百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Leaping into innovation: CityUHK develops hybrid hopping robot with unrivalled mobility

 

A team of researchers at City University of Hong Kong (CityUHK) ingeniously integrated a spring-loaded telescopic leg beneath a quadcopter, creating an innovative hopping robot, named “Hopcopter”, which defies conventional boundaries. This breakthrough in robotic mobility has achieved unparalleled agility and efficiency, opening new possibilities for applications in complex environments.

Led by Professor Pakpong Chirarattananon, in the Departments of Biomedical Engineering (BME) and Mechanical Engineering, the Hopcopter team developed a hybrid robot that is capable of seamlessly transitioning between aerial flight and terrestrial hopping by integrating a passive telescopic leg with a nano quadcopter.

The research, titled “An agile monopedal hopping quadcopter with synergistic hybrid locomotion”, was recently published in the renowned journal Science Robotics. 

Flying robots like quadcopters have become increasingly popular in recent years for recreational use, surveillance and research. Despite their widespread use, they have limitations, such as short flight time and limited load capacity.

In nature, many animals, like parrotlets and sparrows, combine jumping and flying to move efficiently, jumping between branches and flying short distances to navigate through trees, but replicating this natural efficiency in robots is challenging due to the complexity and limitations of traditional jumping mechanisms. Previous robots capable of both jumping and flying couldn’t usually maintain continuous hopping, fine-tune their jump height, or sustain flight for extended periods.

To address these limitations, the research team added a spring-loaded telescopic leg to a quadrotor, creating the Hopcopter. This passive elastic leg enables energy storage and release without the need for direct leg actuation, allowing the robot to efficiently alternate between flying and hopping and extending its operational time. 

As a demonstration shows, the Hopcopter can move easily, hop, take off mid-hop, and fly like a regular quadcopter. It can hop at 2.38 meters per second and reach heights of 1.63 meters, surpassing the capabilities of state-of-the-art jumping robots. Hopcopter can also navigate uneven surfaces for search and rescue missions and use its leg as a bumper to prevent damage.

“Hopcopter’s ability to switch smoothly between flying and hopping could increase its range and operating time, making it a valuable tool for various industries,” said Dr Bai Songnan, Postdoc of BME and co-first author of the study. 

“We are excited to see how this technology can be adapted and applied to address various challenges in robotics and beyond.” added Professor Chirarattananon.

The team will focus on further refining the Hopcopter design and exploring its potential applications in real-world scenarios.

Video: https://www.youtube.com/watch?v=Qjcz2P3MtUk

Media enquiries: Eva Choy, Communications and Institutional Research Office, CityUHK (Tel: 3442 9325 / 9787 7671) 
 

YOU MAY BE INTERESTED

Back to top
大发888开户,| 措美县| 百家乐解析| 百家乐官网经验之谈| 杨筠松 24山 图| 大西洋百家乐官网的玩法技巧和规则| 大发888集团| 茅台百家乐官网的玩法技巧和规则| 大发888怎么开户| 苹果百家乐官网的玩法技巧和规则 | 菲律宾卡卡湾| 百家乐庄闲收益率| 百家乐网络视频游戏| 百家乐官网做中介赚钱| 威尼斯人娱乐网网上百家乐的玩法技巧和规则 | 真钱棋牌导航| 百家乐实战路| 康保县| 全讯网图库| 现金百家乐伟易博| 单机百家乐官网在线小游戏| 博王国际娱乐| 百家乐知道| 24山向水法吉凶断| TT娱乐城投注,| 威尼斯人娱乐城在线赌博网站| 德州百家乐官网21点桌| 百家乐官网有什么打法| 足球投注现金网| 百家乐骗局视频| 百家乐视频游戏帐号| 百家乐官网布| 凯旋门百家乐官网游戏| 威尼斯人娱乐| 大发888大发888娱乐游戏| 百家乐赌场公司| 百家乐神仙道官网| 百家乐官网赌场赌场平台| 百家乐官网的连庄连闲| 泽普县| 三易博娱乐城|