• 제목/요약/키워드: cell capacity

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다중 사용자 Massive MIMO 시스템의 파일럿 오버헤드를 고려한 최적 기지국 안테나 수 및 사용자 수 분석 (Optimal Numbers of Base Station Antennas and Users in Multiuser Massive MIMO Systems with Pilot Overhead)

  • 정민채;최수용
    • 한국통신학회논문지
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    • 제41권11호
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    • pp.1630-1638
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    • 2016
  • 본 논문에서는 다중 사용자(multiuser)가 다수의 기지국 안테나(MIMO, Multiple-Input and Multiple-Output)를 동시에 사용하는 다중 사용자 massive MIMO 시스템 환경을 고려한다. 다중 사용자를 동시에 지원하기 위해 기지국에서는 ZFBF(Zero-Forcing Beamforming) 기법을 고려하고 수신 신호 검출을 위해 파일럿 신호를 고려한 하향 링크 프레임 구조를 적용하여 평균 셀 용량을 도출한다. 평균 셀 용량은 기지국 안테나 수 및 사용자 수에 대해 오목 함수 (concave function)임을 수식적으로 증명하고, 오목 함수 특징을 통해 최적의 기지국 안테나 수 및 사용자 수를 도출한다. 실험 결과를 통해 수식적으로 도출한 최적 값을 검증하고, 최적값 기반의 평균 셀 용량은 송신 SNR(Signal to Noise Ratio)에 비례하여 증가함을 확인할 수 있다.

하향링크 사용자 용량 개선을 위한 통계적 다중화기반의 RFH-OFDMA (Statistical Multiplexing Based RFH-OfDMA System for Improving Downlink User Capacity)

  • 정방철;이형진;성단근
    • 한국통신학회논문지
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    • 제30권7A호
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    • pp.578-586
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    • 2005
  • 본 논문에서는 하향링크에서 사용자 용량 증가를 위하여 통계적 다중화에 기반한 RFH-OFDMA(Random Frequency Hopping-Orthogonal Frequency Division Multiple Access) 방식을 제안한다. 사용자 용량은 한 셀에서 주어진 기본 데이터 전송률로 데이터 전송이 가능한 최대 사용자의 수를 의미한다. 본 논문에서는 제안된 통계적 다중화 기반의 RFH-OFDMA 방식의 하향링크 사용자 용량과 기존 FH-OFDMA 방식에서의 하향링크 사용자 용량을 비교한다. 사용자 용량은 부반송파 개수와 인접 셀 간섭에 의하여 제한되며 수신 SINR이 가장 열악한 환경에서의 시스템 용량을 상호 비교하기 위하여 사용자는 모두 셀 경계에 있다고 가정하고 인접 셀 간섭은 최대 값을 갖는다고 가정한다. 시뮬레이션 결과를 통하여, 사용자의 채널 활성도가 0.1, 수신단에서 요구되는 Eb/IO가 6dB, 3-sector 안테나가 사용된 경우에 제안된 RFH-OFDMA 방식이 262명을 수용한 반면에 기존의 FH-OfDMA방식의 경우 51명의 사용자를 수용할 수 있음을 보여준다.

The Initial Irreversible Capacity of the Lithium Ion Battery System Using by the Gradual Control of State of Charge

  • Doh, Chil-Hoon;Choi, Sang-Jin;Jin, Bong-Soo;Moon, Seong-In;Yun, Mun-Soo
    • 전기화학회지
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    • 제5권4호
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    • pp.173-177
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    • 2002
  • Electrochemical characteristics of a graphite/lithium and a $LiCoO_2/lithium$ half cell and a $graphite/LiCoO_2$ full cell were analyzed using a GCSOC (gradual control test of the state of charge) technique. The IIE (initial intercalation coulombic efficiency), which represents lithium intercalation property of the electrode material, and the $lIC_s$ (initial irreversible capacity by the surface), which represents irreversible reaction between the electrode surface and the electrolyte were obtained from the GCSOC analysis. Linear-fittable capacity ranges of IIE of graphite and $LiCoO_2$ electrodes were 370 and 150 mAh/g, respectively, based on material weight. The value of lIE for graphite and $LiCoO_2$ electrodes were $93-94\%$ and $94-95\%$, respectively. The value of IICs for graphite and $LiCoO_2$ electrodes were 15-17 mAh/g and 0.3-1.7 mAh/g, respectively. The value of IIE for $graphite/LiCoO_2$ full cell, used GX25 and DJG311 as a graphite, was $89-90\%$ that lower than that for the half cells. Parameters of IIE and IICs can also be used to represent not only half cell but also full cell.

