• Title/Summary/Keyword: 전자파 잡음

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Method for Eliminating Spurious Signal from Deramped SAR Raw Data (Deramped SAR 원시데이터에서 효율적인 Spurious 신호 제거 기법)

  • Lim, Byoung-Gyun;Ryu, Sang-Bum
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.27 no.3
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    • pp.239-245
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    • 2016
  • Deramping technique has been widely used to acquire high resolution SAR(Synthetic Aperture Radar) images for the advantage of the data size and the processing time. However, unwanted spurious signals caused by SAR hardware can be leaked in the process of converting into a digital signal through the ADC(Analog-Digital Converter) and added in a echo signal. These tones make image quality degrade significantly. In order to solve this problem, the unwanted tones need to be detected by analysing the characteristic of the noise tone and then effectively removed from raw data. In this paper, we propose a method for efficiently removing noise tone on the raw data based on the characteristic of spurious signals.

Research on Low Phase Noise Oscillator Using Microstrip Square Open Loop Resonator (Microstrip Square Open Loop Resonator를 이용한 저위상 잡음 발진기에 관한 연구)

  • Park Eun-Young;Seo Chulhun
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.17 no.1 s.104
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    • pp.17-23
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    • 2006
  • This paper has presented a low phase noise oscillator using a square open loop with microstrip structure. A square open loop resonator has a large coupling coefficient value, which makes a high Q value, and has reduced phase noise. This oscillator has presented the oscillation frequency of 5.84 GHz, harmonics of -15.83 dBc and the phase noise of -111.17 dBc/Hz at the offset frequency of 100 kHz. In conclusion, the proposal structure has improved phase noise of 15 dB at the offset frequency of 100 kHz compared with the conventional structure of oscillator.

Phase Noise Influence on SER of MQAM, DPSK, OFDM-MQAM, OFDM-DPSK (MQAM, DPSK, OFDM-MQAM과 OFDM-DPSK의 위상 잡음 영향 연구)

  • Kwon, Joh-Ann;Kim, Ihn-Seok
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.18 no.2 s.117
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    • pp.219-226
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    • 2007
  • In this paper, we report phase noise effects on SER(Symbol Error Rate) of MQAM(M-ary Quadrature Amplitude Modulation), DPSK(Differential Phase Shift Keying), OFDM(Orthogonal frequency Division Multiplex)-MQAM and OFDM-DPSK. SER of each modulation method has been quantified at the various offset frequencies of the local oscillator and compared with phase noise effects with the ideal cases, which have no phase noise, through the MATLAB simulation. And the ratio of modulation bandwidths to the SERs at the various frequency offsets for the above modulation methods have been analyzed for the system requirement of minimum phase noise characteristics.

Proof-of-Concept Research on Pseudo-Random Noise Radar Using Sequential Sampling Method (순차적 샘플링 방식을 이용한 가상 잡음 레이더 개념 증명)

  • Kim, Jihoon
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.26 no.6
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    • pp.546-554
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    • 2015
  • Ultra-wideband(UWB) radar is widely used in many penetration radar applications, such as ground-penetrating radar and foliage-penetrating radar, because it has many advantages in detecting concealed objects. One type of UWB radar system is random noise radar, which many be robust to jamming environment. However conventional random noise radar requires high-speed analog-to-digital convertor(ADC) for matched filtering. In this thesis, a pseudo-random noise radar system that maintains anti-jamming characteristics but does not require high-speed ADC is researched. and The UWB system is implemented in a low frequency system, and its performance has been demonstrated by experiment, which proves the concept of the proposed pseudo-random noise radar system.

Enhancement Technologies of Signal-to-Noise Ratio in the Near-Field Scanning Systems (근거리 전자장 스캐닝 시스템의 잡음 대 성능 비 향상 기술)

  • Shin, Youngsan;Lee, Seongsoo
    • Journal of IKEEE
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    • v.22 no.2
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    • pp.510-513
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    • 2018
  • Recently, EMC (electromagnetic compatibility) becomes very important, which demands the measurement of EMI (electromagnetic interference) in the chip level. NFS (near-field scanning) systems defined in IEC 61967 and IEC 62508 are typical methods to analyze EMI in the chip level. As chips becomes faster, frequency measurement of NFS system should become wideband, but it degrades SNR (singal-to-noise ratio) of the NFP (near-field probe). This paper surveys SNR enhancement technologies of the NFS while maintaining wideband characteristics.

