Radar scattering section is very important concept in the field of radar stealth and radar anti-stealth.
雷达散射截面是反雷达隐身与雷达反隐身领域中的一个极其重要的概念。
The necessity for passive MMW stealth at the same time of radar stealth research, that is MMW radiation characteristics control, was pointed out.
指出在进行雷达隐身的同时,必须进行针对被动探测的毫米波被动隐身技术研究,即毫米波辐射特性的控制。
The general principles and technical approaches of radar cross section reduction (RCSR) are introduced, and the application of RCSR technology in military target anti-radar stealth are studied.
本文介绍了RCSR技术(雷达截面积缩减技术)的一般原则及其技术途径,对RCSR技术在军事目标反雷达隐身方面的应用进行了探索与研究。
Analyses for the electromagnetic scattering properties of complex targets coated with anisotropic materials are presented, which provide theoretical support for the radar stealth and anti-stealth.
对各向异性材料涂覆复杂目标的电磁散射特性进行分析,为目标的雷达隐身和反隐身提供理论支持。
Simply speaking, stealth technology allows an aircraft to be partially invisible on radar or any other detection methods.
简单来讲,隐形技术可以使飞机在雷达或其他检测方法下变得部分不可见。
Taranis is about the size of a small jet trainer, but with the look of a stealth bomber to make it hard to detect on radar.
“雷电之神”大约有小型喷气式教练机那么大,但隐形轰炸机般的外表使得雷达很难探测到它。
Also, the surfaces on a stealth aircraft can be treated so they absorb radar signals.
同时,经过加工处理的隐形战机表面还可以吸收雷达信号。
The overall result is that a stealth aircraft like an American F-117A reflects the radar signature of a small bird rather than an airplane.
结果是,像美国F-117A一类的隐形战机的雷达反射信号出仅仅如一只小鸟,而并非一架飞机。
Sweden has developed what it claims the world's first fully operational stealth warship that is essentially invisible to radar, foreign media reported recently.
据外媒近日报道,瑞典开始部署全球首艘可避开雷达探测的隐形战舰,预计年底投入使用。
Nighthawks were the world's first stealth fighters, planes that were very hard for radar to detect.
夜鹰是世界第一代隐形战斗机,很难被雷达发现。
Analysts believe the J-20 stealth fighter will have the radar-evading capability of fifth-generation fighters produced by the U.S., like the F-22 and F-35.
分析人士相信,J - 20隐形战斗机拥有像美国F -22和F - 35这样的五代战斗机一样的反雷达功能。
It differs from stealth technology, which does not make an aircraft invisible but reduces the cross-section available to radar, making it hard to track.
但它不同于隐形技术。隐形技术不是让飞机变得看不见,而只是减少能被雷达探测到的切面以使其难以被追踪到。
The engineers' goal was to determine whether the so-called stealth fighter was truly radar resistant.
工程师们的目标是测定这架号称隐形的轰炸机是否真的抵御雷达。
Stealth aircraft rely on shapes that prevent radar waves from bouncing back to their sources and on materials that absorb radar energy (stealth-plane time line).
隐形飞机依赖其外形来逃避雷达,这种外形能避免雷达波从机体资源上反射信号、且含有能吸收雷达能量的物质。
It has odd angles (reminiscent of a stealth bomber) to reduce its radar cross-section, and was coated in radar-absorbing material.
它有着怪异的夹角(令人回忆起隐形轰炸机),以减小雷达横截面,并且涂抹了雷达吸波材料。
It is the J-20, a radar-evading jet fighter that has the same two angled tailfins that are the trademark of the Pentagon's own stealth fighter, the F-22 Raptor.
20是一款可规避雷达的喷气式飞机,拥有与五角大楼的隐形飞机F - 22“猛禽”一样的标志型双v型垂直尾翼。
To determine once and for all whether the Ho 2-29 had stealth capabilities, experts first examined the surviving 2-29 and probed it with a portable radar unit based on World War II radar tech.
为一劳永逸终结关于Ho 2 -29是否具备隐形能力的争议,专家们第一次检验了那架幸存2 - 29。并以当时二战雷达技术为基础用一架便携式雷达对它作了测试。
The radar absorption materials (RAM) are the key of stealth technique for modern weapons.
雷达吸波材料是现代武器隐身技术的关键因素之一。
Thus these "stealth" aircraft (designed to be nearly invisible to enemy radar) could go in alone and either bomb high - value targets or destroy the enemy air defenses.
这样,设计成几乎让敌方雷达看不到的“隐形”飞机,便可单机在有重要轰炸价值的。
The stealth technology includes contour design, absorbing materials and plasma stealth technologies, the purpose is to reduce sectional area of average radar for target.
雷达隐身包括外形设计、吸波材料和等离子体等隐身技术,其实质是降低目标的平均雷达截面积。
Radar absorbing material could realize the stealth of aircraft through transforming the electromagnetic wave into other state of energy in order to reduce the radar cross section of aircraft.
吸波材料通过把电磁波转化为其它形式的能量来降低目标的雷达散射截面,从而实现目标隐身的目的。
Modern warfare, firstly, is a battle of high-tech electronics. Radar detection and stealth technology is one of the most important fields of electronic countermeasure.
现代战争,首先是电子高科技的对抗,而雷达探测和隐身技术,又是电子对抗最主要的领域之一。
Through analysis and contrast, the far infrared laser radar can be used to find and follow the tracks of the stealth aircraft.
通过分析对比,远红外激光雷达可有效地发现和跟踪隐身飞机。
Technology of radar absorbing materials (RAM) is one of the important stealth technologies, and widely applied in stealth weapons, especially stealth aircraft systems.
雷达吸波材料(RAM)技术是隐身技术中的重要技术之一,并且在隐身武器,尤其是隐身飞行器系统设计中得到广泛应用。
Radar absorbing material (RAM) is the key material for stealth technique, and more attention has been paid to RAM in many countries.
雷达吸波材料是隐身技术的关键材料,雷达吸波材料的研究越来越受到世界各国的高度重视。
RCS (radar Cross Section) is a key factor in designing stealth weapons, so the research of radar targets scattering characteristics has become the foundation of stealth technologies.
雷达散射截面(RCS)是隐身装备外形设计的一项重要指标,研究雷达目标的电磁散射特性已成为目标隐身设计和目标识别的基础。
RCS (radar Cross Section) is a key factor in designing stealth weapons, so the research of radar targets scattering characteristics has become the foundation of stealth technologies.
雷达散射截面(RCS)是隐身装备外形设计的一项重要指标,研究雷达目标的电磁散射特性已成为目标隐身设计和目标识别的基础。
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