Academic literature on the topic 'Radar Military applications'

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Journal articles on the topic "Radar Military applications"

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Palo, Francesco De, Gaspare Galati, Gabriele Pavan, Christoph Wasserzier, and Kubilay Savci. "Introduction to Noise Radar and Its Waveforms." Sensors 20, no. 18 (2020): 5187. http://dx.doi.org/10.3390/s20185187.

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In the system-level design for both conventional radars and noise radars, a fundamental element is the use of waveforms suited to the particular application. In the military arena, low probability of intercept (LPI) and of exploitation (LPE) by the enemy are required, while in the civil context, the spectrum occupancy is a more and more important requirement, because of the growing request by non-radar applications; hence, a plurality of nearby radars may be obliged to transmit in the same band. All these requirements are satisfied by noise radar technology. After an overview of the main noise
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Ilcev, Dimov Stojce. "The development of maritime radar. Part 1: Before the Second World War." International Journal of Maritime History 32, no. 4 (2020): 996–1007. http://dx.doi.org/10.1177/0843871420977963.

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This research note identifies the precursors for development of shipborne radar for commercial and military applications. It comprises three main sections: first, the evolution of radar starting from the first practical demonstrations provided by Russian professor Aleksandar Stepanovich Popov in 1897; second, the invention of radar in eight nations; and third, early experiments with shipborne radars up to 1939.
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Gerum, W., P. Malzahn, and K. Schneider. "94-GHz TWT for military radar applications." IEEE Transactions on Electron Devices 48, no. 1 (2001): 72–73. http://dx.doi.org/10.1109/16.892170.

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Galati, Gaspare, and Gabriele Pavan. "Noise Radar Technology as an Interference Prevention Method." Journal of Electrical and Computer Engineering 2013 (2013): 1–6. http://dx.doi.org/10.1155/2013/146986.

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In some applications, such as automotive and marine/navigation, hundreds of radars may operate in a small environment (e.g., a road complex or a strait) and in an allocated frequency band with limited width. Therefore, a compatibility problem between different radars arises that is not easily solved by time, frequency, space, or polarization diversity. The advent of fast digital signal processing and signal generation techniques makes it possible to use waveform diversity to solve this problem that will be exacerbated in the next future. Ideal waveforms for the diversity are supplied by Noise
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Ilcev, Dimov Stojce. "The development of maritime radar. Part 2: Since 1939." International Journal of Maritime History 32, no. 4 (2020): 1008–22. http://dx.doi.org/10.1177/0843871420977964.

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This research note outlines advances in the development of shipborne radar in Britain, Germany, the US and the Soviet Union. It focuses on the inventions and innovations in electronic and radars techniques for military and commercial applications on the eve of the Second World War, during the war and in the post-war period.
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Lee, Won-Jun, and Chun-Gon Kim. "Electromagnetic Wave Absorbing Composites with a Square Patterned Conducting Polymer Layer for Wideband Characteristics." Shock and Vibration 2014 (2014): 1–5. http://dx.doi.org/10.1155/2014/318380.

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The applications of electromagnetic- (EM-) wave-absorbers are being expanded for commercial and military purposes. For military applications in particular, EM-wave-absorbers (EMWAs) could minimize Radar Cross Section (RCS) of structures, which could reduce the possibility of detection by radar. In this study, EMWA composite structure containing a square periodic patterned layer is presented. It was found that control of the pattern geometry and surface resistance induced EMWA characteristics which can create multiresonance for wideband absorption in composite structures.
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Tarchi, Dario, Michele Vespe, Ciro Gioia, Francesco Sermi, Vladimir Kyovtorov, and Giorgio Guglieri. "Low-Cost Mini Radar: Design Prototyping and Tests." Journal of Sensors 2017 (2017): 1–15. http://dx.doi.org/10.1155/2017/8029364.

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Radar systems are largely employed for surveillance of wide and remote areas; the recent advent of drones gives the opportunity to exploit radar sensors on board of unmanned aerial platforms. Nevertheless, whereas drone radars are currently available for military applications, their employment in the civilian domain is still limited. The present research focuses on design, prototyping, and testing of an agile, low-cost, mini radar system, to be carried on board of Remotely Piloted Aircraft (RPAs) or tethered aerostats. In particular, the paper faces the challenge to integrate the in-house deve
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Kılıç, Alper, İsmail Babaoğlu, Ahmet Babalık, and Ahmet Arslan. "Through-Wall Radar Classification of Human Posture Using Convolutional Neural Networks." International Journal of Antennas and Propagation 2019 (March 31, 2019): 1–10. http://dx.doi.org/10.1155/2019/7541814.

