• Title/Summary/Keyword: Power transmission loss

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The 4:1(50-Ω:12.5-Ω) microstrip-slot line impedance transformer using a dielectric resonator (유전체 공진기를 이용한 4:1(50-Ω:12.5-Ω) 마이크로스트립-슬롯 선로 임피던스 변환기)

  • Park, Ung-hee
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.24 no.11
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    • pp.1484-1491
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    • 2020
  • Since the slot line transmits electric and magnetic signals through the slot, the size of the slot greatly affects the signal power loss. In order to have low loss, the slot line is mainly used at a high frequency of above 3GHz on a substrate having a high dielectric constant(er). This paper proposes the 4:1 impedance transformer using a slot line on TLC-30 laminate (h=20mil, er=3.0; Taconic) being a relatively low dielectric constant at a frequency of 1.85GHz. In the proposed impedance transformer, the dielectric resonator is arranged on the slot line to reduce signal loss occurring at the slot line. The proposed 4:1 microstrip-slot line impedance transformer fabricated using a (Zr,Sn)TiO4 dielectric resonator(er=38) has the transmission loss(S21) of -0.375dB and the reflection value(S11) of -27.6dB at 1.855GHz. This confirms that the slot line can be stably used even in a low dielectric constant substrate and a low frequency region by using a dielectric resonator.

Development of 6.6kV Resistive Superconducting Fault Current Limiters (6.6kV급 초전도 저항형 한류기 개발에 관한 연구)

  • Lee, B.W.;Park, K.B.;Kang, J.S.;Kim, H.M.;Oh, I.S.;Hyun, O.B.
    • Proceedings of the KIEE Conference
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    • 2004.07c
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    • pp.1745-1747
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    • 2004
  • In order to anticipate gradual increase of fault current in electric power systems, current limiting technology and current limiting device has been investigated for a long time. But the commercial use of current limiting device was delayed due to the lack of effective method to insert impedance to the elective power systems without loss and surplus defects. However, novel current limiting device, which use superconducting materials, was considered as a dream technology to be applied in a distribution and transmission lines. LG Industrial systems and KERPI started to investigate resistive type superconducting fault current limiters in order to develop 154kV fault current limiters and this year, we succeed to test 3 phase 6.6kV/200A fault current limiters. Based on these achievements, 24kV superconducting fault current limiters will be realized withing 3 years which could be tested in a real fields. In this paper, the developments of fault current limiting module which use YBCO thin films, cryogenic systems, the structure and construction of 3 phase fault current limiters and finally the test results of 6.6kV superconducting fault current limiters will be introduced.

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An Achievement of High-rate Digital Subscriber Lines(HDSL) Interface Function into the ATM Switching System and its Service Implementation (ATM에HDSL 정합 기능 및 서비스 구현)

  • Yang, Choong-Reol;Chang, J.D.;Kim, J.T.;Kang, S.Y.;Kim, W.W.
    • The Transactions of the Korea Information Processing Society
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    • v.4 no.9
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    • pp.2378-2390
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    • 1997
  • We, in this paper, have implemented E1 HDSL(high-bit-rate digital subscriber line) function over an ATM switching system. The maximum loop lengths for subscriber service and cell loss rates to meet the bit error rate of $10^{-7}$ at transmission of 2B1Q HDSL data of E1 rate over existing telephone copper wires in the presense of the significant impairments such as crosstalk, impulse noise, power line noise and longitudinal over the CSAs environment consisting of 26 gauge and 24 gauge unloaded copper telephone lines has assessed. We have confirmed the typical media services function such as video on demand(VOD) service for MPEG-1, image conference service and high-speed Internet access service over ATM switching system.

