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110KV母线系统谐振过电压的处理方式与对策研究
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作者 张海龙 《变频技术应用》 2016年第3期2-3,共2页
110kv电站的运行中常会因母线系统谐振产生过电压而发生故障,引发事故。本文将就母线系统的谐振过电压现象进行研究,提出相应的应对措施。
关键词 110KV母线系统 振过电压 处理方式
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浅谈中压配电装置中的过电压问题及解决对策
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作者 郑羽 徐永红 《广东科技》 2011年第8期83-84,共2页
对中压配电装置中的过电压分类研究,是保障供电的必要条件。了解谐振过电压的产生与对铁磁谐振过电压限制,建议采用避雷器与HXB型消弧及消谐过电压保护装置。
关键词 过电压 振过电压 接地 保护装置
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The Mechanism of Eliminating Harmonic Resonance with Controllers and Application to the Power Systems
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作者 吴琼 计国君 +1 位作者 宋文忠 戴先中 《Journal of Southeast University(English Edition)》 EI CAS 2002年第2期164-172,共9页
The phenomenon of anti-symmetrical bifurcation of periodic solutionsoccurring near an integral manifold is the intrinsic cause resulting in harmonic resonanceover-voltage in power systems. Due to this discovery, the p... The phenomenon of anti-symmetrical bifurcation of periodic solutionsoccurring near an integral manifold is the intrinsic cause resulting in harmonic resonanceover-voltage in power systems. Due to this discovery, the principle of eliminating resonance byusing anti-bifurcation technique is presented, which makes that the theoretical bases of verymeasure to eliminate resonance are unified firstly from a point of view of basic theory. Ourdiscussion models depend on a class of nonlinear control model. Using the direct Lyapunov method, acomplete theoretical proof is given in accordance with the measure of eliminating resonance byconnecting nonlinear resistor in series to the neutral point of P. T., and the feedback control lawbeing applied. It comprises the action of parameters of resistor to eliminate resonance and theactual process of eliminating resonance, i.e., to go against bifurcation process which forces thebig harmonic solutions to retreat to the integral manifold gradually and disappear eventually, whichby using the nonlinear controllers. This makes it sure that the intrinsic cause of resonance iseliminated thoroughly. The obtained theory results and computing results are better than thepresented results. 展开更多
关键词 eliminate resonance feedback control law OVER-VOLTAGE BIFURCATION MANIFOLD
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Quadratic integrability of solutions based on a class of delayed systems
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作者 计国君 《Journal of Southeast University(English Edition)》 EI CAS 2007年第4期630-638,共9页
Some properties such as oscillation, stability, existence of periodic solutions and quadratic integrability of solutions based on a class of second order nonlinear delayed systems are analyzed by using the V-function,... Some properties such as oscillation, stability, existence of periodic solutions and quadratic integrability of solutions based on a class of second order nonlinear delayed systems are analyzed by using the V-function, the Lyapunov functional or the Beuman-Bihari inequality, and some sufficient conditions based on those properties are given. Finally, the conclusions are applied to over-voltage models based on three-phase nonsynchronous closing of switches appearing in the power systems, the results in accord with the background physical meaning are obtained. And all the conditions of the conclusions are easy to validate, so the conclusions have definite theoretical meaning and are easy to apply in practice. 展开更多
关键词 nonlinear delayed system quadratic integrability periodic solution oscillatory solution OVERVOLTAGE
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Study on Over-Voltage of 220 kV Transformer's Neutrals and Protection Strategy
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作者 H.P. Yu S.M. Chen +2 位作者 P.C. Yang H. Yin G.L. Wu 《Journal of Energy and Power Engineering》 2011年第11期1102-1108,共7页
In order to limit short-circuit current and satisfy the need of relay setting, only part of the 220 kV power transformer is grounded, so on the neutrals of ungrounded transformers will appear the over-voltage. Current... In order to limit short-circuit current and satisfy the need of relay setting, only part of the 220 kV power transformer is grounded, so on the neutrals of ungrounded transformers will appear the over-voltage. Currently the value of over-voltage on transformer neutral point and the corresponding protection strategy is based on theoretical formula. This article uses the PSCAD/EMTDC software to calculate the over-voltage on the neutral point of 4 ungrounded power transformers in Chongqing 220 kV power grid. The result shows that the power frequency transient over-voltage on the neutrals may reach 178 kV. If the single-phase grounding fault occurs in ungrounded power system, the power frequency over-voltage on the neutrals will be more serious and rise to 138.6 kV. Non-full phase operation may cause serious ferro-resonance over-voltage on the neutrals of no-load transformer, which may last for seconds and may rise to 723.7 kV, causing serious threat to the transformer neutrals and line-side equipment. The article also studies the gap parameter which should be taken on the neutrals of 220 kV transformers at the end. 展开更多
关键词 Neutral point power transformer ARRESTER GAP power frequency over-voltage lightning over-voltage.
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Ferroresonance at Open Phase Operating Conditions of Power Transformers
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作者 Hani Obeid 《Journal of Energy and Power Engineering》 2012年第10期1714-1717,共4页
The reliability of electric supply to consumers is one of the most important factors that determine the requirements imposed on modem utility companies. This paper presents the results of investigation by computer sof... The reliability of electric supply to consumers is one of the most important factors that determine the requirements imposed on modem utility companies. This paper presents the results of investigation by computer software of the overvoltages resulting from a ferroresonance conditions in MV networks at open phase operating condition with and without connection to earth on source and load sides of distribution transformer. This overvoltage may reach 4.2 pu on one of the HV side of transformer unswitched phases. The results of the study show that ferroresonance overvoltage may be controlled by replacing fuses with circuit breakers on HV side to ensure switching-off all phases. Insertion of resistor or reactor in the neutral of source and loadsides of the transformer with 5% active load will help in suppressing overvoltages. 展开更多
关键词 FERRORESONANCE OVERVOLTAGE open phase operating condition non-linear inductance.
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