Shocks - (Systems & Control: Foundations & Applications) (Hardcover)

$99.99

In Stock

Free & easy returns
Free & easy returns
Return this item by mail or in store within 90 days for a full refund.
Eligible for registries and wish lists
Save 5% every day
With Target Circle™ Card (restrictions apply)

About this item

Highlights

  • This text explores the state-of-the-art in the rapidly developing theory of impulse control and introduces the theory of singular space-time transformations, a new method for studying shock mechanical systems.
  • About the Author: Boris Miller is the Principal research fellow of the Laboratory of Models and Algorithms for Image Processing of the A.A. Kharkevich Institute for Information Transmission Problems of the Russian Academy of Sciences (IITP RAS).
  • 624 Pages
  • Science, System Theory
  • Series Name: Systems & Control: Foundations & Applications

Description



Book Synopsis



This text explores the state-of-the-art in the rapidly developing theory of impulse control and introduces the theory of singular space-time transformations, a new method for studying shock mechanical systems. Two approaches in the theory of impulse control are presented: The first, more traditional approach defines the impulsive action as a discontinuity of phase coordinates depending on the current time, the state preceding the action, and its magnitude. The second requires the use of modern methods for describing dynamical systems - differential equations with measures. The impulse is treated as an idealization of a very short action of high magnitude, which produces an almost abrupt change of phase coordinates. The relation between these two approaches is also discussed, and several applications, both traditional and emerging, are considered.

This text is intended for graduate students and researchers in control engineering and optimal control theory for dynamical systems. Readers are assumed to be familiar with the theory of ODEs, optimal control, and functional analysis, though an appendix is included that covers many of the necessary mathematical concepts.



From the Back Cover



This text explores the state-of-the-art in the rapidly developing theory of impulse control and introduces the theory of singular space-time transformations, a new method for studying shock mechanical systems. Two approaches in the theory of impulse control are presented: The first, more traditional approach defines the impulsive action as a discontinuity of phase coordinates depending on the current time, the state preceding the action, and its magnitude. The second requires the use of modern methods for describing dynamical systems - differential equations with measures. The impulse is treated as an idealization of a very short action of high magnitude, which produces an almost abrupt change of phase coordinates. The relation between these two approaches is also discussed, and several applications, both traditional and emerging, are considered.

This text is intended for graduate students and researchers in control engineering and optimal control theory for dynamical systems. Readers are assumed to be familiar with the theory of ODEs, optimal control, and functional analysis, though an appendix is included that covers many of the necessary mathematical concepts.



About the Author



Boris Miller is the Principal research fellow of the Laboratory of Models and Algorithms for Image Processing of the A.A. Kharkevich Institute for Information Transmission Problems of the Russian Academy of Sciences (IITP RAS). He is currently a member of the editorial boards of Automation and Remote Control and The Journal of Information Processes.

Evgeny Rubinovich is the principal research fellow of the Incomplete Data Control Laboratory of the V.A.Trapeznikov Institute of Control Sciences of the Russian Academy of Sciences (ICS RUS). He is also Professor in the Department of Embedded Control Systems, The Moscow Institute of Physics and Technology (MIPT). Professor Rubinovich is currently Deputy Chief Editor of Automation and Remote Control and a member of the editorial board of Control Sciences.

Dimensions (Overall): 9.21 Inches (H) x 6.14 Inches (W) x 1.38 Inches (D)
Weight: 2.35 Pounds
Suggested Age: 22 Years and Up
Number of Pages: 624
Genre: Science
Sub-Genre: System Theory
Series Title: Systems & Control: Foundations & Applications
Publisher: Birkhauser
Format: Hardcover
Author: Boris Miller & Evgeny Rubinovich
Language: English
Street Date: September 20, 2024
TCIN: 1013623656
UPC: 9783031641237
Item Number (DPCI): 247-63-5651
Origin: Made in the USA or Imported
If the item details aren’t accurate or complete, we want to know about it.

Shipping details

Estimated ship dimensions: 1.38 inches length x 6.14 inches width x 9.21 inches height
Estimated ship weight: 2.35 pounds
We regret that this item cannot be shipped to PO Boxes.
This item cannot be shipped to the following locations: American Samoa (see also separate entry under AS), Guam (see also separate entry under GU), Northern Mariana Islands, Puerto Rico (see also separate entry under PR), United States Minor Outlying Islands, Virgin Islands, U.S., APO/FPO, Alaska, Hawaii

Return details

This item can be returned to any Target store or Target.com.
This item must be returned within 90 days of the date it was purchased in store, delivered to the guest, delivered by a Shipt shopper, or picked up by the guest.
See the return policy for complete information.

Additional product information and recommendations

Discover more options

Skip to next section

Best-selling Books

Skip to next section

Get top deals, latest trends, and more.