• Title/Summary/Keyword: and electrical stability

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A Study on Optimal Sequential Reclosing to Improve Transient Stability in Transmission System (송전계통 과도 안정도 향상을 위한 최적 순차 재폐로에 관한 연구)

  • Gwon, Gi-Hyeon;Oh, Yun-Sik;Park, Ji-Kyung;Jo, Kyu-Jung;Sohn, Seung-Hyun;Kim, Chul-Hwan
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.10
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    • pp.1354-1360
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    • 2013
  • In transmission system, reclosing scheme is very useful method to improve continuity of power supply and reliability of system. Especially, high speed reclosing which is used generally in transmission systems has a benefit improving transient stability. However, the reclosing can jeopardize the stability under the condition having high difference of voltage phase angle between both ends. Thus, this paper proposes optimal sequential reclosing scheme to improve transient stability due to reclosing operation. The optimal sequential reclosing is that each phase is closed sequentially considering transient energy. In this paper, 345kV and 154kV transmission system is modeled using EMTP (ElectroMagnetic Transient Program) to verify the performance and effectiveness of optimal sequential reclosing on transient stability. Also, Integral Square Error(ISE) method is used to assess the transient stability.

Comparison of Routh-Hurwitz and Absolute Stability Criteria in Application to Scaled Telerobotics Systems (스케일 텔레 로보틱스 시스템에 적용된 Routh-Hurwitz와 절대 안정도 기준의 비교)

  • Gaponov, Igor;Cho, Hyun Chan;Jeon, Hong-Tae
    • Journal of the Institute of Electronics and Information Engineers
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    • v.50 no.11
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    • pp.171-179
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    • 2013
  • This paper presents a comparative study on application of Routh-Hurwitz and Llewellyn absolute stability criteria to a scaled telerobotic system. The dynamic equations of the telerobotic system are given, and the transfer function of the system is obtained for further stability analysis. The stable margins of controller gains are obtained using both stability analysis methods, and the differences in the results are described and explained. The paper is concluded by a numerical example verifying performed stability analysis.

Speed Control of DC Series Wound Motor Using a Genetic A1gorithm with Self-Tuning Method (유전알고리즘의 자기동조 방법에 의한 직류 직권모터 모터 속도제어)

  • Bae, Jong-Il;Je, Chang-Woo
    • Proceedings of the KIEE Conference
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    • 2003.07d
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    • pp.2763-2765
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    • 2003
  • Generally, we made use of PID control for torque control, speed control and stability, Hence, dynamic characteristic of DC motor has been studied for stable drive and accurate speed control by many engineers. But, in this paper, we applied genetic algorithm to current control for robust control and stability In conclusion, we prove that current control of genetic algorithm can be high efficiency.

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Stability of Linear Systems with Interval Time-varying Delay via New Interval Decomposition (새로운 구간 분해 방법을 이용한 구간 시변지연을 갖는 선형시스템의 안정성)

  • Kim, Jin-Hoon
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.60 no.9
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    • pp.1748-1753
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    • 2011
  • In this paper, we consider the stability of linear systems with an interval time-varying delay. It is known that the adoption of decomposition of delay improves the stability result. For the interval time-delay case, they applied it to the interval of time-delay and got less conservative results. Our basic idea is to apply the general decomposition to the low limit of delay as well as interval of time-delay. Based on this idea, by using the modified Lyapunov-Krasovskii functional and newly derived Lemma, we present a less conservative stability criterion expressed as in the form of linear matrix inequality(LMI). Finally, we show, by well-known two examples, that our result is less conservative than the recent results.

Stability of Time-delayed Linear Systems using an Improved Integral Inequality (개선된 적분부등식을 이용한 시간지연 선형 시스템의 안정성)

  • Kim, Jin-Hoon
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.66 no.5
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    • pp.806-811
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    • 2017
  • This paper considers the delay-dependent stability of linear systems with a time-varying delay in the frame work of Lyapunov-Krasovskii functional(LKF) approach. In this approach, an integral inequality is essential to estimate the upper bound of time-derivative of LKF, and a less conservative one is needed to get a less conservative stability result. In this paper, based on free weighting matrices, an improved integral inequality encompassing well-known results is proposed and then a stability result in the form of linear matrix inequality is derived based on an augmented LKF. Finally, two well-known numerical examples are given to demonstrate the usefulness of the proposed result.