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Through-wall detection and classification are highly desirable for surveillance, security, and military applications in areas that cannot be sensed using conventional measures. In the domain of these applications, a key challenge is an ability not only to sense the presence of individuals behind the wall but also to classify their actions and postures. Researchers have applied ultrawideband (UWB) radars to penetrate wall materials and make intelligent decisions about the contents of rooms and buildings. As a form of UWB radar, stepped frequency continuous wave (SFCW) radars have been preferred
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El Hadri, D., A. Zugari, A. Zakriti, M. El Ouahabi, and M. Taouzari. "A Compact Triple Band Antenna for Military Satellite Communication, Radar and Fifth Generation Applications." Advanced Electromagnetics 9, no. 3 (2020): 66–73. http://dx.doi.org/10.7716/aem.v9i3.1420.

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A compact triple band antenna by using etching slots technique in the radiation element is presented in this paper. The proposed antenna is designed to target three different frequencies: 7.5 GHz (military satellite communication), 9 GHz (radar applications) and 28 GHz (fifth generation applications). The fabricated prototype of the antenna has overall dimensions of 13x12.8x1.6 mm3. Measurements were carried out to validate the simulation results. The impedance bandwidths are 259 MHz (7.435-7.695 MHz), 355 MHz (8.86-9.221 MHz) and 2.67 GHz (26.79-29.433 GHz) with return loss less than -10 dB.
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Ramya, K. "Radar Absorbing Material (RAM)." Applied Mechanics and Materials 390 (August 2013): 450–53. http://dx.doi.org/10.4028/www.scientific.net/amm.390.450.

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This paper briefly outlines the research and development activities in radar absorbing materials. Military defense scientists to the possibility of using coating materials to render aircraft or other military vehicles less visible to radar and, preferably, to control such visibility. The highly conducting surface of a metal vehicle is an excellent reflector of radar, but an absorbing layer would suppress the radar signal at the receiver station. Radar absorbing material currently in military and commercial use are typically composed of high concentrations of iron powders in a polymer matrix. T
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Dissertations / Theses on the topic "Radar Military applications"

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Scott, Van Nederynen David. "Development of a dynamic model for the ECM signal environment." Thesis, Georgia Institute of Technology, 1990. http://hdl.handle.net/1853/24931.

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Sengodan, Anand. "The SIMCA algorithm for processing ground penetrating radar data and its practical applications." Thesis, University of Glasgow, 2013. http://theses.gla.ac.uk/4177/.

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The main objective of this thesis is to present a new image processing technique to improve the detectability of buried objects such as landmines using Ground Penetrating Radar (GPR). The main challenge of GPR based landmine detection is to have an accurate image analysis method that is capable of reducing false alarms. However an accurate image relies on having sufficient spatial resolution in the received signal. An Antipersonnel mine (APM) can have a diameter as little as 2cm, whereas many soils have very high attenuation at frequencies above 450 MHz. In order to solve the detection problem
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Lim, Kian Guan. "Battle damage assessment using inverse synthetic aperture radar (ISAR)." Thesis, Monterey, California. Naval Postgraduate School, 2004. http://hdl.handle.net/10945/1223.

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Approved for public release; distribution in unlimited.<br>An imaging radar, like ISAR, offers a combatant the capability to perform long range surveillance with high quality imagery for positive target identification. Extending this attractive feature to the battle damage assessment problem (BDA) gives the operator instant viewing of the target's behavior when it is hit. As a consequence, immediate and decisive action can be quickly taken (if required). However, the conventional Fourier processing adopted by most ISAR systems does not provide adequate time resolution to capture the target's d
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Miller, Richard H. "User interface design and evaluation of a shipboard electronic warfare console." Diss., Virginia Tech, 1993. http://hdl.handle.net/10919/40148.

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Lopez, Jean-Marc. "Trajectographie et identification de porteur-radar par senseurs passifs multistatiques." Toulon, 2004. http://www.theses.fr/2004TOUL0003.

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Cette thèse traite de la tenue de situation tactique passive radar au sein d'une force navale. Les deux aspects sont abordés : l'ldentification et la trajectographie d'une cible. L'identification (amélioration du processus) est réalisée à partir de l'estimation de la hauteur du radar de la cible par la prise en compte des mesures de facteur de propagation du signal au-dessus de la surface de la mer. La fonction de trajectographie est effectuée à partir des mesures d'angle d'arrivée et de date d'arrivée des signaux interceptés ; ce qui conduit à définir plusieurs estimateurs (maximum de vraisem
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Books on the topic "Radar Military applications"

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S, Hall P., ed. Radar. Brassey's (UK), 1991.

