• Title/Summary/Keyword: Electrical Transmission Characteristic

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A Slotted Triangular-Patch Type Artificial Transmission Line (슬롯을 가진 삼각패치형 인공전송선로)

  • Oh, Song-Yi;Choi, Kyung;Hwang, Hee-Yong
    • Journal of The Institute of Information and Telecommunication Facilities Engineering
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    • v.9 no.4
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    • pp.164-167
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    • 2010
  • In this paper, an artificial transmission line of triangular-patch type with slots is proposed. This artificial transmission line is useful for miniaturizing the electrical lengths of conventional transmission lines. Also, this structure is easy to regulate the characteristic impedance and electrical lengths. The electrical lengths and the characteristic impedances of the proposed artificial transmission line with some parameters are researched and summarized The proposed artificial transmission line could be useful for compact designs for most of the passive microwave components. The optional-artificial transmission line is fabricated and measured at 2.45GHz.

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A Method for Calculating the Characteristic Impedance of Substrate Integrated Artificial Dielectric Transmission Lines (기판적층형 가유전체 전송선로의 특성 임피던스 계산 방법)

  • Lim, Jong-Sik;Koo, Ja-Kyung;Han, Sang-Min;Jeong, Yong-Chae;Ahn, Dal
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.58 no.8
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    • pp.1585-1591
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    • 2009
  • This paper describes a new method for extracting characteristic impedance of transmission line using Substrate Integrated Artificial Dielectric (SIAD). The new procedure to calculate the characteristic impedance of SIAD transmission line is described with the proper equations and basic transmission line theory. The characteristic impedance is determined as an almost fixed value in the proposed method, while it fluctuates according to frequency in the previous method. As the result, the effective dielectric constant of SIAD transmission line is calculated as a fixed value rather than fluctuating one. In order to show the validity of the proposed method, SIAD microstrip lines are simulated and measured, and characteristic impedances and effective dielectric constant are calculated and compared to the previous method.

Analysis of Characteristic Frequency along Fault Distance on a Transmission Line (송전 선로의 사고 거리에 따른 특성 주파수 해석)

  • 남순열;홍정기;강상희;박종근
    • The Transactions of the Korean Institute of Electrical Engineers A
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    • v.53 no.8
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    • pp.432-437
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    • 2004
  • Since the characteristic frequency is decreased in proportion to the fault distance, the characteristic frequency component may be insufficiently eliminated by a low-pass filter on a long transmission line. In order to set a standard for the cut-off frequency of the low-pass filter, this paper proposes a method for obtaining the characteristic frequencies due to line faults. The application results of the proposed method are presented for line to ground (LG) faults and line to line (LL) faults on a 345 kV 200 km overhead transmission line. The EMTP is used to generate fault signals under different fault locations and fault inception angles. By comparison between the characteristic frequencies obtained from the proposed method and the EMTP simulation, it is shown that the proposed method accurately obtains the characteristic frequency.

Calculation of the Characteristic Impedance of Transmission Lines with Periodic Structures (주기구조가 결합된 전송선로의 특성 임피던스 계산)

  • Lim, Jong-Sik;Lee, Jae-Hoon;Lee, Jun;Han, Sang-Min;Ahn, Dal
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.11 no.7
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    • pp.2541-2548
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    • 2010
  • This paper describes the calculation for characteristic impedance of transmission line with periodic structures such as defected ground structure (DGS) and photonic bandgap (PBG). The previous method which uses the ${\lambda}$/4 transmission line model is reviewed and its disadvantage that the calculated characteristic impedance is strongly dependent on the frequency is discussed. The characteristic impedance of transmission lines with periodic structures are calculated using the ${\lambda}$/4 transmission line model and analytic method. The calculated characteristic impedance by the latter method is an almost constant value while that from the first method depends on the frequency strongly. In addition, the characteristic impedance of the transmission line with PBG is calculated and proposed, while it has been rarely studied ever. S-parameters are obtained from the measurement using the fabricated sample as well as simulation, and used for calculating the characteristic impedances and comparison. The characteristic impedances calculated from the measured S-parameters agree well with the simulated results. It is well described that the analytic method to calculate the characteristic impedance of transmission lines on uniform dielectric structures can be applied successfully to the transmission lines with periodic structures such as DGS and PBG.

A measurement of signal transmission parameters in human muscle (인체 근육에 있어서 신호 전송계수의 계측)

  • Lee, Hyun-Chul;Lee, Seung-Ju;Kim, Ki-Young;Yoon, Chae-Hyun;Yoon, Yang-Woung;Park, Hyung-Jun
    • Proceedings of the KIEE Conference
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    • 2002.07d
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    • pp.2699-2701
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    • 2002
  • In this study, a system for measurement of impedance (transmission parameter) on the human muscle was constructed. The system composed of the stimulating part for input with milli-voltage and the measuring part for measurement of transmission voltage in human muscle. As a result of this experiment, the frequency characteristic of each subject represent that the transmission voltage goes up in spite of a constant input voltage according to frequency (1Hz -50kHz) increment. Namely, the amplitude of input signal was not reflected but frequency was reflected on the measured results. This result be estimated that the proposed system is able to measure passive electrical characteristic of human body.