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PAPR Reduction Method Using SLM-based WHT and DSI (SLM 기반 Walsh Hadamard 변환 및 DSI 기법을 이용한 PAPR 저감 기법)

  • Kim Sang-Woo;Kim Namil;Ryu Heung-Gyoon
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.16 no.11 s.102
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    • pp.1147-1154
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    • 2005
  • In this paper, we propose some PAPR(Peak to Average Power Ratio) reduction methods using WHT(Walsh Hadamard Transform) to reduce high PAPR generated in OFDM system because of multi carrier modulation. These proposed methods are the methods which has additional PAPR reduction performance without a loss of bandwidth efficiency and a large increment of calculation complexity than common PAPR reduction methods by combining the WHT with some common methods. In this paper, we propose two PAPR reduction methods made by combining a SLM(Selective Mapping) and DSI(Dummy Sequence Insertion) with a WHT. From simulation result, we can find that the PAPR reduction methods using a WHT can get about 1 dB additional PAPR reduction performance than common PAPR reduction methods; they are SLM and DSI. And, because our proposed methods have not only PAPR reduction effect, but also frequency diversity effect, more stabile data transmission is possible in nonlinear HPA and multipath fading channel.

Securing Method for Available Frequency by Changing Adaptive Protection Ratio in Adjacent Station Interference Environment of FM Broadcast (FM방송의 인접국 간섭환경에서 적응적 혼신보호비 변경에 의한 가용주파수 확보 방안)

  • Kim, Gi-Young;Ryu, Heung-Gyoon
    • Journal of Broadcast Engineering
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    • v.16 no.3
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    • pp.490-500
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    • 2011
  • The channels of domestic FM broadcast are needed to provide various kinds of new broadcasting services. However, available channels are limited and saturated. The channel interval of FM broadcast is changed from 200 kHz to 100 kHz to maximize utilization efficiency of scarce broadcast spectrum at all over the world. Also, there are many researches such as IBOC(In Band On Channel) and DRM+(Digital Radio Mondial+) that is to allocate the digital signal beside analog bandwidth. But output power is decrease to avoid interference between adjacent radio stations. In this paper, we analyzes the problems of the protection ratio which is decided in 1986 and we propose method to improve about 7~10dB significantly the protection ratio according to the recent DSP(Digital Signal Processing) techniques without loss of both transmission power and broadcast quality. In addition, we examined the possibility of securing two times available channels by reducing minimum frequency interval from 800 kHz to 400 kHz or 600 kHz in the equal site.

A Study on the Radiation Characteristics of Microstrip Array Antennas on the Nonplanar Surface (곡면에서의 마이크로스트립 어레이 안테나의 복사 특성에 관한 연구)

  • 구연건;이정수;고광태
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.14 no.2
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    • pp.121-136
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    • 1989
  • In this paper, an attempt has been made to analyze the theoretically and verify experimentally the effect of curvature on the radiation characteristics of microstrip array antennas mounted conformally on the concave surface and the convex surface of the cylindrical body. The analysis of single element microstrip antenna is made by using the analysis method of Transmission Line Model. The theory of array antennas is established by application of the method of transformed coordinates, in which the translation and the ratation about each single element arrayed two-demensionally on the nonplanar surface are under consideration, and it is investigated by computation of the synthetic electric field strength in the far zone. In addition, various radiation characteristics, such as return loss, resonant frequency, radiation pattern, half-power, beamwidth, gain, are measrued and compared with the theroetical values according to the variation of curvature, by designing and building 4-element array microstrip antenna operating at 10 GHz, and microstrip feed lines. As predicted in theroy, it is verified that radiation pattern of antennas mounted on the concave and the convex surfaces alike broadens as the radius of curvature decreases. And for the curved surfaces, aggrement between computed values of the total synthetic radiation power pattern by the method of transformed coordinates and measured valuse is good. Besides, it is found that resonant frequency, input impedance and gain are hardly affected by the radius of curvature.

