This paper presents an integrated relay and its associated protection scheme for power transmission lines.The concept of integrated protection is firstly introduced,in which a centralized protection system or relay pr...This paper presents an integrated relay and its associated protection scheme for power transmission lines.The concept of integrated protection is firstly introduced,in which a centralized protection system or relay provides the protection for multiple power plants or a substation.A novel integrated protection relay based on the combination of a number of protection principles is described.In the proposed scheme,the specially designed protection relays are installed at each substation of a network and are responsible for the protection of every line section connected to the substation busbar.The combined algorithms with multiple settings are implemented into the relay to cover all the protected line sections.Simulation studies show that the proposed protection scheme is able to produce desirable performance and may offer many advantages over the existing one and great potential for future applications.展开更多
Fault direction identification is important for dc protection,which cannot only be used in directional pilot pro-tection,but also plays an important role in non-unit protection(for excluding backward faults).Direction...Fault direction identification is important for dc protection,which cannot only be used in directional pilot pro-tection,but also plays an important role in non-unit protection(for excluding backward faults).Direction criteria based on i and di/dt have been utilized in LCC-HVDC system extensively.However,the reliability and sensitivity of the protection are significantly influenced by fault transition resistance and line distribution capacitors.In a flexible MTDC grid,boundary char-acteristics of the DC inductor can be utilized to judge the fault direction.But when the DC inductor is only installed at converter outlet,this kind of direction protection cannot work.Therefore,this paper analyzes the frequency characteristic of the fault traveling wave(TW)first.On this basis,the direction protection based on the time-domain TW is proposed,which is immune from frequency-dependence line parameters.Compared with existing direction protection,it has higher operation reliability and sensitivity,and is independent of the line boundary.Finally,the feasibility and superiority of the designed direction protection are verified by simulation cases based on PSCAD/EMTDC.Index Terms-Frequency-dependent characteristic,operation sensitivity,operation reliability,traveling-wave based direction protection.展开更多
基金National Natural Science Foundation of China(No.50077011 and 50377019)National Basic Research Project("973"Project No.2004CB217906).
文摘This paper presents an integrated relay and its associated protection scheme for power transmission lines.The concept of integrated protection is firstly introduced,in which a centralized protection system or relay provides the protection for multiple power plants or a substation.A novel integrated protection relay based on the combination of a number of protection principles is described.In the proposed scheme,the specially designed protection relays are installed at each substation of a network and are responsible for the protection of every line section connected to the substation busbar.The combined algorithms with multiple settings are implemented into the relay to cover all the protected line sections.Simulation studies show that the proposed protection scheme is able to produce desirable performance and may offer many advantages over the existing one and great potential for future applications.
基金supported by the National Natural Science Foundation of China(52207088)the National Science Foundation of China for Distinguished Young Scholars(52025071)the Joint Funds of the National Natural Science Foundation of China(U1866205)。
文摘Fault direction identification is important for dc protection,which cannot only be used in directional pilot pro-tection,but also plays an important role in non-unit protection(for excluding backward faults).Direction criteria based on i and di/dt have been utilized in LCC-HVDC system extensively.However,the reliability and sensitivity of the protection are significantly influenced by fault transition resistance and line distribution capacitors.In a flexible MTDC grid,boundary char-acteristics of the DC inductor can be utilized to judge the fault direction.But when the DC inductor is only installed at converter outlet,this kind of direction protection cannot work.Therefore,this paper analyzes the frequency characteristic of the fault traveling wave(TW)first.On this basis,the direction protection based on the time-domain TW is proposed,which is immune from frequency-dependence line parameters.Compared with existing direction protection,it has higher operation reliability and sensitivity,and is independent of the line boundary.Finally,the feasibility and superiority of the designed direction protection are verified by simulation cases based on PSCAD/EMTDC.Index Terms-Frequency-dependent characteristic,operation sensitivity,operation reliability,traveling-wave based direction protection.