飞行汽车战胜交通拥堵

2019-08-29 17:10

“飞行汽车”将战胜交通拥堵

记者赶到第六届“空天杯”全国性自主创新创意大赛总决赛当场,发觉这场精采的智慧型大比拼已经在湘江之畔开演。“‘空天号’的复合型多多形式高清障车无人飞机,自主创新融合了直升飞机和固定翼飞机的优势,可以在随意标准下快速出入竞技场,为未来战场出示强悍的上空主导权;‘Airclimb航空智能机器人’可以无障稳定航空、遇阻碍攀登经过,然后快速变换为手机飞行模式,保持了在不一样层面自然环境下,四轴飞行器健身运动多形式的全自动变换和自动控制系统……” 

记者仔细观看了50余件比赛科技作品的自主创新详细介绍与市场前景剖析,发觉有许多著作都具备出乎意料的设想,某些新式航天器及其空天防御力管理体系新理念,在总决赛当场商品展示中心里,四轴飞行器的自主创新设计创意毫无疑问是最吸引住眼珠的。本次飞行器设计比赛上,南京航空航天大学“变翼垂直起降四轴飞行器”最让人印像刻骨铭心。这个四轴飞行器选用折叠式倾转的分布式系统驱动力翅膀,配用了分布式系统动力装置,可以在起降、巡航和着陆时根据伸缩和转动翅膀来保持垂直起降和髙速平飞,兼顾多旋翼的可靠性和固定翼的高效率,保持了让飞机起飞着陆已不依靠运动场,一起具有更高的巡航速度和高效率,促使飞机场的续航力時间和里程数获得了确保,改进了无人飞机的清障车协调能力,提升了无人飞机的情景适应能力。在将来,它彻底解决快递公司“网络化”派送的窘境,能保持“飞行汽车”构想,使日趋严重的交通堵塞难题获得破译。

一款参赛的无人机作品受到了评委们的青睐

“空天杯”比赛聚集航空航天高层次人才

展览厅的另一头,一棵灰黑色的圆球吸引住了记者的留意。新闻记者初次看到能飞的球,還是小说集《哈利·波特》中的法术球——“金色飞贼”。而当场出現的这颗灰黑色圆球,是怎样飞起來又能做些什么?原先,这颗“灰黑色飞贼”就是南京航空航天大学Transformers精英团队的著作。“可倾转驱动力的六轴双桨盘高层住宅援救形变四轴飞行器”是它的专业术语,它能够让桨盘平面图融入各种各样繁杂的航空室内环境,并将四轴飞行器与消防机器人的核心理念结合在一起,在解决高层住宅火灾事故中,能担负高层住宅火灾事故援救中的自然灾害监控器、正确引导疏散人员等工作中,深层次火灾现场执行积极援救;它的可形变特点及其球型机壳保持灵便的高层住宅路面清障车,能合理提升援救救援高效率。

国防科技工业生产空天防御力自主创新管理中心协同我国航宇学好、国防科技大学全自动总体目标鉴别重中之重试验室相互举行了这届“空天杯”全国性自主创新创意大赛。国防科技大学电子器件科学研究学院院长王雪松表达,在科技进步披荆斩棘的当今社会,人工智能技术、检测鉴别、新型材料、源动力已经深远影响着航天航空行业,在我国空天防御力管理体系也面临新的挑戰。举行“空天杯”比赛,就是说以便激起自主创新激情,塑造自主创新能力,以便推动技术性发展趋势,催产自主创新观念,促进在我国四轴飞行器、智能化检测和空天防御力管理体系的发展趋势,加快航空航天大国基本建设。

English version

"Flying car" will overcome traffic congestion

The reporter rushed to the 6th "Aerospace Cup" national independent innovation and creative contest finals on the spot, found that this brilliant smart competition has been played on the banks of Hangzhou. "'Aerospace'' composite multi-format high-definition obstacle unmanned aircraft, independent innovation combines the advantages of helicopters and fixed-wing aircraft, can quickly enter and exit the arena under random standards, and show strong air for future battlefields. Dominant power; 'Airclimb aviation intelligent robot' can stabilize the aviation without obstacles, hinder the climb, and then quickly change to the mobile phone flight mode, maintaining the automatic transformation of the multi-form of the quadcopter fitness exercise in a different level of natural environment. Automatic Control System……" 

The reporter carefully watched the detailed introduction of independent innovation and market prospects of more than 50 pieces of competition science and technology works, and found that many books have unexpected ideas. Some new spacecraft and their new concept of aerospace defense management system are in total. In the final product exhibition center, the independent innovation design of the quadcopter is undoubtedly the most attractive. In this aircraft design competition, Nanjing University of Aeronautics and Astronautics "variable wing vertical take-off and landing quad-axis aircraft" is the most impressive. The four-axle aircraft uses a folding tilting distributed system drive wing with a distributed system power unit that maintains vertical takeoff and landing and idle speed when moving, taking off, cruising and landing. With the reliability of the multi-rotor and the high efficiency of the fixed wing, the aircraft has been taken off and landed without relying on the sports field. Together with higher cruising speed and high efficiency, the airport's endurance time and mileage are guaranteed. The unmanned aircraft's wrecker coordination ability has been improved, and the unmanned aircraft's situational adaptability has been improved. In the future, it will completely solve the dilemma of “networking” delivery of express delivery companies, maintain the concept of “flight car”, and make the increasingly serious traffic congestion problem deciphered.

"Aerospace Cup" competition gathers high-level talents in aerospace

At the other end of the exhibition hall, a gray-black ball caught the attention of the reporter. For the first time, journalists saw the ball that could fly, or the spell ball in the novel "Harry Potter" - "Golden Snitch." And how does this gray-black ball that appears on the spot fly and can do something? Originally, this "black-and-black thief" was the work of the elite team of Transformers of Nanjing University of Aeronautics and Astronautics. "The six-axis double paddle high-rise residential rescue deformation quad-rotor with tilting drive" is a term used to integrate the pad plan into a variety of complex aviation indoor environments and to provide four-axle aircraft with fire protection. The core concept of the robot is combined to solve the high-rise residential fire accidents, to be able to take over the natural disaster monitors in the rescue of high-rise residential fires, and to correctly guide evacuation personnel. The deep fire scenes are actively rescued; its deformable The high-rise residential road wrecker with its characteristics and its spherical casing can improve the rescue and rescue efficiency.

The National Defense Science and Technology Industry Production Air and Space Defence Independent Innovation Management Center cooperated with China Aerospace Science and the National Defense Science and Technology University's automatic overall target identification. The laboratory held the "Aerospace Cup" national independent innovation creative competition. Wang Xuesong, dean of the School of Electronic Devices Science and Technology at National University of Defense Technology, said that in today's society where scientific and technological progress is in turmoil, artificial intelligence technology, detection and identification, new materials, and source power have profoundly affected the aerospace industry, and in China's air and space defense management system. Facing new challenges. The "Aerospace Cup" competition is held to stimulate the passion for independent innovation and to create independent innovation capabilities, so as to promote technological development trends, stimulate independent innovation concepts, and promote the development of four-axis aircraft, intelligent detection and aerospace defense management systems in China. The development trend is to accelerate the capital construction of aerospace powers.

(图/文编译:飞行汽车 http://www.flycar.com.cn/

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