병원관리 전산화

  • 김윤상
    • 대한의용생체공학회:의공학회지
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    • 제3권1호
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    • pp.49-50
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    • 1982
  • In this paper, the information capacity, the intergrate performance measure of digital radiography system has been quantitatively analyzed. The effect of various factors affecting the information capacity of the digital radiography system in multi-stage detection processes has been considered and analyzed in detail. The results show that the more information capacity can be obtained with the smaller detector cell area, despite of the reduced signal to noise ratio due to the reduced number of X-ray photons per detector cell. Considering the limit of human visual acuity. however, the sufficient resolution will be obtained when the detector cell size in 0.2${\times}$0.2mm with 8 bit quantizaion. And also the results indicates that the information capacity may be severely reduced by the mixture of electric noise in final read-out stage.

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The optimum conversion efficiency in nile blue arabinose system by photogalvanic cell

  • Lal, Mohan;Gangotri, K.M.
    • Advances in Energy Research
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    • 제3권3호
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    • pp.143-155
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    • 2015
  • The Nile blue has been used as a photosensitizer with Arabinose as a reductant in photogalvanic cell for optimum conversion efficiency and storage capacity. Reduction cost of the photogalvanic cell for commercial utility. The generated photopotential and photocurrent are 816.0 mV and $330.0{\mu}A$ respectively. The maximum power of the cell is $269.30{\mu}W$ where as the observed power at power point is $91.28{\mu}W$. The observed conversion efficiency is 0.6095% and the fill factor 0.2566 has been experimentally found out at the power point of the photogalvanic cell, whereas the absolute value is 1.00. The photogalvanic cell so developed can work for 120.0 minutes in dark if it is irradiated for 200.0 minutes that is the storage capacity of photogalvanic cell is 60.00%. The effects of different parameters on the electrical output of the photogalvanic cell have been observed. A mechanism has also been proposed for the photogeneration of electrical energy.

산업용 이차전지의 열화판정에 관한 연구 (A Study on Degradation Diagnosis of Secondary Battery)

  • 남종하;태용준;여인영;최진홍;천창열;김재웅
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2005년도 전력전자학술대회 논문집
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    • pp.170-172
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    • 2005
  • Internal battery ohmic measurements have been a hot topic amongst battery users and battery manufacturers. As a battery deteriorates and loses its capacity, the internal resistance of the battery increases. Everyone seems to agree that measuring the internal parameters of a cell can be very useful in determining a battery's state of health. In this paper experiences show that if a cell's resistance increases by more than25% above its baseline value(known good resistance of new 100% capacity cell), the cell will no loger be able to deliver 80% or more of the rated capacity.

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Up/Downlink Hybrid Inter-Cell Coordination Patterns of the TDD/MC-CDMA System, TDD/MC-CDMA

  • 한상진;이성진;이상훈;길계태
    • 한국통신학회논문지
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    • 제34권5A호
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    • pp.421-428
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    • 2009
  • Inter-cell coordination has been an emerging issue for mitigating inter-cell interference in broadband wireless access networks such as IEEE802.16 and 3GPP LTE (Long Term Evolution). This paper proposes uplink/downlink hybrid inter-cell coordination patterns for a TDD (Time Division Duplex)/MC-CDMA (Multi-Carrier Code Division Multiple Access) system. For the performance analysis, closed forms of inter-cell interferences are derived when uplink and downlink transmissions coexist over a multi-cell environment. In the analysis, we find an optimal ratio of downlink transmit powers of BSs (Base Stations) based on the target outage probability and the performance according to ratios of uplink/downlink transmit powers of MSs (Mobile Stations)/BSs is explored. Our numerical results show that interference mitigation utilizing the characteristics of the uplink and downlink power ratio is very effective in improving system performance in terms of QoS.

