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패턴 합성을 통한 단일 곡면 구조에서의 RCS 감소 기술에 관한 연구
김우중(Woojoong Kim),서형필(Hyeong Pil Seo),김영섭(Youngsub Kim),윤영중(Young Joong Yoon) 한국전자파학회 2013 한국전자파학회논문지 Vol.24 No.4
본 논문은 단일 곡률 곡면형 구조에서 위상 반사체를 이용하여 정면에서 대칭의 구조를 통한 위상 상쇄 간섭으로 반사를 최소화시키고, 주엽을 여러 방향으로 분리시켜 반사 크기를 낮추어 RCS를 감소시키는 방법을 제안한다. 제안된 다중 주엽 반사체는 대조군인 동일 크기와 곡률을 갖는 PEC에 비해 정면과 주엽의 반사 크기가 감소되어 mono-static 레이더 환경과 bi-static 레이더 환경 모두에서 RCS 감소 효과를 갖는다. 제안된 반사체는 단일 주엽 반사체, 이중 주엽 반사체의 중간 과정을 거쳐 다중 주엽 반사체로 설계되었고, 반사체를 구성하는 각 열의 조향각을 달리하는 위상분포를 통해서 빔의 분산을 유도하였으며, 이는 모의실험과 측정을 통하여 검증되었다. 반사체는 중심 주파수 10 ㎓에서 240×180 ㎟(8×6 λ²)의 크기와 곡률 k=3.3으로 제작되었으며, 측정결과 동일한 크기와 곡률을 갖는 PEC와 비교해 최대 17 ㏈의 RCS 감소 특성을 보였다. This paper discusses the singly curved phased reflector for reduced RCS pattern, which has minimized RCS level at boresight with a null by phase cancelation and the lowered RCS level of main beam by splitting the main beam into multi directions. Considering the reduced level of boresight and main beam compared to the same sized reference PEC, this proposed multi-beam reflector can be adopted in the mono-static radar and the bi-static radar environment. The proposed reflector is a multi-beam reflector, which has different phase distributions at each row for different steering angle. It is designed through an intermediate stage of a single and dual-beam reflector. The behaviors of the designed reflectors are verified through full-wave simulation and experiment. The reflectors are designed in the frequency of 10 ㎓ and it has a size 240×180 ㎟(8×6 λ²) with the curvature k=3.3. From the measured results, the proposed reflectors reduce the reflected power by 17 ㏈ at boresight.
Optimal Path Planning for UAVs to Reduce Radar Cross Section
Kim, Boo-Sung,Bang, Hyo-Choong The Korean Society for Aeronautical and Space Scie 2007 International Journal of Aeronautical and Space Sc Vol.8 No.1
Parameter optimization technique is applied to planning UAVs(Unmanned Aerial Vehicles) path under artificial enemy radar threats. The ground enemy radar threats are characterized in terms of RCS(Radar Cross Section) parameter which is a measure of exposure to the radar threats. Mathematical model of the RCS parameter is constructed by a simple mathematical function in the three-dimensional space. The RCS model is directly linked to the UAVs attitude angles in generating a desired trajectory by reducing the RCS parameter. The RCS parameter is explicitly included in a performance index for optimization. The resultant UAVs trajectory satisfies geometrical boundary conditions while minimizing a weighted combination of the flight time and the measure of ground radar threat expressed in RCS.
Optimal Path Planning for UAVs to Reduce Radar Cross Section
Boo-Sung Kim,Hyochoong Bang 한국항공우주학회 2007 International Journal of Aeronautical and Space Sc Vol.8 No.1
Parameter optimization technique is applied to planning UAVs(Unmanned Aerial Vehicles) path under artificial enemy radar threats. The ground enemy radar threats are characterized in terms of RCS(Radar Cross Section) parameter which is a measure of exposure to the radar threats. Mathematical model of the RCS parameter is constructed by a simple mathematical function in the three-dimensional space. The RCS model is directly linked to the UAVs attitude angles in generating a desired trajectory by reducing the RCS parameter. The RCS parameter is explicitly included in a performance index for optimization. The resultant UAVs trajectory satisfies geometrical boundary conditions while minimizing a weighted combination of the flight time and the measure of ground radar threat expressed in RCS.
주정명,박시원,채희덕,박종국,최영조,이형기,한정윤,전정환 한국인터넷방송통신학회 2023 한국인터넷방송통신학회 논문지 Vol.23 No.2
As the latest weapon systems and electronic equipments are increasingly demanding stealth technology to improve the survivability of allies, it is necessary to implement low-observability technology that reduces the radar cross section(RCS). In order to implement this stealth technology, a method for low RCS characteristics by applying a shape design or a electromagnetic wave absorber is widely used. However, active phased array antennas have structural limitations in shape design, also when a absorber is applied to it, the performance of the antenna is degraded. Therefore, in this paper, in order to realize the low RCS characteristics of the active phased array antenna operating in the X-band, individual radiating elements suitable for applying the radio wave absorber were selected, and a 13x13 array antenna was designed and manufactured. Next, by comparing the measured results of the relative RCS and electrical performance for the manufactured antenna according to the presence and type of the absorber, it is shown that the electrical performance is maintained at an equal or higher level while obtaining the low RCS characteristics. Thereby the method proposed in this paper for implementing the low RCS characteristics was validated. Finally, it was confirmed that when the wave absorber is applied to the array antenna, the limitation of its performance deterioration can be overcome.