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Lee, Frederick W. Adaptive radar. Naval Research Laboratory, 1991.

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Radar electronic warfare. American Institute of Aeronautics and Astronautics, 1987.

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Gillen, Cale M. Alternatives for military space radar. Nova Science Publishers, 2009.

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Grant, Rebecca. The radar game. IRIS Independent Research, 1998.

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Gillen, Cale M. Alternatives for military space radar. Nova Science Publishers, 2009.

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Lothes, Robert N. Radar vulnerability to jamming. Artech House, 1990.

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Jian shi lei da ji shu. Dian zi gong ye chu ban she, 2008.

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Li, Nengjing. Dui kong qing bao lei da zong ti lun zheng. Guo fang gong ye chu ban she, 2008.

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Rykhnov, A. G. Radiolokat͡s︡ii͡a︡ v armii i na flote. lzd-vo DOSAAF SSSR, 1988.

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Book chapters on the topic "Radar Military applications"

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Kaith, Priya, and M. M. Sharma. "Ka Band Circularly Polarized Antenna with Defected Ground for Close Range Military Radar Target Applications." In Lecture Notes in Electrical Engineering. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-2818-4_48.

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Kondaveeti, Hari Kishan, and Valli Kumari Vatsavayi. "Automatic Target Recognition from Inverse Synthetic Aperture Radar Images." In Advances in Wireless Technologies and Telecommunication. IGI Global, 2017. http://dx.doi.org/10.4018/978-1-5225-0773-4.ch017.

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In this chapter, Inverse Synthetic Aperture Radar, a special type of active microwave synthetic aperture radar is introduced and its applications in military surveillance are presented. Then, the basic principles involved in data acquisition and image generation are explained. The issues and challenges involved in processing the ISAR images for autonomous target detection and identification are discussed later. The proposed classification method is explained and its accuracy is evaluated experimentally against the conventional classification method in the rest of the chapter.
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Kondaveeti, Hari Kishan, and Valli Kumari Vatsavayi. "Automatic Target Recognition From Inverse Synthetic Aperture Radar Images." In Computer Vision. IGI Global, 2018. http://dx.doi.org/10.4018/978-1-5225-5204-8.ch101.

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In this chapter, Inverse Synthetic Aperture Radar, a special type of active microwave synthetic aperture radar is introduced and its applications in military surveillance are presented. Then, the basic principles involved in data acquisition and image generation are explained. The issues and challenges involved in processing the ISAR images for autonomous target detection and identification are discussed later. The proposed classification method is explained and its accuracy is evaluated experimentally against the conventional classification method in the rest of the chapter.
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Ansari, Naseemuddin, Virendra K. Sharma, Sanjeev Sharma, and Vinod Kumar Singh. "Survey on Digital Signal Processing for FMCW Radar." In Advances in Wireless Technologies and Telecommunication. IGI Global, 2021. http://dx.doi.org/10.4018/978-1-7998-7611-3.ch003.

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In the ongoing years, the radar innovation, once utilized dominatingly in the military, has begun to rise in various regular citizen applications. One of the regions that this innovation showed up is car automation. The danger of crash is incremented as the quantity of vehicles out. Versatile voyage control, pre-crash, and cautioning are a portion of the utilizations of car radar which are as of now being used in numerous autos. The eventual fate of the car business guarantees to offer a completely self-ruling auto that can drive itself with no driver help. These vehicles will require great radar sensors that can give exact data about the encompassing of the vehicle. These sensors will likewise require a figuring stage that can guarantee constant handling of the received signals. It is discovered that digital signal processing comprises of 3D FFT and framework augmentation handling. As an elective preparing stage, a FPGA/ASIC stage can be utilized to actualize of the calculation to meet the ongoing imperatives of car applications.
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Berhab, Souad, Abderrahim Annou, and Fouad Chebbara. "Reconfigurable Low-Profile Antenna-Based Metamaterial for On/Off Body Communications." In Handbook of Research on Emerging Designs and Applications for Microwave and Millimeter Wave Circuits. IGI Global, 2023. http://dx.doi.org/10.4018/978-1-6684-5955-3.ch007.