A New Algorithm for Unstable Mode Decision in the On-line Transient Stability Assessment (온라인 과도안정도 평가를 위한 새로운 불안정모드 선정 알고리즘)

  • Chang, Dong-Hwan;Kim, Jung-Woo;Chun, Yeong-Han
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.57 no.7
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    • pp.1123-1128
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    • 2008
  • The necessity of online dynamic security assessment is getting apparent under Electricity Market environments, as operation of power system is exposed to more various operating conditions. For on-line dynamic security assessment, fast transient stability analysis tool is required for contingency selection. The TEF(Transient Energy Function) method is a good candidate for this purpose. The clustering of critical generators is crucial for the precise and fast calculation of energy margin. In this paper, we propose a new method for fast decision of mode of instability by using stability indices and energy margin. The method is a new version of our previous paper.[1] Case studies are showing very promising results.

Energy Conservation Law and its application for Direct Energy method of Power System Stability (에너지 보존법칙과 전력계통 안정도 직접 해석법에서의 응용)

  • Moon, Young-Hyun;Lee, Yong-Hoon;Cho, Byoung-Hoon;Ryu, Heon-Su;Choi, Byoung-Kon
    • Proceedings of the KIEE Conference
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    • 1998.11a
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    • pp.263-268
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    • 1998
  • Many papers have recently been presented to develop energy functions for power systems. However, earlier studies adopted case-by-case approaches, which failed to give a general approach to deal with various kinds of generator models. In this paper, two useful theorems are developed regarding the integral relationships of the generator power versus its phasor current and voltage. By using the proposed theorems, an exact energy conservation law can be derived from the complex integral. The proposed energy conservation law, which is free of the generator model, can be utilized to develop energy functions for various kinds of generator models including the speed governors, and exciters. An illustrative example is given for a multimachine system with the Eq' model of generator. This thesis also shows a possibility of more accurate and fast stability analysis by using the proposed Energy Conservation Law.

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The Derivation of the Energy Function reflecting Governor's Integral Control Loop, and Direct Stability Analysis (조속기 적분제어회로를 고려한 에너지함수 유도 및 과도안정도 해석)

  • Ryu, H.S.;Lee, E.H.;Kim, B.;Oh, Y.T.;Moon, Y.H.
    • Proceedings of the KIEE Conference
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    • 1995.11a
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    • pp.92-94
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    • 1995
  • In this paper, the derivation of the energy function reflecting the governor's integral control loop is presented. When integral control is considered we obtain oscillatory response of the loop at the price of reducing frequency error. In other words, as $K_I$ is inclosed, the region of stability is decresed. When derived energy function is applied to the one machine infinite bus system, we showed that this function can be used to assess stability.

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A New Generator Grouping Method for Speed-up of Transient Stability Evaluation in SIME (SIME법의 과도안정도 판정속도 향상을 위한 새로운 발전기 그룹핑 방법)

  • Ahn, Tae-Hyung;Lee, Byong-Jun;Kwon, Sae-Hyuk
    • Proceedings of the KIEE Conference
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    • 1999.11b
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    • pp.150-152
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    • 1999
  • This paper presents a new generator grouping method for speed-up of transient stability evaluation in SIME. The critical generators are grouped by new indices in the early stage of time domain simulation. And the simulation can be early terminated by fast stability evaluation using the time trajectory of equivalent one machine infinite bus. The main advantage of the proposed method is that it can be applied to stable cases as well as unstable ones. The effectiveness of the proposed method is tested on the PSS/E test system.

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Some Properties on Receding Horizon $H_{\infty}$ Control for Nonlinear Discrete-time Systems

  • Ahn, Choon-Ki;Han, Soo-Hee;Kwon, Wook-Hyun
    • 제어로봇시스템학회:학술대회논문집
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    • 2004.08a
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    • pp.460-465
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    • 2004
  • In this paper, we present some properties on receding horizon $H_{\infty}$ control for nonlinear discrete-time systems. First, we propose the nonlinear inequality condition on the terminal cost for nonlinear discrete-time systems. Under this condition, noninceasing monotonicity of the saddle point value of the finite horizon dynamic game is shown to be guaranteed. We show that the derived condition on the terminal cost ensures the closed-loop internal stability. The proposed receding horizon $H_{\infty}$ control guarantees the infinite horizon $H_{\infty}$ norm bound of the closed-loop systems. Also, using this cost monotonicity condition, we can guarantee the asymptotic infinite horizon optimality of the receding horizon value function. With the additional condition, the global result and the input-to-state stable property of the receding horizon value function are also given. Finally, we derive the stability margin for the saddle point value based receding horizon controller. The proposed result has a larger stability region than the existing inverse optimality based results.

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