Application of Transformation Electromagnetics to Cloak Design and Reduction of Radar Cross Section
Raj Mittra,Yuda Zhou 한국전자파학회JEES 2013 Journal of Electromagnetic Engineering and Science Vol.13 No.2
In this paper we present an alternative approach to addressing the problem of designing cloaks for radar targets, which have been dealt with in the past by using the transformation optics (TO) algorithm. The present design utilizes realistic materials, which can be fabricated in the laboratory, and are wideband as well as relatively insensitive to polarization and incident angle of the incoming wave. The design strategy, presented herein, circumvents the need to use metamaterials for cloak designs that are inherently narrowband, dispersive and highly sensitive to polarization and incident angle. A new interpretation of the TO algorithm is presented and is employed for the design of radar cross section-reducing absorbers for arbitrary targets, and not just for canonical shapes, e.g., cylinders. The topic of performance enhancement of the absorbers by using graphene materials and embedded frequency structure surfaces is briefly mentioned. The design procedure for planar absorbing covers is presented and their performance as wrappers of general objects is discussed. A number of test cases are included as examples to illustrate the application of the proposed design methodology, which is a modification of the classical TO paradigm.
박강국(Kang-Kook Park),진희철(Huicheol Chin),김경태(Kyung-Tae Kim),김효태(Hyo-Tae Kim),김진봉(Jin-Bong Kim) 한국전자파학회 2012 한국전자파학회논문지 Vol.23 No.4
풍력 에너지는 많은 이점으로 인해서 그 사용량이 증가하고 있다. 많은 나라에서 유가 폭등과 기후의 다변화로 인해 전력 사용량이 증가하여 풍력 발전 단지 설치를 추진하고 있다. 그러나 풍력 발전기는 군 레이더 시스템의 성능을 방해하는 왜곡을 일으키는 설비이다. 풍력 발전기의 대용량화로 인해서 풍력 발전기의 크기가 커지게 되어 해안가의 풍력 발전기는 군 레이더 시스템에 군사 표적으로 오인하게 한다. 그래서 본 논문은 풍력 발전기에서 나타나는 레이더 산란 신호의 최소화를 위한 방안을 나타내었다. 구체적으로 풍력 발전기의 각 부분들의 레이더 산란 신호 최소화를 위한 방안을 나타내었다. 레이더 신호 간섭 최소화를 위한 방법은 전투기의 스텔스 디자인 개발 기술을 기반으로 하고 있다. 그러나 풍력 발전기의 레이더 산란 신호 감소를 위한 구현은 비록 전투기 스텔스 디자인 개발 기술을 기초로 하고 있지만, 현재 중요한 시도이다. 본 논문에서는 풍력 발전기의 레이더 신호 간섭을 최소화하기 위해서 다양한 기법들을 풍력 발전기에 적용하였다. 풍력 발전기의 타워 및 날개 부분에 대한 두 가지 기법 적용을 통해서 풍력 발전기의 레이더 단면적 감소 효과가 나타남을 알 수 있다. The use of wind energy is gaining importance because of its many advantages. Nations worldwide are promoting the installation of wind farms to produce electricity in an attempt to tackle climate change and increasing oil costs. But, wind turbines can generate undesired signals which disturb the performance of military radar systems. Because the current generation of on and off-shore three bladed wind turbines have radar signatures consistent with their very large physical size. So this study considers the options available for the reduction of wind turbine radar signature and presents solutions for each of the main external turbine components. The radar signature reduction approaches are based on existing technologies developed for aerospaces stealth applications. However, the realization of these for the purposes of reduction wind turbine radar signatures is a novel development, particularly in the solutions proposed. This paper is presented techniques which reduce radar signatures of wind turbine. We know that radar signatures of wind turbine reduce by using these techniques.
Besharat Rezaei Shookooh,Alireza Monajati,Hamid Khodabakhshi 한국전자파학회JEES 2020 Journal of Electromagnetic Engineering and Science Vol.20 No.1
The theory and design of a new family of ultra-wideband (UWB) metamaterial (MTM) microstrip array antennas based on fractal and Fibonacci geometric patterns are investigated. First, the UWB microstrip array antenna is presented with two radiating MTM elements. Then, using fractal and Fibonacci geometric patterns, the array antenna is expanded. Improvements in the antenna parameters is achieved by repeating the second and third iterations of the fractal and Fibonacci patterns. As the order of iteration of the fractal and Fibonacci geometric patterns increases, the impedance bandwidth of the MTM microstrip array antenna increases, and its radar cross-section (RCS) decreases. The impedance bandwidth of the array antenna with two MTM elements is 3.37–9.2 GHz, while the bandwidth of the third-iteration Fibonacci and fractal MTM array antennas are 3.5–10.1 GHz and 3.55–10.34 GHz, respectively. Furthermore, the proposed array antennas exhibit lower RCS due to metal area reduction, with respect to the array antenna with two MTM elements.