Complex third-order cumulant has different definition forms. Different forms have different coupling properties, and the generated complex cumulants slices contain different coupling information of signals. In experim...Complex third-order cumulant has different definition forms. Different forms have different coupling properties, and the generated complex cumulants slices contain different coupling information of signals. In experiments, using the different definitions, the same coupling method is applied to both specific fault signals and normal signals. Furthermore, complex third-order cumulant slices spectrum is defined, and it is used to analyse the coupling features of normal signals and fault signals. Experiments indicate that the detection accuracy rate on the same fault is not the same with the different coupling method, thus, it provides an alternative method to diagnose the specific fault.展开更多
针对电力企业数据业务流量爆炸性增长所引发的骨干网络带宽资源瓶颈问题,在对国家电网公司光传输网(optical transport network,OTN)大容量骨干传输网络承载业务需求分析基础上,从频谱管理方法、交叉连接设备、混合线速传输、控制平面...针对电力企业数据业务流量爆炸性增长所引发的骨干网络带宽资源瓶颈问题,在对国家电网公司光传输网(optical transport network,OTN)大容量骨干传输网络承载业务需求分析基础上,从频谱管理方法、交叉连接设备、混合线速传输、控制平面等方面出发,探索FlexGrid技术在电力通信网络中的应用模式,可为电力通信骨干网络提供光层粒度的精细划分与动态调整能力。在此基础上,提出在多种约束条件下根据频谱资源利用度动态调节调制的信道资源管理方法,可有效改善现有骨干传输网络采用的固定带宽分配和管理模式造成网络灵活性差,带宽资源利用效率低下的现状。展开更多
文摘Complex third-order cumulant has different definition forms. Different forms have different coupling properties, and the generated complex cumulants slices contain different coupling information of signals. In experiments, using the different definitions, the same coupling method is applied to both specific fault signals and normal signals. Furthermore, complex third-order cumulant slices spectrum is defined, and it is used to analyse the coupling features of normal signals and fault signals. Experiments indicate that the detection accuracy rate on the same fault is not the same with the different coupling method, thus, it provides an alternative method to diagnose the specific fault.
文摘针对电力企业数据业务流量爆炸性增长所引发的骨干网络带宽资源瓶颈问题,在对国家电网公司光传输网(optical transport network,OTN)大容量骨干传输网络承载业务需求分析基础上,从频谱管理方法、交叉连接设备、混合线速传输、控制平面等方面出发,探索FlexGrid技术在电力通信网络中的应用模式,可为电力通信骨干网络提供光层粒度的精细划分与动态调整能力。在此基础上,提出在多种约束条件下根据频谱资源利用度动态调节调制的信道资源管理方法,可有效改善现有骨干传输网络采用的固定带宽分配和管理模式造成网络灵活性差,带宽资源利用效率低下的现状。