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空中水母AirJelly
空中水母的环境是空气。与水下水母不同,远程控制的水母——空中水母不是在水中游,而是在广阔的空中滑翔,因为它有一个中央电机装置和一个智能听候指令的体系。它能够这样是因为它有一个充满氦气的球形网。 空中水母仅有的动力来源就是连接中央电动驱动器的两个锂离子电池。中央驱动器把动力传输到一个锥齿轮上,然后再传给八个连续的直齿轮,直齿轮通过曲柄带动水母上的八个“触角”。每个“触角”都设计成鱼鳍鳍条结构。把蠕动当做这个球形网的动力到目前为止在空军史上还是空白。空中水母是第一个以蠕动为驱动力的室内飞行物体。这种新型的驱动理念基于反弹原理的助推力,让水母轻轻地在空中穿行。 AirJellys environment is the air. Unlike AquaJelly, the remote-controlled jellyfish AirJelly does not swim through water, but instead glides instead through a sea of air thanks to its central electric drive unit and an intelligent, adaptive mechanism. It is able to do so because it consists of a helium-filled ballonett. AirJellys sole source of power is two lithium-ion polymer batteries connected to the central electric drive unit. It transmits the force to a bevel gear and from there to a succession of eight spur gears, which move the eight tentacles of the jellyfish via cranks. Each tentacle is designed as a structure with Fin Ray Effect . Propulsion of a ballonett by means of peristaltic motion is hitherto unknown in the history of aviation. AirJelly is the first indoor flight object with peristaltic drive. This new drive concept, with propulsion based on the principle of recoil, moves the jellyfish gently through the air.
  1. 2009/11/6
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立体鼹鼠机—吸引人的可编程机器人系统
立体鼹鼠机在不久的将来会在技术培训中发挥重要的作用。这些备有电脑芯片的立方体可以紧密接连接在一起。鼹鼠机之间可以相互沟通交流。能量和信号从一个立体鼹鼠机传递给下一个,这样也保证了能量的供应以及信号的传递。年轻人可以用这种机器给自己制造的机器人编程。Molecubes – an attractive programmable robotics system Molecubes could play a significant role in technical training in the near future. These cubes, fitted with computer chips, can be successively attached to each other. Each Molecube communicates with all the other cubes; the energy supply and transmission of signals from one Molecube to the next are thereby ensured. Young people can use the Molecubes to build and program their own robots.
  1. 2009/10/31
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带有鳍形夹具的仿生三角架—多方位运动和自动抓取
仿生三角架利用了自然界中鱼鳍的结构,首次将三维空间应用到空中企鹅和水下企鹅项目中,以便实现高效和多方位的自动化。三个可扩展伸缩的金丝玻璃纤维杆降低了需要被替换的量,同时允许最大90度的运动。BionicTripod with FinGripper versatile movement and adaptive grasping The BionicTripod makes use of the bionic Fin Ray® structure, which was transferred to three-dimensional space for the first time in the AirPenguin and AquaPenguin projects for efficient, versatile automation. Three extendible and retractable filigree fibreglass rods reduce the mass to be displaced, while allowing a maximum scope of movement of up to 90 degrees.
  1. 2009/10/29
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[第17讲]NAND flash 读写
NAND FLASH存储器件有非易失、容量大、功耗低、易擦除等特点,这里就涉及到FLASH的种类问题,NORFLASH和NANDFLASH区别在于:NOR的特点是芯片内执行,即应用程序可以直接在flash闪存内运行,不必再把代码读到系统RAM中。但是工艺复杂,价格比较贵。NAND结构能提供极高的单元密度,可以达到高存储密度,大存储容量,而且便宜。缺点,就是无法寻址直接运行程序,只能存储数据。另外NAND FLASH 非常容易出现坏区,所以需要有校验的算法。在NAND闪存中每个块的最大擦写次数是一百万次,而NOR的擦写次数是十万次。NAND存储器除了具有10比1的块擦除周期优势,典型的NAND块尺寸要比NOR器件小8倍。
  1. 2009/10/28
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空中企鹅AirPenguin_Festo仿生技术
airPenguin –空中企鹅——自动飞翔的机器企鹅. 随着空中企鹅的问世, Festo公司的工程师们创造了人造企鹅,并教会他们“在空中自主飞行”。为此,控制和调节技术进一步发展成自我调节生物机电一体化系统,该系统可以在今后的生产适应性发挥作用。 一组3只自动飞行的企鹅自由盘旋在空中超声发射站监控下的固定区域。企鹅能够自由的在这个空间内移动,因为一个微控制器赋予了他们自由的意志来以开拓这片空间。 autonomously flying robotic penguins With the AirPenguins, the engineers from Festo have created artificial penguins and have taught them "autonomous flight in the sea of air". For this purpose, control and regulating technology had to be further developed into self-regulating biomechatronic systems, which could also play a future role in adaptive production. A group of three autonomously flying penguins hovers freely through a defined air space that is monitored by ultrasound transmission stations. The penguins are at liberty to move within this space; a microcontroller gives them free will in order to explore it.