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This chapter proposes a novel method to reduce the specific absorption rate (SAR) of a compact CPW antenna. A combination of three efficient techniques is employed to develop a dual-band bowtie metamaterial antenna with safer SARs. Following this approach, the authors have designed a low-profile antenna with a footprint of only 0.074λ02 and low backward radiation. The simulated results confirm the antenna's suitability for wireless body area network devices operating in the Unlicensed National Information Infrastructure (U-NII) at 5.33 GHz and 18.17 GHz frequency bands for military radar applications. The authors have developed two oppositely faced B-shaped resonators to form the bowtie-shaped DNG unit cell. A compact size and dual-band operation were attained by loading the bowtie-shaped into the CPW antenna. The antenna's conception used the available package CST software, printed on Rogers RT5880, and the CPW-fed monopole mechanism for the excitation.
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Deva Hema D., Agnes Faustina, and E. Aravindhan. "Adapting Multi-Temporal Information for Optimized Ship Detection From SAR Image Dataset Using Transfer Learning Application." In Advances in Multimedia and Interactive Technologies. IGI Global, 2023. http://dx.doi.org/10.4018/978-1-6684-6060-3.ch021.

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Synthetic aperture radar (SAR) can be reasonably mobile or area-based 2D high-resolution imaging radar. Unlike optical remote sensing, which can add bad climatic conditions and nights, SAR works day and night regardless of climatic conditions and can be used for military and civilian purposes. However, unlike natural images, SAR images duplicate the intensity of electromagnetic backscatter and require specialists to interpret the SAR images. In addition, finding interesting targets in huge human SAR images is tedious and very difficult, justifying the demand for low-cost automated SAR target recognition (ATR). Ways of supporting headed-oriented bounding boxes (OBB) have received progressive attention from researchers. However, most of the recently planned deep learning-based methods for OBB detection meet with the boundary separation downside in angle or aim for regression to attenuate this downside.
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Sarkar, Swagata, Sivakami Nagappan, and Shafin Kadhir Badhusha. "Design and Analysis of 64 GHz Millimetre Wave Microstrip Patch Antenna." In Recent Trends in Intensive Computing. IOS Press, 2021. http://dx.doi.org/10.3233/apc210262.

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Millimetre Wave frequencies (30–300 GHz) can be used for different major applications of modern world like telecommunications, security screening, imaging, automotive radars, military applications, remote sensing, radio astronomy and many more. The internationally reserved frequency spectrum is used for Radio Frequency Energy. In this work 64 GHz antennas are compared with different design and a comparative study is taken. In this work Microstrip patch antenna with carpet architecture, and fractal island are designed and compared. The general comparative parameters for antenna are directivity, gain, return loss, bandwidth, specific absorption rate etc. After the comparison, it is found that return loss gave better result for carpet design at 64 GHz compare to fractal island design.
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Cheng, Reynold, and Sunil Prabhakar. "Sensors, Uncertainty Models, and Probabilistic Queries." In Encyclopedia of Database Technologies and Applications. IGI Global, 2005. http://dx.doi.org/10.4018/978-1-59140-560-3.ch101.

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Sensors are often used to monitor the status of an environment continuously. The sensor readings are reported to the application for making decisions and answering user queries. For example, a fire alarm system in a building employs temperature sensors to detect any abrupt change in temperature. An aircraft is equipped with sensors to track wind speed, and radars are used to report the aircraft’s location to a military application. These applications usually include a database or server to which the sensor readings are sent. Limited network bandwidth and battery power imply that it is often not practical for the server to record the exact status of an entity it monitors at every time instant. In particular, if the value of an entity (e.g., temperature, location) monitored is constantly evolving, the recorded data value may differ from the actual value. Querying the database can then produce incorrect results. Consider a simple example where a user asks the database: “Which room has a temperature between 10oF and 20oF?” If we represent temperature values of rooms A and B stored in the database by A0 and B0 respectively, we can see from Figure 1(a) that the answer to the user query is “Room B”. In reality, the temperature values of both rooms may have changed to newer values, A1 and B1, as shown in Figure 1(b), where the true query answer should be “Room A”. Unfortunately, because of transmission delay, these newest pieces of information are not propagated in time to the system to supply fresh data to the query, and consequently the query is unable to yield a correct answer.
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Conference papers on the topic "Radar Military applications"

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Basrawi, Khaled, and Richard Dill. "Reverse Engineering the Soli Radar API for Military Applications." In 2021 IEEE Radar Conference (RadarConf21). IEEE, 2021. http://dx.doi.org/10.1109/radarconf2147009.2021.9455321.

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Kenney, J. Stevenson, and Jau-Horng Chen. "Power Amplifier Linearization and Efficiency Improvement Techniques for Commercial and Military Applications." In 2006 International Conference on Microwaves, Radar & Wireless Communications. IEEE, 2006. http://dx.doi.org/10.1109/mikon.2006.4345092.

