• 제목/요약/키워드: Power Constraint

검색결과 500건 처리시간 0.026초

하이브리드 알고리즘을 응용하여 안전도제약을 만족시키는 최적전력조류 (Security Constrained Optimal Power Flow by Hybrid Algorithms)

  • 김규호;이상봉;이재규;유석구
    • 대한전기학회논문지:전력기술부문A
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    • 제49권6호
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    • pp.305-311
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    • 2000
  • This paper presents a hybrid algorithm for solving optimal power flow(OPF) in order to enhance a systems capability to cope with outages, which is based on combined application of evolutionary computation and local search method. The efficient algorithm combining main advantages of two methods is as follows : Firstly, evolutionary computation is used to perform global exploitation among a population. This gives a good initial point of conventional method. Then, local methods are used to perform local exploitation. The hybrid approach often outperforms either method operating alone and reduces the total computation time. The objective function of the security constrained OPF is the minimization of generation fuel costs and real power losses. The resulting optimal operating point has to be feasible after outages such as any single line outage(respect of voltage magnitude, reactive power generation and power flow limits). In OPF considering security, the outages are selected by contingency ranking method(contingency screening model). The OPF considering security, the outages are selected by contingency ranking method(contingency screening model). The method proposed is applied to IEEE 30 buses system to show its effectiveness.

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시간 제약 조건하에서의 최적 선택 공급 전압을 위한 전력 감소 스케줄링 (Reducing Power Consumption of a Scheduling Algorithm for Optimal Selection of Supply Voltage under the Time Constraint)

  • 최지영;김희석
    • 한국통신학회논문지
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    • 제27권11C호
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    • pp.1132-1138
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    • 2002
  • 본 논문은 시간 제약 조건하에서의 최적 선택 공급 전압을 위한 전력 감소 스케줄링 알고리듬을 제안한다. 전력감소 스케줄링에서는 전력소비를 줄이기 위해 가변 전압 레벨을 이용해 최적 공급 전압을 선택 휴리스틱 방법으로 연산을 수행하여 제어 스텝을 결정한다. 그리고 최적 선택 공급 전압 바인딩에서는 그래프 컬러링 기법을 이용해 레지스터 상의 전력 소비의 주원인인 스위칭 활동을 최소화한다. 상위 수준 벤치마크 예제를 이용한 실험으로부터 우리는 최적 선택 공급 전압을 이용한 제안한 알고리듬이 획일화된 단일 전압을 이용한 알고리듬보다 전력 소비를 줄이는데 효율적임을 보인다.

Optimal Energy-Efficient Power Allocation and Outage Performance Analysis for Cognitive Multi-Antenna Relay Network Using Physical-Layer Network Coding

  • Liu, Jia;Zhu, Ying;Kang, GuiXia;Zhang, YiFan
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제7권12호
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    • pp.3018-3036
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    • 2013
  • In this paper, we investigate power allocation scheme and outage performance for a physical-layer network coding (PNC) relay based secondary user (SU) communication in cognitive multi-antenna relay networks (CMRNs), in which two secondary transceivers exchange their information via a multi-antenna relay using PNC protocol. We propose an optimal energy-efficient power allocation (OE-PA) scheme to minimize total energy consumption per bit under the sum rate constraint and interference power threshold (IPT) constraints. A closed-form solution for optimal allocation of transmit power among the SU nodes, as well as the outage probability of the cognitive relay system, are then derived analytically and confirmed by numerical results. Numerical simulations demonstrate the PNC protocol has superiority in energy efficiency performance over conventional direct transmission protocol and Four-Time-Slot (4TS) Decode-and-Forward (DF) relay protocol, and the proposed system has the optimal outage performance when the relay is located at the center of two secondary transceivers.

Energy-Efficiency Power Allocation for Cognitive Radio MIMO-OFDM Systems

  • Zuo, Jiakuo;Dao, Van Phuong;Bao, Yongqiang;Fang, Shiliang;Zhao, Li;Zou, Cairong
    • ETRI Journal
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    • 제36권4호
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    • pp.686-689
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    • 2014
  • This paper studies energy-efficiency (EE) power allocation for cognitive radio MIMO-OFDM systems. Our aim is to minimize energy efficiency, measured by "Joule per bit" metric, while maintaining the minimal rate requirement of a secondary user under a total power constraint and mutual interference power constraints. However, since the formulated EE problem in this paper is non-convex, it is difficult to solve directly in general. To make it solvable, firstly we transform the original problem into an equivalent convex optimization problem via fractional programming. Then, the equivalent convex optimization problem is solved by a sequential quadratic programming algorithm. Finally, a new iterative energy-efficiency power allocation algorithm is presented. Numerical results show that the proposed method can obtain better EE performance than the maximizing capacity algorithm.

Scaling of design earthquake ground motions for tall buildings based on drift and input energy demands

  • Takewaki, I.;Tsujimoto, H.
    • Earthquakes and Structures
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    • 제2권2호
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    • pp.171-187
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    • 2011
  • Rational scaling of design earthquake ground motions for tall buildings is essential for safer, risk-based design of tall buildings. This paper provides the structural designers with an insight for more rational scaling based on drift and input energy demands. Since a resonant sinusoidal motion can be an approximate critical excitation to elastic and inelastic structures under the constraint of acceleration or velocity power, a resonant sinusoidal motion with variable period and duration is used as an input wave of the near-field and far-field ground motions. This enables one to understand clearly the relation of the intensity normalization index of ground motion (maximum acceleration, maximum velocity, acceleration power, velocity power) with the response performance (peak interstory drift, total input energy). It is proved that, when the maximum ground velocity is adopted as the normalization index, the maximum interstory drift exhibits a stable property irrespective of the number of stories. It is further shown that, when the velocity power is adopted as the normalization index, the total input energy exhibits a stable property irrespective of the number of stories. It is finally concluded that the former property on peak drift can hold for the practical design response spectrum-compatible ground motions.

