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Science fiction is often presented as a source of utopia, or even of prophecies, used in capitalism to promote social, political and technoscientific innovations. Science Fiction and Innovation Design assesses the validity of this approach by exploring the impact this imaginary world has on the creativity of engineers and researchers. Companies seek to anticipate and predict the future through approaches such as design fiction: mobilizing representations of science fiction to create prototypes and develop scenarios relevant to organizational strategy. The conquest of Mars or the weapons of the future are examples developed by authors to demonstrate how design innovation involves continuous dialogue between multiple players, from the scientist to the manager, through to the designers and the science fiction writers.
Science fiction is the playground of the imagination. If you are interested in science or fascinated with the future then science fiction is where you explore new ideas and let your dreams and nightmares duke it out on the safety of the page or screen. But what if we could use science fiction to do more than that? What if we could use science fiction based on science fact to not only imagine our future but develop new technologies and products? What if we could use stories, movies and comics as a kind of tool to explore the real world implications and uses of future technologies today? Science Fiction Prototyping is a practical guide to using fiction as a way to imagine our future in a whole new way. Filled with history, real world examples and conversations with experts like best selling science fiction author Cory Doctorow, senior editor at Dark Horse Comics Chris Warner and Hollywood science expert Sidney Perkowitz, Science Fiction Prototyping will give you the tools you need to begin designing the future with science fiction. The future is Brian David Johnson’s business. As a futurist at Intel Corporation, his charter is to develop an actionable vision for computing in 2021. His work is called “future casting”—using ethnographic field studies, technology research, trend data, and even science fiction to create a pragmatic vision of consumers and computing. Johnson has been pioneering development in artificial intelligence, robotics, and reinventing TV. He speaks and writes extensively about future technologies in articles and scientific papers as well as science fiction short stories and novels (Fake Plastic Love and Screen Future: The Future of Entertainment, Computing and the Devices We Love). He has directed two feature films and is an illustrator and commissioned painter. Table of Contents: Preface / Foreword / Epilogue / Dedication / Acknowledgments / 1. The Future Is in Your Hands / 2. Religious Robots and Runaway Were-Tigers: A Brief Overview of the Science and the Fiction that Went Into Two SF Prototypes / 3. How to Build Your Own SF Prototype in Five Steps or Less / 4. I, Robot: From Asimov to Doctorow: Exploring Short Fiction as an SF Prototype and a Conversation With Cory Doctorow / 5. The Men in the Moon: Exploring Movies as an SF Prototype and a Conversation with Sidney Perkowitz / 6. Science in the Gutters: Exploring Comics as an SF Prototype and a Conversation With Chris Warner / 7. Making the Future: Now that You Have Developed Your SF Prototype, What’s Next? / 8. Einstein’s Thought Experiments and Asimov’s Second Dream / Appendix A: The SF Prototypes / Notes / Author Biography
Our love affair with the digital interface is out of control. We’ve embraced it in the boardroom, the bedroom, and the bathroom. Screens have taken over our lives. Most people spend over eight hours a day staring at a screen, and some “technological innovators” are hoping to grab even more of your eyeball time. You have screens in your pocket, in your car, on your appliances, and maybe even on your face. Average smartphone users check their phones 150 times a day, responding to the addictive buzz of Facebook or emails or Twitter. Are you sick? There’s an app for that! Need to pray? There’s an app for that! Dead? Well, there’s an app for that, too! And most apps are intentionally addictive distractions that end up taking our attention away from things like family, friends, sleep, and oncoming traffic. There’s a better way. In this book, innovator Golden Krishna challenges our world of nagging, screen-based bondage, and shows how we can build a technologically advanced world without digital interfaces. In his insightful, raw, and often hilarious criticism, Golden reveals fascinating ways to think beyond screens using three principles that lead to more meaningful innovation. Whether you’re working in technology, or just wary of a gadget-filled future, you’ll be enlighted and entertained while discovering that the best interface is no interface.
Many designers enjoy the interfaces seen in science fiction films and television shows. Freed from the rigorous constraints of designing for real users, sci-fi production designers develop blue-sky interfaces that are inspiring, humorous, and even instructive. By carefully studying these “outsider” user interfaces, designers can derive lessons that make their real-world designs more cutting edge and successful.
Fantasy and science fiction are both involved in the process of innovation in techno-scientific societies. Long regarded as a hindrance to rationality, and to science, science fiction has become the object of praise in recent decades. Innovative organizations use science fiction to stimulate the creativity of their teams, and more and more entrepreneurs are using its influence to develop innovation. Scientific practice relies in part on an imaginary dimension. The mapping of the technical imagination of science fiction has become an important strategic issue, as has its patentability. The conquest of space, the construction of cyberspace and virtual reality, biotechnologies and nanotechnologies are all at the center of futuristic fictions that participate in scientific speeches and discoveries.
Fantasy and science fiction are both involved in the process of innovation in techno-scientific societies. Long regarded as a hindrance to rationality, and to science, science fiction has become the object of praise in recent decades. Innovative organizations use science fiction to stimulate the creativity of their teams, and more and more entrepreneurs are using its influence to develop innovation. Scientific practice relies in part on an imaginary dimension. The mapping of the technical imagination of science fiction has become an important strategic issue, as has its patentability. The conquest of space, the construction of cyberspace and virtual reality, biotechnologies and nanotechnologies are all at the center of futuristic fictions that participate in scientific speeches and discoveries.
"In recent years, many character designs made for movies and video games have been carried out using complex computer-based processes. User-friendly software has made it easier to produce high computation artwork and multiple texture maps. With higher graphic performance provided by rapidly improving hardware, the continuing demand for innovation poses new requirements for the entertainment industry. Science fiction (sci-fi) in video games and movies has limitless capabilities, and can be created to achieve a wide variety of visual goals. One important argument presented in this thesis is that science fiction stories, unlike the related genre of fantasy, have historically intended to have at least a faint grounding in science-based fact or theory at the time the story was created. However, this connection has become tenuous, or even non-existent, in much of today’s science fiction. The author of this paper studied character design, and analyzed examples from the fields of robotics and prosthetics, as well as innovations in military technology, followed by experiments with different approaches to construct better detail and character elements in 3D. This research aims to explore the combining of the need for innovation in character design, with the possibilities derived from 3D art and other substantive technologies."--Abstract.