This paper proposes a steady-state errors correction(SSEC)method for eliminating measurement errors.This method is based on the detections of error signal E(s)and output C(s)which generate an expected output R(s).In c...This paper proposes a steady-state errors correction(SSEC)method for eliminating measurement errors.This method is based on the detections of error signal E(s)and output C(s)which generate an expected output R(s).In comparison with the conventional solutions which are based on detecting the expected output R(s)and output C(s)to obtain error signal E(s),the measurement errors are eliminated even the error might be at a significant level.Moreover,it is possible that the individual debugging by regulating the coefficient K for every member of the multiple objectives achieves the optimization of the open loop gain.Therefore,this simple method can be applied to the weak coupling and multiple objectives system,which is usually controlled by complex controller.The principle of eliminating measurement errors is derived analytically,and the advantages comparing with the conventional solutions are depicted.Based on the SSEC method analysis,an application of this method for an active power filter(APF)is investigated and the effectiveness and viability of the scheme are demonstrated through the simulation and experimental verifications.展开更多
给出注入功率空间中满足输电线路热稳定性约束的电力系统安全域的快速计算方法。该热稳定安全域综合考虑了输电线路电流的有功和无功分量。通过有功静态安全域的数学表达式来描述输电线路有功电流与节点有功注入功率之间的数学关系;对...给出注入功率空间中满足输电线路热稳定性约束的电力系统安全域的快速计算方法。该热稳定安全域综合考虑了输电线路电流的有功和无功分量。通过有功静态安全域的数学表达式来描述输电线路有功电流与节点有功注入功率之间的数学关系;对于输电线路的无功电流与节点无功注入功率之间的数学关系,则由"修正的关联矩阵"和基本回路矩阵描述。计算所需的全部状态变量均采用广域测量系统(wide area measurement system,WAMS)实测获得。以新英格兰39节点系统为例对该方法所确定的热稳定安全域进行校验,结果表明:由该方法所确定的热稳定安全域边界相比基于直流潮流模型的结果更精确;其计算量较采用交流潮流模型的逐点法更低。展开更多
基金National Natural Science Foundation of China(No.61273172)
文摘This paper proposes a steady-state errors correction(SSEC)method for eliminating measurement errors.This method is based on the detections of error signal E(s)and output C(s)which generate an expected output R(s).In comparison with the conventional solutions which are based on detecting the expected output R(s)and output C(s)to obtain error signal E(s),the measurement errors are eliminated even the error might be at a significant level.Moreover,it is possible that the individual debugging by regulating the coefficient K for every member of the multiple objectives achieves the optimization of the open loop gain.Therefore,this simple method can be applied to the weak coupling and multiple objectives system,which is usually controlled by complex controller.The principle of eliminating measurement errors is derived analytically,and the advantages comparing with the conventional solutions are depicted.Based on the SSEC method analysis,an application of this method for an active power filter(APF)is investigated and the effectiveness and viability of the scheme are demonstrated through the simulation and experimental verifications.
文摘给出注入功率空间中满足输电线路热稳定性约束的电力系统安全域的快速计算方法。该热稳定安全域综合考虑了输电线路电流的有功和无功分量。通过有功静态安全域的数学表达式来描述输电线路有功电流与节点有功注入功率之间的数学关系;对于输电线路的无功电流与节点无功注入功率之间的数学关系,则由"修正的关联矩阵"和基本回路矩阵描述。计算所需的全部状态变量均采用广域测量系统(wide area measurement system,WAMS)实测获得。以新英格兰39节点系统为例对该方法所确定的热稳定安全域进行校验,结果表明:由该方法所确定的热稳定安全域边界相比基于直流潮流模型的结果更精确;其计算量较采用交流潮流模型的逐点法更低。