• Title/Summary/Keyword: power ramping

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Improved Throughput of WCDMA Downlink using Power Ramping under Retransmissions for Type I Hybrid ARQ with in Rayleigh Fading Channel (레일레이 페이딩 채널에서 유형 I 하이브리드 ARQ의 재전송시 전력 램핑를 채용하는 WCDMA 하향링크의 개선된 수율)

  • Kim, Bong-Hoe;Hwang, Seung-Hoon;Hong, Yu-Pyo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.1A
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    • pp.9-12
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    • 2007
  • In this paper, we propose and analyze a scheme for wireless channels, which is a combination of a type I hybrid-automatic repeat request (H-ARQ) scheme and a power ramping. The power ramping is considered for more reliable downlink data transmission, in which the transmission power is gradually changed from a small level to a large level when the number of retransmissions increases. The simulation results demonstrate that, when the power ramping step size is 0.5dB, the average throughput gain may be as high as 2% to 5% with properly selected parameters.

Security Cost Analysis with Linear Ramp Model using Contingency Constrained Optimal Power Flow

  • Lyu, Jae-kun;Kim, Mun-Kyeom;Park, Jong-Keun
    • Journal of Electrical Engineering and Technology
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    • v.4 no.3
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    • pp.353-359
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    • 2009
  • This paper proposes a novel technique for calculating the security costs that properly includes ramping constraints in the operation of a deregulated power system. The ramping process is modeled by a piecewise linear function with certain assumptions. During this process, a ramping cost is incurred if the permissible limits are exceeded. The optimal production costs of the power producers are calculated with the ramping cost included, considering a time horizon with N-1 contingency cases using contingency constrained optimal power flow (CCOPF), which is solved by the primal-dual interior point method (PDIPM). A contingency analysis is also performed taking into account the severity index of transmission line outages and its sensitivity analysis. The results from an illustrative case study based on the IEEE 30-bus system are analyzed. One attractive feature of the proposed approach is that an optimal solution is more realistic than the conventional approach because it satisfies physical constraints, such as the ramping constraint.

Evaluation of Ramping Capability for Day-ahead Unit Commitment considering Wind Power Variability (풍력발전의 변동성을 고려한 기동정지계획에서의 적정 Ramping 용량 산정)

  • Lyu, Jae-Kun;Heo, Jae-Haeng;Park, Jong-Keun
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.4
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    • pp.457-466
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    • 2013
  • Wind energy is rapidly becoming significant generating technologies in electricity markets. As probabilistic nature of wind energy creates many uncertainties in the short-term scheduling, additional actions for reliable market operation should be taken. This paper presents a novel approach to evaluate ramping capability requirement for changes in imbalance energy between day-ahead market and real-time market due to uncertainty of wind generation as well as system load. Dynamic ramp rate model has been applied for realistic solution in unit commitment problem, which is implemented in day-ahead market. Probabilistic optimal power flow has been used to verify ramping capability determined by the proposed method is reasonable in economic and reliable aspects. This approach was tested on six-bus system and IEEE 118-bus system with a wind farm. The results show that the proposed approach provides ramping capability information to meet both forecasted variability and desired confidence level of anticipated uncertainty.

Effect of Ramping Rate on the Durability of Proton Exchange Membrane Water Electrolysis During Dynamic Operation Using Triangular Voltage Cycling