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A New Selected Mapping Scheme without Side Information Using Cross-Correlation (상호 상관을 이용한 부가정보가 필요 없는 Selected Mapping 수신방법 제안)

  • Lee, Jong-keun;Chang, Dae-ig
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.42 no.4
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    • pp.739-746
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    • 2017
  • Orthogonal frequency division multiplexing(OFDM) systems have many advantages. However, OFDM systems are much affected by a nonlinear distortion because those systems have a high peak to average power ratio(PAPR) value. A selected mapping technology was suggested to reduce a PAPR value. The technology does not have data loss but receivers need side information to know modified phase sequence. Therefore, side information causes decreased a transmission efficiency. In this paper, we suggest a blind SLM receiver using a cross correlation technology. This receiver does not require side information. The proposed blind SLM receiver calculates sums of cross-correlation between transmitted pilot signals multiplied by each phase sequence and received pilot signals. So, this receiver detects side information which has a maximum sum cross-correlation value. We compared our proposed SLM receiver to a conventional blind SLM receiver through bit error rate(BER) and side information error rate(SIER) performances. Simulation results show that the proposed SLM receiver has improved BER and SIER performances than the conventional SLM receiver.

A New Resource Allocation Technique to Mitigate Co-Channel Interference in Cellular OFDMA Systems (OFDMA 시스템에서 셀 외곽지역의 동일 채널간섭 최소화를 위한 자원할당 기법)

  • Kim Dai-Kwan;Kim Jong-Kyung;Seo Jong-Soo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.6A
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    • pp.603-610
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    • 2006
  • This paper considers the problem of mitigating CCI(Co-channel Interference) in cellular OFDMA downlink systems. The users in the cell-edge area suffer from large CCIs, and their SINR requirements are hard to be maintained. To guarantee their QoS, we propose a new exclusive sub-carrier allocation and power control algorithm. The performance of the proposed two-step algorithm is simulated in SUI-A path-loss model, and it is compared with that of the conventional algorithm. The simulation results show that the data transmission rate in the cell-edge area was increased by 600Kbps within the same power constraint. The results indicate that with proposed algorithm, the data rate stability can be achieved independently of the user location in the cell.

Performance Improvement for Visible Light Communications Using Pre-Equalizer and Optical Design (전치 등화기와 광학설계를 이용한 가시광통신 전송 용량 및 거리 향상 연구)

  • Kwon, Do-Hoon;Yang, Se-Hoon;Kim, Hyun-Seung;Son, Yong-Hwan;Han, Sang-Kook
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.39C no.6
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    • pp.476-481
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    • 2014
  • In this paper, we design the pre-equalizer of transmitter circuit in order to enhancement modulation bandwidth of white LED which is light source of VLC (Visible Light Communication). Also, we eliminate yellow light component by optical filtering which mitigate frequency response of white LED. Power loss by optical filtering is overcome by using convex lens. By applying proposed system, 3 dB bandwidth deciding modulation bandwidth of white LED increases from 3 MHz to more than 25 MHz and the transmission distance increases by optical design which secure additional signal power. We optically modulate NRZ-OOK signal to LED and receive light signal using APD. We analyze received data using CSA and RFSA. As a result, we experimently demonstrate the possibility that transmits NRZ-OOK signal up to 30 Mbps in 4.5 m, 50 Mbps in 1.5 m through the pre-equalizer and optical design.

Topology Design for Energy/Latency Optimized Application-specific Hybrid Optical Network-on-Chip (HONoC) (특정 용도 하이브리드 광학 네트워크-온-칩에서의 에너지/응답시간 최적화를 위한 토폴로지 설계 기법)

  • Cui, Di;Lee, Jae Hoon;Kim, Hyun Joong;Han, Tae Hee
    • Journal of the Institute of Electronics and Information Engineers
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    • v.51 no.11
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    • pp.83-93
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    • 2014
  • It is a widespread concern that electrical interconnection based network-on-chip (NoC) will ultimately face the limitation in communication bandwidth, transmission latency and power consumption in the near future. With the development of silicon photonics technology, a hybrid optical network-on-chip (HONoC) which embraces both electrical- and optical interconnect, is emerging as a promising solution to overcome these problems. Today's leading edge systems-on-chips (SoCs) comprise heterogeneous many-cores for higher energy efficiency, therefore, extended study beyond regular topology based NoC is required. This paper proposes an energy and latency optimization topology design technique for HONoC taking into account the traffic characteristics of target applications. The proposed technique is implemented with genetic algorithm and simulation results show the reduction by 13.84% in power loss and 28.14% in average latency, respectively.