目前,直流微电网在全球范围内快速发展,开展充分的稳定性分析工作是其稳定运行的前提。伴随着大量电力电子装置的接入,相较于传统电网,直流微电网系统等效惯性不足,在经历电网故障、电压暂降或恒功率负载接入接出等大扰动场景后,其状态...目前,直流微电网在全球范围内快速发展,开展充分的稳定性分析工作是其稳定运行的前提。伴随着大量电力电子装置的接入,相较于传统电网,直流微电网系统等效惯性不足,在经历电网故障、电压暂降或恒功率负载接入接出等大扰动场景后,其状态变量易发生大范围变化,暂态稳定性问题突出。Lyapunov方法是分析暂态稳定性问题的常用方法,但在直流微电网领域中缺少指导构建Lyapunov函数的通用策略,很难直接进行应用。此外,为了提高稳定性,亟待开展以提升暂态稳定性为导向的控制参数优化设计研究。针对以上问题,针对直流微电网系统,考虑DC-DC变换器控制环路,基于平方和(sum of squares,SOS)规划方法开展暂态稳定域估计与参数优化研究,首先,通过设计SOS优化问题,改进传统拓展内部算法求解并获得最大化Lyapunov函数水平集实现对系统稳定域的估计,通过与系统实际稳定域进行对比,验证了所提方法的准确性,与其他现有方法估计的稳定域相比,所提方法保守性大幅降低。随后,基于SOS规划,以拓展稳定域为目标,对电压控制环路参数进行优化。最后,硬件在环仿真实验结果表明,采用优化控制参数后,直流微电网系统稳定域得到扩展,抗扰动能力有效提升,暂态稳定性进一步增强。展开更多
Distribution transformers operating in modern system grids or in industrial networks are subjected to many switching transients,which may occur due to routine operations,network reconfigurations or as reaction on prot...Distribution transformers operating in modern system grids or in industrial networks are subjected to many switching transients,which may occur due to routine operations,network reconfigurations or as reaction on protection signals.Depending on the network configuration and parameters,such events may lead to external overvoltages and result in additional stresses on the insulation system.This paper presents the influence of a series choke on damping of switching transients in distribution transformers.The impact of the choke is assessed by both amplitude and rise time reduction.The suppression of the transient rise time is shown for a test configuration involving distribution transformers connected to low loss cable lines and a medium voltage breaker.Such phenomena are especially typical for industrial networks where switching operations are very frequent.Both simulation and experiment results are given.Simulation results as well as measurement results confirmed that switching events can lead to high dU/dt and in consequence,can have adverse impacts on insulation system.Voltage escalation during switching event is strongly related with system conditions.The results obtained for presented mitigation method are promising and indicate significant dU/dt reduction as well as number of ignitions and voltage peak value.The protection of distribution transformers with a series choke is a new approach dedicated to environments prone to the occurrence of transients with high steepness.Experimental results show that the application of serial choke with suitable parameters realizes the reduction of dU/dt at the machines terminal from 24 kV/μs to 5 kV/μs,as well as the reduction of voltage peak value from 10 kV to 5 kV.The number of ignitions is also reduced.展开更多
文摘目前,直流微电网在全球范围内快速发展,开展充分的稳定性分析工作是其稳定运行的前提。伴随着大量电力电子装置的接入,相较于传统电网,直流微电网系统等效惯性不足,在经历电网故障、电压暂降或恒功率负载接入接出等大扰动场景后,其状态变量易发生大范围变化,暂态稳定性问题突出。Lyapunov方法是分析暂态稳定性问题的常用方法,但在直流微电网领域中缺少指导构建Lyapunov函数的通用策略,很难直接进行应用。此外,为了提高稳定性,亟待开展以提升暂态稳定性为导向的控制参数优化设计研究。针对以上问题,针对直流微电网系统,考虑DC-DC变换器控制环路,基于平方和(sum of squares,SOS)规划方法开展暂态稳定域估计与参数优化研究,首先,通过设计SOS优化问题,改进传统拓展内部算法求解并获得最大化Lyapunov函数水平集实现对系统稳定域的估计,通过与系统实际稳定域进行对比,验证了所提方法的准确性,与其他现有方法估计的稳定域相比,所提方法保守性大幅降低。随后,基于SOS规划,以拓展稳定域为目标,对电压控制环路参数进行优化。最后,硬件在环仿真实验结果表明,采用优化控制参数后,直流微电网系统稳定域得到扩展,抗扰动能力有效提升,暂态稳定性进一步增强。
文摘Distribution transformers operating in modern system grids or in industrial networks are subjected to many switching transients,which may occur due to routine operations,network reconfigurations or as reaction on protection signals.Depending on the network configuration and parameters,such events may lead to external overvoltages and result in additional stresses on the insulation system.This paper presents the influence of a series choke on damping of switching transients in distribution transformers.The impact of the choke is assessed by both amplitude and rise time reduction.The suppression of the transient rise time is shown for a test configuration involving distribution transformers connected to low loss cable lines and a medium voltage breaker.Such phenomena are especially typical for industrial networks where switching operations are very frequent.Both simulation and experiment results are given.Simulation results as well as measurement results confirmed that switching events can lead to high dU/dt and in consequence,can have adverse impacts on insulation system.Voltage escalation during switching event is strongly related with system conditions.The results obtained for presented mitigation method are promising and indicate significant dU/dt reduction as well as number of ignitions and voltage peak value.The protection of distribution transformers with a series choke is a new approach dedicated to environments prone to the occurrence of transients with high steepness.Experimental results show that the application of serial choke with suitable parameters realizes the reduction of dU/dt at the machines terminal from 24 kV/μs to 5 kV/μs,as well as the reduction of voltage peak value from 10 kV to 5 kV.The number of ignitions is also reduced.