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Research and Application of Key Technologies for EHV Intelligent Series Compensation Control and Protection System

机译:EHV智能系列补偿控制和保护系统关键技术的研究与应用

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The key Because NOKIAN type series compensation control and protection system fails to ensure a stable power grid, intelligent reconstruction of the original system by using domestic equipment was reconstructed in order to abide by the principles of safety, reliability and advance. A current system with high anti-interference performance, high sampling rate and closed-loop control energy supply was studied. An IEC61850-based intelligent spark gap trigger system was developed which was time delayed and reduced as a whole. A double DSP board was applied in series compensation protection for the first time; the sampling data for starting and protecting the DSP board were collected from ADC sampling circuits respectively which are different from ECT; and the operation of series compensation protection is highly reliable. Accurate calculation of capacitor voltage was performed in case of line failure by using capacitor voltage algorithm based on dynamic capacitor current break variable integration to ensure the reliability of spark gas operation. A new type of intelligent test device was provided to handle the logic calibration of optical circuits and smart devices. The reconstructed intelligent series compensation control and protection system operated reliably in an extra-high voltage manual grounding short-circuit test and survived outside and inside failures in actual operation; and the series compensation operation was sensitive and correct in logic. The study results have been widely applied in the power grids in Beijing, Tianjin and Hebei, which increases the amount of transmitted energy and provides technical support for ensuring safe and reliable operation of power grids.
机译:关键是诺基亚型系列补偿控制和保护系统未能确保稳定的电网,通过使用国内设备重建原始系统的智能重建,以遵守安全性,可靠性和预付款的原则。研究了具有高抗干扰性能,高采样速率和闭环控制能量供应的电流系统。基于IEC61850的智能火花隙触发系统是开发的,这是延迟和整体减少的时间。双DSP板首次以串联补偿保护应用;从ADC采样电路中收集用于启动和保护DSP板的采样数据,其与ECT不同;串联补偿保护的操作非常可靠。通过使用基于动态电容器电流破裂可变集成的电容器电压算法的电容器电压算法进行线路故障,进行精确计算电容器电压,以确保火花气操作的可靠性。提供了一种新型的智能测试设备,以处理光电路和智能设备的逻辑校准。重建的智能系列补偿控制和保护系统可在高度高压手动接地短路测试中可靠地操作,并在实际操作中存活外部和内部故障;逻辑中系列补偿操作敏感和正确。研究结果已广泛应用于北京,天津和河北的电网,这增加了传输能量的量,并为确保电网安全可靠运行提供技术支持。

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