مقاله انگلیسی رایگان در مورد شناسایی همگرایی فناوری – الزویر 2019

 

مشخصات مقاله
ترجمه عنوان مقاله شناسایی همگرایی فناوری در زمینه تحقیقات روباتیک
عنوان انگلیسی مقاله Identifying technology convergence in the field of robotics research
انتشار مقاله سال 2019
تعداد صفحات مقاله انگلیسی 16 صفحه
هزینه دانلود مقاله انگلیسی رایگان میباشد.
پایگاه داده نشریه الزویر
نوع نگارش مقاله
مقاله پژوهشی (Research Article)
مقاله بیس این مقاله بیس میباشد
نمایه (index) Scopus – Master Journals List – JCR
نوع مقاله ISI
فرمت مقاله انگلیسی  PDF
ایمپکت فاکتور(IF)
4.852 در سال 2018
شاخص H_index 93 در سال 2019
شاخص SJR 1.422 در سال 2018
شناسه ISSN 0040-1625
شاخص Quartile (چارک) Q1 در سال 2018
مدل مفهومی دارد
پرسشنامه ندارد
متغیر ندارد
رفرنس دارد
رشته های مرتبط مدیریت
گرایش های مرتبط مدیریت نوآوری و فناوری، نوآوری تکنولوژی
نوع ارائه مقاله
ژورنال
مجله / کنفرانس پیش بینی فناورانه و تغییرات اجتماعی – Technological Forecasting and Social Change
دانشگاه  Department of Technology Management of Innovation, The University of Tokyo, Japan
کلمات کلیدی تجزیه و تحلیل شبکه استناد، روباتیک، همگرایی فناوری، کاوش در فناوری، ارتباط تکنولوژیکی
کلمات کلیدی انگلیسی Citation network analysis، Robotics، Technology convergence، Tech mining، Technological relatedness
شناسه دیجیتال – doi
https://doi.org/10.1016/j.techfore.2018.09.005
کد محصول  E13399
وضعیت ترجمه مقاله  ترجمه آماده این مقاله موجود نمیباشد. میتوانید از طریق دکمه پایین سفارش دهید.
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فهرست مطالب مقاله:
Abstract
1. Introduction
2. Methodology
3. Results
4. Discussion
5. Conclusion
Acknowledgment
References

 

بخشی از متن مقاله:
Abstract

Robots have been developed as a result of the merging of various sophisticated technologies such as mechanical engineering, control systems, electronics, and software and they have played a significant role in automating the manufacturing industry. However, their rate of introduction in service sectors, especially the medical and healthcare sectors, is much slower than expected. Technology convergence may be one of the keys to promote the introduction of robots in new sectors e.g., the medical & healthcare sectors. Technological relatedness including technology convergence has been measured by various methodologies using citation network analysis, clustering, or technology similarity. Although these measurements could identify the overall characteristics of technology convergence, more detailed analyses are required to identify the specific patterns and instances of this convergence. The purpose of this research is first, to identify the technology convergence more precisely than before by using a new methodology named “module-based mining methodology;” second, to extract the patterns of technology convergence; and finally to examine the processes of technology convergence in the field of robotics research. This study would enable researchers and policymakers to achieve accelerated development of new products and services for new sectors including the medical and healthcare market.

Introduction

Robot technologies have been developed as a result of the merging of various sophisticated technologies such as mechanical engineering, control systems, electronics, and software for approximately half a century. Industrial robots, which have become indispensable intelligent machines as a tool of factory automation, have been introduced rapidly in various manufacturing industries such as automobile manufacturing and electronics, and are expected to contribute to healthcare & medicare, autonomous vehicles, the construction & maintenance of large infrastructure and plants such as bridges, tunnels, large buildings, agriculture, and other service sectors. In spite of high expectations, the implementation of robots in the medical & healthcare, construction, rescue, and other service fields has made much less progress than expected. In 2001, the Japan Robot Association (JARA) estimated the size of the Japanese medical and welfare market to be ¥260 billion (US$2.17 billion)1 , (e.g., education, home-based virtual training, entertainment-oriented rehabilitation systems) and this was expected to become ¥1.5 trillion (US$12.5 billion) by 2010 (Japan Robot Association, (JARA), 2001). However, the Ministry of Economy, Trade, Industry (METI) of Japan announced in 2013 that the Japanese market for the use of robots in the service sector in 2012 was estimated to be worth only ¥60 billion (US$0.5 billion) (Ministry of Economy, Trade & Industry, Japan (METI), 2013).

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