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Eibert, Max, та Stefan Scherbarth. "OWL: an eyesafe 1.5-μm laser radar system for military applications". У SPIE's International Symposium on Optical Science, Engineering, and Instrumentation, редактори Bjorn F. Andresen та Marija Strojnik. SPIE, 1998. http://dx.doi.org/10.1117/12.328039.

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Parlak, Murat, and Murat Yaban. "Thermal Solution of High Flux Phased Radar Antenna for Military Application." In ASME 2015 International Technical Conference and Exhibition on Packaging and Integration of Electronic and Photonic Microsystems collocated with the ASME 2015 13th International Conference on Nanochannels, Microchannels, and Minichannels. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/ipack2015-48055.

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In military applications, cooling of high heat flux antenna is a challenging problem considering the thermal, mechanical and limited space requirements. In addition to system cooling, thermal uniformity among the high power amplifiers is one of the main issues that should be taken into account for electrical performance requirements. Cold plate is the main mechanical part of the radar antenna structure where it serves as a cooler and a carrier. Liquid path and fin pattern are critical parts of the cold plate design that needs to be carefully studied. These topics are comprehensively discussed
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Thai-Singama, Richard, Frederic Du-Burck, and Marc Piette. "A UWB generator based on a ECL Monostable one-shot for ETSI communications and Military radar applications." In 2014 International Conference on Advanced Technologies for Communications (ATC). IEEE, 2014. http://dx.doi.org/10.1109/atc.2014.7043471.

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Dastner, Kaeye, Susie Brunessaux, Elke Schmid, Bastian von Hasler zu Roseneckh-Kohler, and Felix Opitz. "Classification of Military Aircraft in Real-time Radar Systems based on Supervised Machine Learning with Labelled ADS-B Data." In 2018 Sensor Data Fusion: Trends, Solutions, Applications (SDF). IEEE, 2018. http://dx.doi.org/10.1109/sdf.2018.8547077.

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Malachias, N., I. Kakavas, S. M. Said Al Harthi, and A. Said Al Saidi. "Design and Experimental Evaluation of a Novel Type Radar Reflector for use in the Marine Environment." In International Conference on Marine Engineering and Technology Oman. IMarEST, 2019. http://dx.doi.org/10.24868/icmet.oman.2019.033.

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The octahedral radar reflector is the one most commonly used today in marine applications, for purposes of increasing the Radar Cross Section (RCS) of small vessels at sea. The use of radar reflectors provides greater radar detection distances, therefore contributes to navigation safety. The octahedral reflector has proven to be relatively inefficient, since its RCS values do not remain fairly constant, but show significant variations resulting to changes of the angle of incidence. RCS variations in certain angles of incidence produce nulls, where the radar detection range is almost zero, thus
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Mahesh, V. S., K. Senthilkumaran, and P. C. Jha. "3D Digitization of Sub Surface Features Using 3D GPR." In ASME 2011 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. ASMEDC, 2011. http://dx.doi.org/10.1115/detc2011-48044.

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Ground Penetrating Radars (GPR) finds its applications in civil engineering, archeology, earth sciences, military and environmental studies. This paper proposes a framework for using GPR as a digitizing technique that can make 3D digitization/measurement of the buried objects. Currently, the 3D radar volume data is acquired by dense subset of parallel 2D radar profiles. However, it results in a very large amount data and related processing time, and needs to be avoided due to the significant computer resources and processing time required to process the data. In order to achieve simplified and
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Rahmat Ali, Fariha Binte, Golap Kanti Dey, and Rashid Mirzavand. "Design and Analysis of Millimeter Wave Tetra-Band Antenna Operating in Ka/V/W Band for Military and Radar Applications." In 2022 Asia-Pacific Microwave Conference (APMC). IEEE, 2022. http://dx.doi.org/10.23919/apmc55665.2022.9999915.

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PARATE, B. A., HIMANSHU SINGH, A. K. SAHU, and P. W. SONAWANE. "INSTRUMENTATION, EVALUATION AND TEST METHOD OF CARTRIDGE ACTUATED DEVICE (CAD) FOR AIRCRAFT APPLICATION." In 32ND INTERNATIONAL SYMPOSIUM ON BALLISTICS. Destech Publications, Inc., 2022. http://dx.doi.org/10.12783/ballistics22/36081.

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This research work describes a proficient method about the instrumentation, evaluation, and test method of cartridge actuated devices (CAD) using a velocity test rig (VTR) for aircraft applications. CADs are known as gas generating devices that are installed on various military aircraft of Naval bases and Air Force to perform a highly significant task such as deployment of parachute, catapult, ejection of seat, thrusters, release of bomb, cutting action of cable, fuel tanks etc. These devices produce high temperature and pressure combustion gases on initiation. As these devices are utilizing o
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