Voltage profiles of feeders with the connection of distributed generations(DGs) were investigated.A unified typical load distribution model was established.Based on this model,exact expressions of feeder voltage profi...Voltage profiles of feeders with the connection of distributed generations(DGs) were investigated.A unified typical load distribution model was established.Based on this model,exact expressions of feeder voltage profile with single and double DGs were derived and used to analyze the impact of DG's location and capacity on the voltage profile quantitatively.Then,a general formula of the voltage profile was derived.The limitation of single DG and necessity of multiple DGs for voltage regulation were also discussed.Through the simulation,voltage profiles of feeders with single and double DGs were compared.The voltage excursion rate is 7.40% for only one DG,while 2.48% and 2.36% for double DGs.It is shown that the feeder voltage can be retained in a more appropriate range with multiple DGs than with only one DG.Distributing the total capacity of DGs is better than concentrating it at one point.展开更多
With the growing deployment of smart distribution grid,it has become urgent to investigate the smart distribution grid behavior during transient faults and improve the system stability.The feasibility of segmenting la...With the growing deployment of smart distribution grid,it has become urgent to investigate the smart distribution grid behavior during transient faults and improve the system stability.The feasibility of segmenting large power grids and multiple smart distribution grids interconnections using energy storage technology for improving the system dynamic stability was studied.The segmentation validity of the large power grids and smart distribution grid inverter output interconnections power system using energy storage technology was proved in terms of theoretical analysis.Then,the influences of the energy storage device location and capacity on the proposed method were discussed in detail.The conclusion is obtained that the ESD optimal locations are allocated at the tie line terminal buses in the interconnected grid,respectively.The effectiveness of the proposed method was verified by simulations in an actual power system.展开更多
针对现有变压器无法应对高渗透率可再生能源出力强波动性引起的电压骤降/骤升等问题,提出1种基于三桥臂功率变换器的新型混合配电变压器HDT(hybrid distribution transformer)。该方法通过在现有配电变压器的一次侧增加1个串联三桥臂功...针对现有变压器无法应对高渗透率可再生能源出力强波动性引起的电压骤降/骤升等问题,提出1种基于三桥臂功率变换器的新型混合配电变压器HDT(hybrid distribution transformer)。该方法通过在现有配电变压器的一次侧增加1个串联三桥臂功率变换器来实现。所提新型混合配电变压器具有可降低功率变换器额定功率和增加1个额外电流回路以提升变压器自由度的优点。此外,为进一步提升变压器的电能质量,所提方法综合了电压矢量,可补偿电压骤降/骤升和电网电压谐波对变压器的不利影响,提高了电网的功率因数,提升了配电网的输电效率。最后,讨论了所提混合配电变压器的配置和控制策略等,并通过仿真实验分析,验证了所提方法的有效性和优越性。展开更多
基金Projects(60904101,60972164) supported by the National Natural Science Foundation of ChinaProject(N090404009) supported by the Fundamental Research Funds for the Central UniversitiesProject(20090461187) supported by China Postdoctoral Science Foundation
文摘Voltage profiles of feeders with the connection of distributed generations(DGs) were investigated.A unified typical load distribution model was established.Based on this model,exact expressions of feeder voltage profile with single and double DGs were derived and used to analyze the impact of DG's location and capacity on the voltage profile quantitatively.Then,a general formula of the voltage profile was derived.The limitation of single DG and necessity of multiple DGs for voltage regulation were also discussed.Through the simulation,voltage profiles of feeders with single and double DGs were compared.The voltage excursion rate is 7.40% for only one DG,while 2.48% and 2.36% for double DGs.It is shown that the feeder voltage can be retained in a more appropriate range with multiple DGs than with only one DG.Distributing the total capacity of DGs is better than concentrating it at one point.
基金Project(N110404031)supported by the Fundamental Research Funds for the Central Universities,China
文摘With the growing deployment of smart distribution grid,it has become urgent to investigate the smart distribution grid behavior during transient faults and improve the system stability.The feasibility of segmenting large power grids and multiple smart distribution grids interconnections using energy storage technology for improving the system dynamic stability was studied.The segmentation validity of the large power grids and smart distribution grid inverter output interconnections power system using energy storage technology was proved in terms of theoretical analysis.Then,the influences of the energy storage device location and capacity on the proposed method were discussed in detail.The conclusion is obtained that the ESD optimal locations are allocated at the tie line terminal buses in the interconnected grid,respectively.The effectiveness of the proposed method was verified by simulations in an actual power system.
文摘针对现有变压器无法应对高渗透率可再生能源出力强波动性引起的电压骤降/骤升等问题,提出1种基于三桥臂功率变换器的新型混合配电变压器HDT(hybrid distribution transformer)。该方法通过在现有配电变压器的一次侧增加1个串联三桥臂功率变换器来实现。所提新型混合配电变压器具有可降低功率变换器额定功率和增加1个额外电流回路以提升变压器自由度的优点。此外,为进一步提升变压器的电能质量,所提方法综合了电压矢量,可补偿电压骤降/骤升和电网电压谐波对变压器的不利影响,提高了电网的功率因数,提升了配电网的输电效率。最后,讨论了所提混合配电变压器的配置和控制策略等,并通过仿真实验分析,验证了所提方法的有效性和优越性。