Model Prediction and Experiments for the Electrode Design Optimization of LiFePO4/Graphite Electrodes in High Capacity Lithium-ion Batteries

  • Yu, Seungho;Kim, Soo;Kim, Tae Young;Nam, Jin Hyun;Cho, Won Il
    • Bulletin of the Korean Chemical Society
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    • 제34권1호
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    • pp.79-88
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    • 2013
  • $LiFePO_4$ is a promising active material (AM) suitable for use in high performance lithium-ion batteries used in automotive applications that require high current capabilities and a high degree of safety and reliability. In this study, an optimization of the electrode design parameters was performed to produce high capacity lithium-ion batteries based on $LiFePO_4$/graphite electrodes. The electrode thickness and porosity (AM density) are the two most important design parameters influencing the cell capacity. We quantified the effects of cathode thickness and porosity ($LiFePO_4$ electrode) on cell performance using a detailed one-dimensional electrochemical model. In addition, the effects of those parameters were experimentally studied through various coin cell tests. Based on the numerical and experimental results, the optimal ranges for the electrode thickness and porosity were determined to maximize the cell capacity of the $LiFePO_4$/graphite lithium-ion batteries.

Dynamic Fractional Frequency Reuse based on an Improved Water-Filling for Network MIMO

  • M.K, Noor Shahida;Nordin, Rosdiadee;Ismail, Mahamod
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제10권5호
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    • pp.2124-2143
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    • 2016
  • In Long Term Evolution-Advanced (LTE-A) systems, Inter-cell Interference (ICI) is a prominent limiting factor that affects the performance of the systems, especially at the cell edges. Based on the literature, Fractional Frequency Reuse (FFR) methods are known as efficient interference management techniques. In this report, the proposed Dynamic Fractional Frequency Reuse (DFFR) technique improved the capacity and cell edge coverage performance by 70% compared to the Fractional Frequency Reuse (FFR) technique. In this study, an improved power allocation method was adopted into the DFFR technique to reach the goal of not only reducing the ICI mitigation at the cell edges, but also improving the overall capacity of the LTE-A systems. Hence, an improved water-filling algorithm was proposed, and its performance was compared with that of other methods that were considered. Through the simulation results and comparisons with other frequency reuse techniques, it was shown that the proposed method significantly improved the performance of the cell edge throughput by 42%, the capacity by 75%, and the coverage by 80%. Based on the analysis and numerical expressions, it was concluded that the proposed DFFR method provides significant performance improvements, especially for cell edge users.

PV모듈의 냉각장치를 적용한 집속형 복합패널의 집열 특성 평가 (Thermal Characteristics Evaluation of Concentrated Hybrid Panel with cooling system on PV module)

  • 서유진;허창수
    • 한국태양에너지학회 논문집
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    • 제25권3호
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    • pp.47-52
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    • 2005
  • Normally if sunlight is directed on a solar cell without any increasing in temperature, the amount of absorption energy per unit area of each cell is increasing. In a silicon solar cell. however, cell conversion efficiency decreases with the increase of temperature. Therefore, to maintain cell conversion efficiency under normal condition, it is necessary to keep the cell at operating temperature. We tried to design and make new hybrid panel with cooling system to prevent increasing of temperature on cell, collect and use thermal energy more effectively. We compared performance of this new hybrid panel with current thermal panel. We also evaluated conversion efficiency, thermal capacity and confirmed cooling effects from thermal absorption efficiency.