  • Hye Young Jung;Yong Seok Jun;Kwan-Young Lee;Hyun S. Park;Sung Ki Cho;Jong Hyun Jang
    • Journal of Electrochemical Science and Technology
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    • v.15 no.2
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    • pp.253-260
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    • 2024
  • Proton exchange membrane water electrolysis (PEMWE) is an efficient method for utilizing renewable energy sources such as wind and solar powers to produce green hydrogen. For PEMWE powered by renewable energy sources, its durability is a crucial factor in its performance since irregular and fluctuating characteristics of renewable energy sources, especially for wind power, can deteriorate the stability of PEMWE. Triangular voltage cycle is well able to simulate fluctuating wind power, but its effect on the durability has not been investigated extensively. In this study, the performance degradation of the PEMWE cell operated with the triangular voltage cycling was investigated at different ramping rates. The measured current responses during the cycling gradually decreased for both ramping rates, and I-V curve measurements before and after the cycling confirmed the degradation of the performances of PEMWE. For both measurements, the degradation rate was larger for 300 mV s-1 than 30 mV s-1, and they were determined as 0.36 and 1.26 mV h-1 (at the current density of 2 A cm-2) at the ramping rates of 30 and 300 mV s-1, respectively. The comparison with other studies on triangular voltage cycling also indicate that an increase in the ramping rate accelerates the deterioration of the PEMWE performance. X-ray photoelectron spectroscopy and transmission electron microscopy results showed that the Ir catalyst was oxidized and did not dissolve during the voltage cycling. This study suggests that the ramping rate of the triangular voltage cycling is an important factor for the evaluation of the durability of PEMWE cells.

Effects of Power Ramping for ARQ-Aided Downlink Time Switched Transmit Diversity in the WCDMA LCR-TDD System (WCDMA LCR-TDD 시스템의 ARQ이 적용된 하향링크 TSTD에서 전력 램핑의 영향)

  • Ma, Ri-A;Jeon, Cha-Eul;Hwang, Seung-Hoon
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.46 no.10
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    • pp.52-56
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    • 2009
  • In this paper, we investigate the performance of the ARQ-aided downlink Time Switched Transmit Diversity (TSTD) in the WCDMA LCR-TDD system, when power ramping is applied. The proposed power ramping scheme ramps up the transmission power and then retransmits the data, when the receiver sends the response signal (ACK or NACK signal) to the transmitter and the response signal is NACK signal. Simulation results demonstrate that the proposed scheme yields about 0.7dB performance gain in terms of average Eb/N0, compared with the conventional ARQ-aided TSTD when a mobile speed is 3km/h and an frame error rate (FER) is 1%, respectively. In addition, 2.5% of throughput gain is shown when average Eb/N0 is equal to 0dB.

Performance Analysis of Low Power Paging Scheme using user's Property (사용자의 개별적 특성을 활용한 저전력 페이징 방안의 제안 및 분석)

  • Jeong, Ji-Won;Kim, Jeong-Ho
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.47 no.5
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    • pp.1-8
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    • 2010
  • Recently subscribers in mobile communication services increase gradually, and the new multifunctional portable terminals can provide various functionalities. However this trend may not be desirable in Green IT respect because the emission of carbon dioxides emitted during operations of base station and mobile stations can cause significant effect on the emissions of carbon dioxides. In this paper the power saving scheme which can adjust slot index while the system is in a paging phase has been proposed and its performance has been evaluated. The slot cycle index can be adjusted according to individual user's property, its effect on the system performance has been investigated. In order to mitigate its adverse effect, power ramping scheme is considered and evaluated thereafter.

A Study on Effects of Axial Gas Flow in the Gap and Fuel Cracking on Fission Gas Release under Power Ramping (출력 감발 조건하에서 핵분열 기체 생성물의 방출에 대한 축방향 기체 유동과 핵연료 파손의 영향에 관한 연구)

  • Han, Jin-Kyu;Yoon, Young-Ku
    • Nuclear Engineering and Technology
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    • v.22 no.2
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    • pp.116-127
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    • 1990
  • The fission gas release model used In the SPEAR-BETA fuel performance code was modified by use of effective thermal conductivity for cracked fuel and by laking Into account axial fission-gas mixing between the fuel-clad gap and the plenum. With use of this modified model the fission gas release was analyzed under various power ramping conditions of P$_{max}$ and $\Delta$.fP. Effective fuel thermal conductivity that accounts for the effect of fuel tracking was used in calculation of the fuel temperature distribution and the Internal gas pressure under power ramping conditions. Mixing and dilution effects due to axial gas flow were also considered in computing the width and the thermal conductivity of the gap. The effect of axial gas flow w3s solved by the Crank-Nicholson method. The finite difference method was used to save running time in the calculation. The present modified fission-gas release model was validated by comparing its predicted results with experimental data from various lamping tests In the literature and calculated results with use of the models used In the SPEAR-BETA and FEMAXI-IV codes. Results obtained with use of the present modified model showed better agreement with experimental data reported in the literature than those results with use of the latter codes. The fuel centerline temperature calculated with introduction of effective thermal conductivity for centerline temperature calculated with Introduction of effective thermal conductivity for cracked fuel was 200 higher fission gas release predicted with use of the modified model was nearly 6% larger on the average than that calculated by use of the unmodified model used in the SPEAR-BETA code.e SPEAR-BETA code.e.