On the Outage Behavior of Interference Temperature Limited CR-MISO Channel

  • Kong, Hyung-Yun;Asaduzzaman, Asaduzzaman
    • Journal of Communications and Networks
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    • 제13권5호
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    • pp.456-462
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    • 2011
  • This paper investigates the outage behavior of peak interference power limited cognitive radio (CR) networks with multiple transmit antennas. In CR-multi-input single-output (MISO) channel, the total transmit power is distributed over the transmitantennas. First, we use the orthogonal space-time codes (STC) to achieve the transmit diversity at CR-receiver (rx) and investigate the effect of the power distribution on the interference power received at the primary-receiver (P-rx). Then, we investigate the transmit antenna selection (TAS) scheme in which the CR system selects the best transmit antenna and allocates all the power to the selected best antenna. Two transmit antenna selection strategies are proposed depending on if feedback channel is available or not. We derive the closed form expressions of outage probability and outage capacity of all schemes with arbitrary number of transmit-antennas. We show that the proposed schemes significantly improve the outage capacity over the single antenna systems in Rayleigh fading environment. We also show that TAS based scheme outperforms the STC based scheme when peak interference power constraint is imposed on the P-rx only if a feedback channel from CR-rx to CR-transmitter is available.

Reducing Power Consumption of Wireless Capsule Endoscopy Utilizing Compressive Sensing Under Channel Constraint

  • Saputra, Oka Danil;Murti, Fahri Wisnu;Irfan, Mohammad;Putri, Nadea Nabilla;Shin, Soo Young
    • Journal of information and communication convergence engineering
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    • 제16권2호
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    • pp.130-134
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    • 2018
  • Wireless capsule endoscopy (WCE) is considered as recent technology for the detection cancer cells in the human digestive system. WCE sends the captured information from inside the body to a sensor on the skin surface through a wireless medium. In WCE, the design of low-power consumption devices is a challenging topic. In the Shannon-Nyquist sampling theorem, the number of samples should be at least twice the highest transmission frequency to reconstruct precise signals. The number of samples is proportional to the power consumption in wireless communication. This paper proposes compressive sensing as a method to reduce power consumption in WCE, by means of a trade-off between samples and reconstruction accuracy. The proposed scheme is validated under channel constraints, expressed as the realistic human body path loss. The results show that the proposed scheme achieves a significant reduction in WCE power consumption and achieves a faster computation time with low signal error reconstruction.

재생에너지 출력제한에 따른 출력량 배분 방안 연구 (The Study on the Method of Distribution of output according to Power Limit of Renewable Energy)

  • 명호산;김세호
    • 전기전자학회논문지
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    • 제23권1호
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    • pp.173-180
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    • 2019
  • 재생에너지의 점유율 증가에 의하여 출력이 제한되는 사례가 발생하고 있다. 전형적으로 풍력발전의 발전량이 높고 부하가 낮은 새벽시간에 출력제한이 주로 발생하였으나, 태양광발전의 점유율이 증가하면서 낮 시간에 풍력발전의 출력이 제한되는 사례가 발생하고 있다. 현재의 전력계통 운영 상황에서는 태양광발전의 점유율이 증가할수록 풍력발전의 출력 제한이 더욱 증가시킬 것이며, 이는 풍력발전 운영자의 어려움을 가중시킬 것이다. 본 논문에서는 발전원 그리고 발전소별 출력 제한을 위하여 전력계통의 운영 어려움 유발하는 에너지원의 우선 제약을 기준으로 설정하여 기준에 따라 재생에너지의 출력 제한량을 분배하는 방안을 제시하였다.

TCM 복호기의 ACS 다중화 및 생존경로척도 기억장치 관리 방법 (A Method of Multi-processing of ACS and Survivor Path Metric Memory Management for TCM Decoder)

  • 최시연;강병희;김진우;오길남;김덕현
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 제14회 신호처리 합동 학술대회 논문집
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    • pp.865-868
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    • 2001
  • TCM offers considerable coding gains without compromising bandwidth or signal power. But TCM decoder is more complex than convolutional Viterbi decoder. Because, the number of branches exponentially increased by the constraint length and input symbol bits. The parallelism of ACS and memory management technique of SPMM is one of the important factor for speed-up and hardware complexity. This paper proposes a multi-processing technique of ACS and also gives a memory management technique of SPMM in TCM decoders.

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MAP복호기를 이용한 Turbo code 설계 (Design Turbo code with MAP decoder)

  • 박태운;조원경
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 1999년도 하계종합학술대회 논문집
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    • pp.425-428
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    • 1999
  • Turbo decoder were shown to achieve performance within 0.7㏈ of the Shannon capacity limit. This constituted a significant gain in power efficiency over other coding techniques known at the time. In this paper, Turbo code with constraint length K=4, code rate 1/3, frame size 196bits(6 tail bits), 20㎳ frame and 6bit MAP decoder is implemented using VHDL. The designed Turbo code is used for voice service. Interactions of the system are used to attain large performance improvements.

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