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Analysis of EMF Mitigation Characteristic for Transmission Tower Using Compact Insulation Arm (Compact 절연암 송전 철탑의 전자계 저감특성 분석)

  • Song, Hong-Jun;Lee, Won-Kyo;Lee, Sang-Yun;Choi, In-Hyeok;Lee, Dong-Il;Byeon, Ki-Sik
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.58 no.2
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    • pp.349-355
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    • 2009
  • As electrical power demand is gradually increasing, the construction of power transmission facility is unavoidable. However difficulties which resulted from increasing of complaints and NYMBY make power transmission tower to be more environmentally friendly. As an alternative proposal, a new method which is changing conventional iron arm for insulation arm which is made of FRP(Fiber Glass Reinforced Plastics) is in progress. In this paper, we discussed environmentally friendly characteristic of domestic 154 kV testing transmission tower whose insulation arms have same mechanical and excellent electrical properties compare to conventional heavy iron arm.

A Study on Reliability Characteristic Curve of Transmission & Substation System considering Device Fault's Uncertainty (설비고장의 불확실성을 고려한 송변전계통의 공급신뢰도 특성곡선에 관한 연구)

  • Jeon, Dong-Hoon;Kim, Kern-Joong
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.57 no.9
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    • pp.1500-1506
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    • 2008
  • In this paper, we proposed new reliability characteristic curve, which-can clearly show reliability property of transmission and substation system considering uncertainty such as frequency and duration of device fault. It express the relationship of duration of load curtailments, demand not supplied, and energy not served as “ y = $ax^{-1}$ " curve. and we proposed the method, which can objectively assess reliability of transmission and substation system using proposed characteristic curve as new reliability index. In this method, we used energy index of reliability(EIR) as a criterion of assessment. Finally, we performed a variety of case study for KEPCO system in order to verify usefulness of proposed method.

Investigation of Large-scale Transmission Tower Grounding Grid with High Amplitude and Uniform Flowing Impulse Current

  • Yang, Shuai;Huang, Jiarui;Wei, Shaodong;Zhou, Wenjun
    • Journal of Electrical Engineering and Technology
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    • v.13 no.5
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    • pp.2050-2058
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    • 2018
  • Impulse characteristic of transmission tower grounding grid is needed for lightning protection of transmission line. This paper describes an outdoor experimental test facility established for large-scale grounding grid of transmission tower, made up of four impulse current generators and a circle current return electrode. The amplitude of impulse current is up to 100 kA. The results of the CDEGS simulation and GPR measurement reveal the uniform current distribution in the test arrangement. An impulse test for a square electrode with extended conductors is carried out in condition of three current waveforms with different amplitude. Based on the electrical network model and iterative algorithm method, a calculation model is proposed to simulate the impulse characteristic of large-scale grounding grid considering soil ionization. The curve of impulse resistance against the current amplitude shows the soil ionization both from the simulation and test. Deviation between the simulation and test result is less than 15%.

Unequal Bagley Divider based on Uniform Characteristic Impedance Transmission Lines with Adjustment Electrical Lengths (균일한 임피던스 전송선로 길이 조정을 통한 비대칭 Bagley 분배기)

  • Yoon, Young-Chul;Hong, Soung-Wook;Kim, Young
    • Journal of Advanced Navigation Technology
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    • v.21 no.3
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    • pp.287-293
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    • 2017
  • This paper describes an unequal Bagley divider using uniform transmission lines with adjustment electrical lengths between output ports. To obtain an arbitrary dividing ratio of Bagley divider, we have only adjusted the electrical lengths of the transmission line between output ports. All the transmission lines have the same characteristic impedance value. This design method does not require an impedance transformer for port matching. For verification, we simulated and fabricated a 3-way, 1:2:1 and 5-way, 2:3:4:3:2 ratio Bagley divider with an operating frequency of 2 GHz. The experimental results are in agreement with the simulated results.

Modeling and simulation on an IR absorbing structure with the cascaded transmission line model (전송선 이론에 의한 적외선 흡수 구조체의 흡수율 모의시험)

  • Park, Seung-Man
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.12
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    • pp.1725-1729
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    • 2013
  • In this paper, the modeling and simulation of infrared absorption in an infrared absorbing structure with the cascaded transmission line model were carried out. Each layer in the infrared absorbing structure can be modeled as a characteristic impedance of the cascaded transmission line model. The simulation results show that the cavity thickness to get a maximum absorption should be less than a quarter wavelength, which is somewhat different from prevalent thickness. It can be assured that the sheet resistance of an absorbing layer to get a maximum absorption is $377{\Omega}/{\square}$, that the thickness of the absorbing layer dose not affect the spectral characteristics of absorption. It is also shown that the thickness of the active layer is not critical to the IR absorption. It can also be assured that the validation of this modeling is proved in comparison with the previous results from similar absorbing structures.