Interference Cancellation System using Adaptive Feedback Method (적응성 궤환방식을 이용한 간섭잡음제거기)

  • 김선진;이제영;이종철;김종헌;이병제;김남영
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.2
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    • pp.183-191
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    • 2003
  • In this paper, the interference cancellation system, which is used to cancel the feedback signal In the wireless communication system with the same frequency, is studied. The time-varying feedback signal generated from transmitter antenna to receiver antenna reduces the performance of the receiver system. The interference cancellation system using adaptive feedback method(AF-ICS) is suggested to prevent the oscillation of the receiver system and maintain the maximum output power of the power amplifier by the reduction of time-varying feedback signal.

Aperture Coupled Cylindrical Resonator Oscillator (Aperture Coupled 원통형 공동 공진기 발진기)

  • 나인주;이정해
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.2
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    • pp.119-126
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    • 2003
  • In this paper, a cylindrical cavity resonator oscillator with high Q factor is designed and fabricated to improve the phase noise characteristic. A cavity resonator is coupled to oscillating circuit using aperture hole. Measured results show that the cylindrical cavity resonator oscillator (CRO) for Ku-band has less phase noise than the dielectric resonator oscillator (DRO) with the same oscillating circuit. It has output power of +3.92 dBm at the center frequency 13.4015250 GHz and phase noise of -109 dBc/Hz at 100 kHz offset.

A Study on the Frequency Synthesizer for Wireless Microphone Transmitter (무선 마이크 송신기용 주파수 합성기에 판한 연구)

  • 서상원;곽무성;조경준;김종헌;이종철
    • Proceedings of the Korea Electromagnetic Engineering Society Conference
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    • 2000.11a
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    • pp.206-210
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    • 2000
  • 본 논문에서는 PLL 주파수 합성기를 이용한 900 MHz 대역의 무선 마이크용 송신기를 설계 및 제작하였다. 위상잡음을 고려한 주파수 합성기는 VCO, Loop Filter 및 RF 중폭부로 구성한 후 HP EEsof ADS ver. 1.3을 이용하여 설계하였다. VCO는 구조가 간단하며 변조가 용이한 직접변조방식을 사용하였으며 Loop Filter는 주파수 합성기의 기준 고조파 성분을 낮추기 위해 수동 3차 필터를 사용하였다. 주파수 대역 928.125 MHz~929.875 MHz 내에서 채널간격 125 kHz를 갖으며 15개의 채널이 되도록 분주비를 설정한 주파수 합성기는 제작 결과, 송신기 출력 9.3 dBm과 위상잡음이 100 kHz에서 -113 dBc/Hz 이하의 위상잡음 특성을 나타내었고 불요주파수 특성은 -80 dBc 이하의 특성을 나타내었다.

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Design of Engineering Model Oscillator with Low Phase Noise for Ka-band Satellite Transponder (위상잡음을 개선한 Ka-band 위성 중계기용 Engineering Model 발진기의 설계)

  • 류근관;이문규;염인복;이성팔
    • Proceedings of the Korea Electromagnetic Engineering Society Conference
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    • 2001.11a
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    • pp.209-212
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    • 2001
  • 본 논문에서는 Ka-band 위성 중계기용 국부 발진기에 사용하게 될 전압제어 발진기의 EM (Engineering Model)을 비선형 방법으로 설계하였다. 전압제어 발진기의 위상잡음을 개선하기 위하여 공진기로 사용되는 유전체 공진기와 결합하는 마이크로스트립 라인을 high impedance inverter로 구현함으로써 공진회로의 quality factor를 우수하게 유지하여 능동소자에 전달되도록 하였다. 개발된 전압제어 발진기는 0~12V의 제어전압으로 9.7965~9.8032GHz의 발진범위를 갖으며 공급전력은 8V, 17mA을 필요로 한다. 제작된 전압제어 발진기의 위상잡음은 -96.51dB/Hz @10KHz와 -116.5dBc/Hz @100KHz의 특성을 나타내며 출력전력은 7.33dBm을 얻었다.

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Design of 900 MHz CMOS Low Noie Amplifier (900 MHz CMOS 저잡음 증폭기의 설계)

  • 윤상영;윤헌일;정용채;정항근;황인갑
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.11 no.6
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    • pp.893-899
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    • 2000
  • A 900 MHz low-noise amplifier(LNA) with a measured noise figure of 4.8 dB and an associated gain of 13.2 dB was fabricated in a 0.65 $\mu$m CMOS. The inductive source architecture of offers the possibility of achieving the best noise performance. At 900 MHz, the fabricated LNA dissipates 39 mW from a single 3 V power supply including the bias circuitry and provides -26dB input return loss, -17 dB output return loss, and an input 1-dB compression level of -12 dBm.

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