Mobile microrobotics
Series: Intelligent Robotics and Autonomous AgentsPublication details: Cambridge, Massachusetts: The MIT Press, 2017.Description: xxviii, 271p.: col.i ll.; hbk.: 23cmISBN:- 9780262036436
- 629.8932 SIT
| Item type | Current library | Collection | Call number | Copy number | Status | Barcode | |
|---|---|---|---|---|---|---|---|
Books
|
IIT Gandhinagar | General | 629.8932 SIT (Browse shelf(Opens below)) | 1 | Available | 034319 |
Browsing IIT Gandhinagar shelves,Collection: General Close shelf browser (Hides shelf browser)
|
|
|
|
|
|
|
||
| 629.8924019 BAR Human robot interaction: an introduction | 629.89246 BUL Distributed control of robotic networks: a mathematical approach to motion coordination algorithms | 629.892637 COR Robotics, vision and control: fundamental algorithms in Python | 629.8932 SIT Mobile microrobotics | 629.8933 RIM Mechanics of robot grasping | 629.895 GAY Beginning STM32 : developing with FreeRTOS, libopencm3 and GCC | 629.895 LEI Applied digital control: theory, design, and implementation |
Include bibliography & index.
The first textbook on micron-scale mobile robotics, introducing the fundamentals of design, analysis, fabrication, and control, and drawing on case studies of existing approaches.
Progress in micro- and nano-scale science and technology has created a demand for new microsystems for high-impact applications in healthcare, biotechnology, manufacturing, and mobile sensor networks. The new robotics field of microrobotics has emerged to extend our interactions and explorations to sub-millimeter scales. This is the first textbook on micron-scale mobile robotics, introducing the fundamentals of design, analysis, fabrication, and control, and drawing on case studies of existing approaches.
The book covers the scaling laws that can be used to determine the dominant forces and effects at the micron scale; models forces acting on microrobots, including surface forces, friction, and viscous drag; and describes such possible microfabrication techniques as photo-lithography, bulk micromachining, and deep reactive ion etching. It presents on-board and remote sensing methods, noting that remote sensors are currently more feasible; studies possible on-board microactuators; discusses self-propulsion methods that use self-generated local gradients and fields or biological cells in liquid environments; and describes remote microrobot actuation methods for use in limited spaces such as inside the human body. It covers possible on-board powering methods, indispensable in future medical and other applications; locomotion methods for robots on surfaces, in liquids, in air, and on fluid-air interfaces; and the challenges of microrobot localization and control, in particular multi-robot control methods for magnetic microrobots. Finally, the book addresses current and future applications, including noninvasive medical diagnosis and treatment, environmental remediation, and scientific tools.
https://mitpress.mit.edu/9780262036436/mobile-microrobotics/
There are no comments on this title.