www.久久久久|狼友网站av天堂|精品国产无码a片|一级av色欲av|91在线播放视频|亚洲无码主播在线|国产精品草久在线|明星AV网站在线|污污内射久久一区|婷婷综合视频网站

當(dāng)前位置:首頁 > 智能硬件 > 機(jī)器人
[導(dǎo)讀] January 17, 2014 06:26pm ETYour Robot Helper is On The Way Now It Can Learn From Its Friends &n

January 17, 2014 06:26pm ETYour Robot Helper is On The Way Now It Can Learn From Its Friends
 

I’ll be right with you sir, just after I put this cup away. This is a cup, right? Credit: garrettc. View full size image

This arTIcle was originally published at The ConversaTIon. The publicaTIon contributed the arTIcle to LiveScience's Expert Voices: Op-Ed & Insights.

January is a time when many of us seek to better ourselves. We want to learn a new skill or improve an existing one. A network designed especially for robots, RoboEarth, is being tested in the Netherlands to help them with their attempts at self-improvement. Soon our mechanical friends will be able to swap tips on how to best care for us and learn about their worlds.

As demonstrated by Google’s recent purchase of robotics companies and Amazon’s automated warehouses, intelligent, autonomous service robots are starting to look commercially viable.

Service robots are machines which can perform tasks with or for humans in normal environments (rather than in controlled factory settings). Intelligent, autonomous service robots have some freedom about how they complete tasks and need to make decisions about how to act based on what they know and can sense.

There are robots that can make sandwiches, find objects in your home, do your washing and even assemble Ikea furniture.

Easy on the mayo, please. Sandwich-making robots

Learning from scratch every time

When building systems such as these, one of the major bottlenecks is providing the robot with the knowledge about the world it needs in order to perform its task. This knowledge is usually centred around the objects involved in a task: what they look like, how they can be picked up or where they can be found. Knowledge about space (maps of buildings and rooms) and action (how to change the world to achieve a particular end) is usually essential too.

But robots have no built-in knowledge about these kinds of things. Everything they need to know must be engineered into their software somehow, such as by using machine learning techniques then connecting the results of this training to symbols within the robot’s software to allow it to refer to the things in the world.

This knowledge engineering typically takes a huge amount of time for even a simple task and is usually limited in that the robot only ends up knowing about exactly the things you’ve taught it. For example, it might be able to recognise a box of Cornflakes, but not a box of Frosties, or perhaps not even a box of Cornflakes with different packaging.

This means that it is very difficult to just send a robot into a new environment, or ask it to perform a new task, without having a team of experts on hand to do this training. No-one can afford to ship a computer science PhD graduate with every robot so researchers around the world are looking at how robots can be equipped to quickly learn about a new environment when they are put in one.

Learning from robot friends

RoboEarth – a collaboration between universities and Philips – has developed an approach to this based on the ability to share knowledge over the internet.

The system has been likened to a social network or a Wikipedia for robots as it allows the knowledge created for one robot to be shared with another robot, anywhere else in the world, via a shared, web-accessible database. When one robot in Germany learns what a toaster is and how it works, it can upload that information into the network. A robot in Japan which has never used a toaster before can then log in and learn how to recognise one.

To enable robots with different bodies and sensors to learn from each other, RoboEarth has an abstraction layer which allows shared information to assume common capabilities across all platforms. This is much like how a desktop operating system like Windows allows the same software to run on many different types of computers.

To allow robots to easily find the knowledge they require, the contents of the RoboEarth database are structured via an ontology. This describes each entry using logic which can be queried automatically and relates connected entries. So an oven will be listed as a type of household appliance and a mars bar as a type of food.

The RoboEarth demonstration is just the start of what will become an increasing trend of intelligent, autonomous machines sharing knowledge over the internet. While there are limitations to the current demonstrators, in terms of how well shared knowledge transfers across different systems and environments, we can expect this field to progress as robots begin to hit the market. The commercial need for robots to be able to learn from their peers will drive progress.

In the future it is easy to imagine both the current open protocols of RoboEarth educating robots worldwide, as well as a commercial alternative, like an app store, where robots and their owners can buy professionally engineered knowledge off the shelf. This will be a significant step towards the day when your morning orange juice or coffee will be brought by a robot helper, or at least a step towards helping it to tell the difference between the two.

Nick Hawes receives funding from the European Commission and EPSRC. He is affiliated with the University of Birmingham.

This article was originally published at The Conversation. Read the original article. The views expressed are those of the author and do not necessarily reflect the views of the publisher. This version of the article was originally published on LiveScience.

