Buch, Englisch, 248 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 571 g
Technologies and System
Buch, Englisch, 248 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 571 g
ISBN: 978-94-007-0578-4
Verlag: Springer Netherlands
The efforts during last four decades or so have yielded a wide spectrum of tactile sensing technologies and engineered solutions for both intrinsic and extrinsic touch sensors. Nowadays, new materials and structures are being explored for obtaining robotic skin with physical features like bendable, conformable, and stretchable. Such features are important for covering various body parts of robots or 3D surfaces. Nonetheless, there exist many more hardware, software and application related issues that must be considered to make tactile sensing an effective component of future robotic platforms. This book presents an in-depth analysis of various system related issues and presents the trade-offs one may face while developing an effective tactile sensing system. For this purpose, human touch sensing has also been explored. The design hints coming out of the investigations into human sense of touch can be useful in improving the effectiveness of tactile sensory modality in robotics and other machines. Better integration of tactile sensors on a robot’s body is prerequisite for the effective utilization of tactile data.
The concept of semiconductor devices based sensors is an interesting one, as it allows compact and fast tactile sensing systems with capabilities such as human-like spatio-temporal resolution. This book presents acomprehensive description of semiconductor devices based tactile sensing. In particular, novel Piezo Oxide Semiconductor Field Effect Transistor (POSFET) based approach for high resolution tactile sensing has been discussed in detail. Finally, the extension of semiconductors devices based sensors concept to large and flexile areas has been discussed for obtaining robotic or electronic skin.
With its multidisciplinary scope, this book is suitable for graduate students and researchers coming from diverse areas such robotics (bio-robots, humanoids, rehabilitation etc.), applied materials, humans touch sensing, electronics, microsystems, and instrumentation. To better explain the concepts the text is supported by large number of figures.
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Research
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Weitere Infos & Material
Part I Technologies And System.- 1 Touch Sensing - Why and Where?- 2 Tactile Sensing: Definitions and Classification.- 3 Human Tactile Sensing.- 4 System Issues, Requirements and Expectations.- 5 Tactile Sensing Technologies.- Part II Integrated Tactile Sensing.- 6 Integrated Tactile Sensing on Silicon.- 7 POSFET I – The Touch Sensing Device.- 8 POSFET II - The Tactile Sensing Chip.- Appendix A Fundamentals of Piezoelectricity.- Appendix B Modeling of Piezoelectric Polymers.- Appendix C Design of Charge/Voltage Amplifiers.- Index.