• Title/Summary/Keyword: spurious frequency

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A study on the RF receiving system design and on the performance improvement for PCS mobile station (개인휴대통신을 위한 이동국 RF 수신시스템의 설계 및 성능개선에 관한 연구)

  • 오정일;천종훈
    • Journal of the Korean Institute of Telematics and Electronics C
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    • v.34C no.11
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    • pp.66-75
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    • 1997
  • We derive the system design parameters to implement the receiving system for the PCS mobile station to satisfy the J-sTD-018 which is the PCS mobile station(MS) minimum performance. Also we analyze the system performance and intermodulation spurious due to the values of a device cause the system performance degradation, is proposed. The simulation shows the receiver's maximum system noise figure to satisfy the receiver selectivity is approximately 11 dB. While the MS noise figure is 10dB with system margin 1 dB, the minimum selectivity is -71 dB at 1.25MHz frequency offset from the carrier frequency. And the input 3rd order intercept point of the MS class I and the MS class II~V is -9.5 dBm and -14dBm respectively. When the interference power level at the receiver is small, the receiver has better performance as we increase the gain of the LNA. However, when the interference level at the receiver is large, the receiver performance is heavily affected by the spurious as we increase the gain of the LNA. Thus, we proved the effectiveness of the LNA On/Off switching technique as to reduce the effect of the spurious.

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Thirty-two-tupling frequency millimeter-wave generation based on eight Mach-Zehnder modulators connected in parallel

  • Xinqiao Chen;Siyuan Dai;Zhihan Li;Wenyao Ba;Xu Chen
    • ETRI Journal
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    • v.46 no.2
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    • pp.194-204
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    • 2024
  • A new method is proposed to generate a 32-tupling frequency millimeter wave (MMW) with eight Mach-Zehnder modulators (MZMs) connected in parallel. Theoretical analyses and simulation experiments are conducted. The optical sideband suppression ratio (OSSR) of the obtained ±16th order optical sidebands are 61.54 dB and 61.42 dB, and the radio frequency spurious suppression ratios (RFSSRs) of the generated 32-tupling frequency MMW are 55.52 dB and 55.27 dB based on the theoretical analysis and simulation experiments, respectively; these outcomes verified the feasibility of the new method. The main parameters used to affect the stability of the generated signal are the modulation index and extinction ratio of MZM. Their effects on the OSSR and RFSSR of the generated signals are investigated when they deviate from their designed values. Compared with the other proposed methods for the generation of 32-tupling frequency MMW by MZM, our method has the best spectral purity and stability, and it is expected to have important MMW over fiber applications.

A Study on the Characteristic Analysis of Passive Intermodulation among Highpower Radiostations (고출력 무선국간의 수동 상호변조시 특성분석에 대한 연구)

  • Kim Yung-Duk;Jo Hak-Hyun
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.10 no.1
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    • pp.176-179
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    • 2006
  • As spurious emission strength is normally measured at the antenna feeder, It is required that the measurement method on passive Intermodulation occurred on the latter part of antenna feeder be made. through the tests and the analyses of passive Intermodulation between radiostations of adjacent frequency bands, the possibility of occurrence of passive Intermodulation was testified in this study. The purpose of this study is to propose the measurement method of spurious emission strength in order to prevent the bad effect by passive Intermodulation.

A Study on the Technical Regulation for Spurious Emission of Weak Field Strength Radio Receiver (소출력 무선 수신기의 부차적 전파발사 규정에 관한 연구)

  • Kim, Sun-Yeob;Park, Hyoung-Keun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.2
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    • pp.790-794
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    • 2012
  • A output strength is limited according to the frequency used in order to protect other wireless stations from interference caused by radio waves emitted from the low power wireless installations. For receivers, unwanted spurious emission is regulated, and regulations in Korea define that additional spurious emission for receivers in the low power wireless installations under 1GHz should be -54dBm, but no regulations have been established yet for low power wireless installations over 1GHz. It is presently required to set domestic standards for devices over 1GHz on account of the expansion of the communication market and its service.

SIR CPW Bandpass Filter with Folded Feed Structure for Suppressing Spurious Harmonics (고조파 억압을 위한 접힌 피드 구조를 갖는 SIR CPW 대역통과 여파기)

  • 박광선;이창언;천동완;이진택;신철재
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.15 no.2
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    • pp.159-164
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    • 2004
  • In this paper, we have proposed the folded feed structure for the spurious harmonic suppression and we have designed the SIR CPW bandpass filter using this feed structure. The characteristic of the proposed feed structure was similar to that of the lowpass filter has wide stopband region and this can be used usefully to the spurious harmonic suppression of the bandpass filter. From the simulation and the measurement result, SIR CPW bandpass filter with folded feed structure has good harmonic suppression characteristics up to 5.8 f$\sub$0/ with -20 dB suppression level.