  1. 2009/10/23
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水下企鹅AquaPenguins_Festo仿生技术
水下企鹅- 技术-水下自动运载工具AquaPenguins - technology-bearers as autonomous underwater vehicle.与它自然界的原型一样,来自费斯托(Festo)公司的水下企鹅具有一个带水动力的身体轮廓。其优雅的推进力以及其可向各个方向移动的机翼头部和尾部,让机器人企鹅可以在狭窄的空间条件下自由穿行,并且在必要时及时出现甚至可以向后游——这一点可不像它们的自然界的原型。 仿生企鹅设计成水下自动运载工具,可以自由定位并且可在水池中穿行。这种工具有一个3D的海豚音声纳系统,使得“企鹅”可以与周围的伙伴们交流,比如避免互相碰撞。Like its natural archetype, the AquaPenguin from Festo has a hydrodynamic body contour. Its elegant wing propulsion and its head and tail sections, which can be moved in all directions, allow the robotic penguins to manoeuvre in cramped spatial conditions, to turn on the spot when necessary and – unlike their biological counterparts – even to swim backwards. The bionic Penguins are designed as autonomous underwater vehicles that independently orient themselves and navigate through the water basin. They are supported by a 3D sonar system which, as with dolphins, allows communication with their surroundings and with other robotic penguins – for example to avoid collisions.
  1. 2009/10/22
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固体图像传感器—电耦合器件CCD_光电技术
光电技术!主讲:杨应平!固体图像传感器—电耦合器件CCD!组成电荷耦合器件的基本元件(光敏元件)是电荷贮存电容器。它与电子线路中的金属氧化物半导体电容器(MOS)电路非常相似,见图sh16.1。MOS是由金属、氧化层(绝缘层)、P型半导体三层材料组成的器件。电偶合器件的基本单元内金属层做成电极,在P型半导体上加上正电压(VG)并达到某个特定值(Vh)后,在半导体层内会形成一个电荷贮存区(也叫位阱),这时,如有光照,则该区内会有电荷积累,且其电荷数量与光辐射强度成正比。每一个电荷贮存电容器中电荷贮存区所积累的电荷,与相应像元的光强相对应成正比,那么所有元件电荷贮存的分布情况便对应于观测对像的一个二维电子潜像。
  1. 2009/9/28
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NAND Flash读写-学ARM像学单片机一样简单(4)
Nand flash是一种掉电非易失的存储器,一种闪存。nand是指内部结构是用与非门组成存储单元的。ARM是ARM公司设计先进的数字产品核心应用技术,应用领域涉及:无线、网络、消费娱乐、影像、汽车电子、安全应用及存储装置。 ARM提供广泛的产品,包括:16/32位RISC微处理器、数据引擎、三维图形处理器、数字单元库、嵌入式存储器、外设、软件、开发工具以及模拟和高速连接产品。 ARM公司协同众多技术合作伙伴为业界提供快速、稳定的完整系统解决方案。
  1. 2009/9/24
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ABB 迎“风”飞扬
在风能领域有着悠久历史和领先技术的ABB高压电机,以产品的高品质和及时交货闻名于世,在中国目前其三分之一业务来自风能。在全球已经与国际领先风能厂商有成功合作的ABB高压电机,在中国更关注与本土合作伙伴的长远发展。在第六届亚洲风能展上,中国工控网有幸邀请到ABB高压电机业务北亚区总裁理查德 (Richard Suurland)先生和ABB高压电机市场销售经理李春晖先生与我们分享了ABB在中国风能领域的发展和对中国风能市场的见解,并为我们介绍了ABB在风电的主流发电机产品。查看详细文字报导>>> 查看英文报导
  1. 2009/7/22
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Equipment Operations Module2.1 Upgrade
Teacher:Eric Enet Principal Instructor(主讲) Agenda(议程): Module1:Introduction(绪论) *Section1:Course Introduction *Section2:Software and Hardware Requirements *Section3:Preparing to Upgrade Module2:Installation(安装) *Section1:Production Server *Section2:Development Components Module3:Licensing(许可) *Section1:Licensing(许可) Module4:Conclusion(结论) *Section1:Summary(概要) *Section2:Additional Resources(更多资料)
  1. 2009/7/13
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