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"Leak Current" correction for critical current measurement of no-insulation HTS coil

  • Song, Jung-Bin;Hahn, Seungyong
    • Progress in Superconductivity and Cryogenics
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    • v.19 no.2
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    • pp.48-52
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    • 2017
  • Discrepancy between a power supply current and an actual "spiral" coil current makes the conventional 4-probe measurement of a critical current ($I_c$) of a no-insulation (NI) high temperature superconductor (HTS) coil inaccurate and time-consuming. This paper presents a fast and accurate approach for $I_c$ measurement of NI HTS coils. With an NI HTS coil energized at a constant ramping rate, a complete analytic expression for the spiral coil current was obtained from a first-order partial differential equation that derived from an equivalent circuit model of the NI coil. From the analytic solution, both spiral coil current and radial leak current can be obtained simultaneously, which enables fast and accurate measurement of the NI coil $I_c$. To verify the proposed approach, an NI double-pancake (DP) coil, wound with GdBCO tapes of $6mm{\times}0.1mm$, was constructed and its $I_c$ was repeatedly measured with various ramping rates in a bath of liquid nitrogen at 77 K. The measured results agreed well with the calculated ones, which validates the proposed approach to measure $I_c$ of an NI HTS coil.

Automatic Command Mode Transition Strategy of Direct Power Control for PMSG MV Offshore Wind Turbines (자동 지령모드절환 기능을 갖춘 PMSG MV 해상 풍력 발전기의 직접전력제어 방법)

  • Kwon, Gookmin;Suh, Yongsug
    • The Transactions of the Korean Institute of Power Electronics
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    • v.21 no.3
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    • pp.238-248
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    • 2016
  • In this study, an automatic command mode transition strategy of direct power control (DPC) is proposed for permanent magnet synchronous generators (PMSGs) medium-voltage (MV) offshore wind turbines (WTs). Benchmarking against the control methods are performed based on a three-level neutral-point-clamped (NPC) back-to-back type voltage source converter (VSC). The ramping rate criterion of complex power is utilized to select the switching vector in DPC for a three-level NPC converter. With a grid command and an MPPT mode transition strategy, the proposed control method automatically controls the generated output power to satisfy a grid requirement from the hierarchical wind farm controller. The automatic command mode transition strategy of DPC is confirmed through PLECS simulations based on Matlab. The simulation result of the automatic mode transition strategy shows that the proposed control method of VOC and DPC achieves a much shorter transient time of generated output power than the conventional control methods of MPPT and VOC under a step response. The proposed control method helps provide a good dynamic performance for PMSGs MV offshore WTs, thereby generating high quality output power.

Development of fast scanning magnet power supply for particle accelerator therapy (치료용 입자가속기를 위한 고속 스케닝 전자석 전원공급장치 개발)

  • Kim, Dong-Su;Kim, Yeong-U;Yu, Hyo-Yeol
    • Proceedings of the KIPE Conference
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    • 2014.11a
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    • pp.91-92
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    • 2014
  • 본 논문은 고속 Scanning 전자석 전원공급 장치를 제작하여 한국 원자력 의학원에 납품하였고, 전원 장치성능을 확인하였다. 한국 원자력 의학원에서 요구 사양은 전류 기울기가 440 kA/s와 출력 전압 / 전류는 ${\pm}530V$ / ${\pm}80A$이며, 과도상태 이후의 전류 정밀도는 ${\pm}100ppm$ 이하를 만족하는 전원장치 이다. 전류가 고속으로 증가하기 때문에 출력 케이블과 전자석 자체의 표피효과로 인해 구간별 성능에 미진한 부분이 확인되어 추가 연구개발이 요구된다.

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