本站聲明: 本文章由作者或相關(guān)機(jī)構(gòu)授權(quán)發(fā)布,目的在于傳遞更多信息,并不代表本站贊同其觀點(diǎn),本站亦不保證或承諾內(nèi)容真實(shí)性等。需要轉(zhuǎn)載請聯(lián)系該專欄作者,如若文章內(nèi)容侵犯您的權(quán)益,請及時聯(lián)系本站刪除。
換一批
延伸閱讀

9月2日消息,不造車的華為或?qū)⒋呱龈蟮莫?dú)角獸公司,隨著阿維塔和賽力斯的入局,華為引望愈發(fā)顯得引人矚目。

關(guān)鍵字: 阿維塔 塞力斯 華為

加利福尼亞州圣克拉拉縣2024年8月30日 /美通社/ -- 數(shù)字化轉(zhuǎn)型技術(shù)解決方案公司Trianz今天宣布,該公司與Amazon Web Services (AWS)簽訂了...

關(guān)鍵字: AWS AN BSP 數(shù)字化

倫敦2024年8月29日 /美通社/ -- 英國汽車技術(shù)公司SODA.Auto推出其旗艦產(chǎn)品SODA V,這是全球首款涵蓋汽車工程師從創(chuàng)意到認(rèn)證的所有需求的工具,可用于創(chuàng)建軟件定義汽車。 SODA V工具的開發(fā)耗時1.5...

關(guān)鍵字: 汽車 人工智能 智能驅(qū)動 BSP

北京2024年8月28日 /美通社/ -- 越來越多用戶希望企業(yè)業(yè)務(wù)能7×24不間斷運(yùn)行,同時企業(yè)卻面臨越來越多業(yè)務(wù)中斷的風(fēng)險(xiǎn),如企業(yè)系統(tǒng)復(fù)雜性的增加,頻繁的功能更新和發(fā)布等。如何確保業(yè)務(wù)連續(xù)性,提升韌性,成...

關(guān)鍵字: 亞馬遜 解密 控制平面 BSP

8月30日消息,據(jù)媒體報(bào)道,騰訊和網(wǎng)易近期正在縮減他們對日本游戲市場的投資。

關(guān)鍵字: 騰訊 編碼器 CPU

8月28日消息,今天上午,2024中國國際大數(shù)據(jù)產(chǎn)業(yè)博覽會開幕式在貴陽舉行,華為董事、質(zhì)量流程IT總裁陶景文發(fā)表了演講。

關(guān)鍵字: 華為 12nm EDA 半導(dǎo)體

8月28日消息,在2024中國國際大數(shù)據(jù)產(chǎn)業(yè)博覽會上,華為常務(wù)董事、華為云CEO張平安發(fā)表演講稱,數(shù)字世界的話語權(quán)最終是由生態(tài)的繁榮決定的。

關(guān)鍵字: 華為 12nm 手機(jī) 衛(wèi)星通信

要點(diǎn): 有效應(yīng)對環(huán)境變化,經(jīng)營業(yè)績穩(wěn)中有升 落實(shí)提質(zhì)增效舉措,毛利潤率延續(xù)升勢 戰(zhàn)略布局成效顯著,戰(zhàn)新業(yè)務(wù)引領(lǐng)增長 以科技創(chuàng)新為引領(lǐng),提升企業(yè)核心競爭力 堅(jiān)持高質(zhì)量發(fā)展策略,塑強(qiáng)核心競爭優(yōu)勢...

關(guān)鍵字: 通信 BSP 電信運(yùn)營商 數(shù)字經(jīng)濟(jì)

北京2024年8月27日 /美通社/ -- 8月21日,由中央廣播電視總臺與中國電影電視技術(shù)學(xué)會聯(lián)合牽頭組建的NVI技術(shù)創(chuàng)新聯(lián)盟在BIRTV2024超高清全產(chǎn)業(yè)鏈發(fā)展研討會上宣布正式成立。 活動現(xiàn)場 NVI技術(shù)創(chuàng)新聯(lián)...

關(guān)鍵字: VI 傳輸協(xié)議 音頻 BSP

北京2024年8月27日 /美通社/ -- 在8月23日舉辦的2024年長三角生態(tài)綠色一體化發(fā)展示范區(qū)聯(lián)合招商會上,軟通動力信息技術(shù)(集團(tuán))股份有限公司(以下簡稱"軟通動力")與長三角投資(上海)有限...

關(guān)鍵字: BSP 信息技術(shù)
關(guān)閉
關(guān)閉