Design of a Compact Bandstop Filter-combined UHF-band CRLH Bandpass Filter to Suppress the Spurious in L-band (L대역 불요파 저감을 위한, UHF대역 CRLH 대역통과 여파기와 소형 대역저지 여파기의 결합 설계)

  • Eom, Da-Jeong;Kahng, Sung-Tek;Mok, Se-Gyoon;Song, Choong-Ho;Woo, Chun-Sik;Park, Do-Hyun
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.61 no.1
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    • pp.104-109
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    • 2012
  • In this paper, we propose a way to improve the quality of L-band wireless communication from unfriendly influential factors lying in the neighboring RF bands. The UHF-band system has resonator components and they generate harmonics as the spurious in the L-band. Therefore, a metamaterial CRLH bandpass filter is designed for the purpose of system miniaturization and smaller insertion loss, and its spurious phenomenon is observed in the frequency domain. And its harmonics in the L-band are suppressed by a compact bandstop filter whose equivalent circuit is newly developed. The design methodology is validated by the equivalent circuit to be compared with commercial full-wave EM software simulations, where the spurious is dropped by 20dB. Also, the advantage of the proposed design is presented by the comparison where our filter is much smaller than the conventional parallel edge coupled filter by over 50%, with excellent harmonic suppression.

Development of a SHA with 100 MS/s for High-Speed ADC Circuits (고속 ADC 회로를 위한 100 MS/s의 샘플링의 SHA 설계)

  • Chai, Yong-Yoong
    • The Journal of the Korea institute of electronic communication sciences
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    • v.7 no.2
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    • pp.295-301
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    • 2012
  • In this article, we have designed SHA, which has 12 Bit resolution at an input signal range of 1 $V_{pp}$ and operates at a sampling speed of 100 MS/s in order to use at front of high speed ADC. SFDR(Spurious Free Dynamic Range) of the proposed system drops to approximately 66.3 dB resolution when the input frequency is 5 MHz, and the sampling frequency is 100 MHz, however, the circuit without a feedthrough has 12 bit resolution with approximately 73 dB.

N fractional frequency synthesizer for 800 MHz frequency hopping (800 MHz 주파수도약 시스템을 위한 분수분주 방식 주파수 합성기의 설계 및 제작)

  • 박종문;이승대;방성일;진연강
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.21 no.2
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    • pp.526-533
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    • 1996
  • In this paper, the 800 MHz band N fractional frquency synthesizer having 677 channel with 30 kHz channel bandwidth is designed on the based on the theory which is dervied in terms of the relation between reference freqiency and the number of channels, loop bandwidth and acquistion time. The experimental resuls show 10 Hz deviation from the bandwidth and acquisition time. The experimental results show 10 Hz deviation from the bandwidth, the spurious suppression of aroud -45 dBc and the acqusition time of 1.44 ms. The results satisfy the given specification, but don't achieve thebesired spurious -60 dBc suppression. It is found that 500 hop per second will be possible over the range from 800 to 820 MHz.

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Design of Over-sampled Channelized DRFM Structure in order to Remove Interference and Prevent Spurious Signal (간섭 제거 및 스퓨리어스 방지를 위한 오버샘플링 된 채널화 DRFM 구조 설계)

  • Kim, Yo-Han;Hong, Sang-Guen;Seo, Seung-Hun;Jo, Jung-Hun
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.26 no.8
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    • pp.1213-1221
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    • 2022
  • In Electronic Warfare, the need to develop a jamming system that protects our location information from enemy radar is constantly increasing. The jamming system normally uses wide-band DRFM(Digital Radio Frequency Memory) that processes the entire bandwidth at once. However, it is difficult to jam if there is a CW(Continuous Wave) interference signal in the band. Recently, instead of wide-band signal processing, a structure using a filter bank that divides the entire band into several sub-bands and processes each sub-band independently has been proposed. Although it is possible to handle interference signal through the filter bank structure, spurious signal occurs when the signal is received at a boundary frequency between sub-bands. Spurious signal makes a output power of jamming signal distributed, resulting in lower JSR(Jamming to Signal Ratio) and less jamming effect. This paper proposes an over-sampled channelized DRFM structure that enables interference response and prevents spurious signal for sub-band boundary frequency input.

A Compacted Ultra-fast Ka-band Frequency Synthesizer for Millimeter Wave Seeker (소형화된 Ka 대역 밀리미터파 탐색기용 초고속 주파수합성기)

  • Lim, Ju-Hyun;Yang, Seong-Sik;Song, Sung-Chan
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.49 no.1
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    • pp.85-91
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    • 2012
  • In this paper, we implemented a Ka-band frequency synthesizer for millimeter wave seeker. we designed for high frequency resolution and frequency hopping response time in the digital synthesis method which uses DDS(Direct Digital Synthesizer). but frequency bandwidth was limited low frequency because DDS output frequency was limited 1/2 by system clock. thus, frequency synthesizer was converted to Ka-band using the frequency multiplier ${\times}4$ and local oscillator. proposed frequency synthesizer was bandwidth 500MHz, frequency switching time was $0.7{\mu}s$, spurious level was suppressed below -52dBc. phase noise was -99dBc/Hz at offset 100kHz and flatness was ${\pm}1dB$.