G3标准电力载波通信以正交频分复用(Orthogonal Frequency Division Multiplexing,OFDM)为核心抑制多径效应,结合RS(Reed-solomon)和交织编码等纠正随机错误,提高可靠性。由于信道环境时变性明显,上述措施不能满足高可靠通信需求。针对...G3标准电力载波通信以正交频分复用(Orthogonal Frequency Division Multiplexing,OFDM)为核心抑制多径效应,结合RS(Reed-solomon)和交织编码等纠正随机错误,提高可靠性。由于信道环境时变性明显,上述措施不能满足高可靠通信需求。针对这一问题,首先,提出了分段重复编码算法并应用于G3信号传输模型,通过对有效信息进行分段重复编码,增大信息通过低衰减信道的概率,提高可靠性;其次,设计了混合窗函数有限冲激响应(Finite Impulse Response,FIR)带通数字滤波算法对信号进行滤波处理,在保证相位的前提下,尽可能去除带外噪声干扰,优化OFDM的性能,并提高分段重复编码的作用。经性能测试,所形成的分段重复编码和FIR数字滤波的传输模型在平均误码率为10-2时有2~3 d B的性能提升,适合在强时变性和强噪声的信道中进行高可靠的通信传输。展开更多
With the development of automation in smart grids,network reconfiguration is becoming a feasible approach for improving the operation of distribution systems.A novel reconfiguration strategy was presented to get the o...With the development of automation in smart grids,network reconfiguration is becoming a feasible approach for improving the operation of distribution systems.A novel reconfiguration strategy was presented to get the optimal configuration of improving economy of the system,and then identifying the important nodes.In this strategy,the objectives increase the node importance degree and decrease the active power loss subjected to operational constraints.A compound objective function with weight coefficients is formulated to balance the conflict of the objectives.Then a novel quantum particle swarm optimization based on loop switches hierarchical encoded was employed to address the compound objective reconfiguration problem.Its main contribution is the presentation of the hierarchical encoded scheme which is used to generate the population swarm particles of representing only radial connected solutions.Because the candidate solutions are feasible,the search efficiency would improve dramatically during the optimization process without tedious topology verification.To validate the proposed strategy,simulations are carried out on the test systems.The results are compared with other techniques in order to evaluate the performance of the proposed method.展开更多
文摘G3标准电力载波通信以正交频分复用(Orthogonal Frequency Division Multiplexing,OFDM)为核心抑制多径效应,结合RS(Reed-solomon)和交织编码等纠正随机错误,提高可靠性。由于信道环境时变性明显,上述措施不能满足高可靠通信需求。针对这一问题,首先,提出了分段重复编码算法并应用于G3信号传输模型,通过对有效信息进行分段重复编码,增大信息通过低衰减信道的概率,提高可靠性;其次,设计了混合窗函数有限冲激响应(Finite Impulse Response,FIR)带通数字滤波算法对信号进行滤波处理,在保证相位的前提下,尽可能去除带外噪声干扰,优化OFDM的性能,并提高分段重复编码的作用。经性能测试,所形成的分段重复编码和FIR数字滤波的传输模型在平均误码率为10-2时有2~3 d B的性能提升,适合在强时变性和强噪声的信道中进行高可靠的通信传输。
基金Project(61102039)supported by the National Natural Science Foundation of ChinaProject(2014AA052600)supported by National Hi-tech Research and Development Plan,China
文摘With the development of automation in smart grids,network reconfiguration is becoming a feasible approach for improving the operation of distribution systems.A novel reconfiguration strategy was presented to get the optimal configuration of improving economy of the system,and then identifying the important nodes.In this strategy,the objectives increase the node importance degree and decrease the active power loss subjected to operational constraints.A compound objective function with weight coefficients is formulated to balance the conflict of the objectives.Then a novel quantum particle swarm optimization based on loop switches hierarchical encoded was employed to address the compound objective reconfiguration problem.Its main contribution is the presentation of the hierarchical encoded scheme which is used to generate the population swarm particles of representing only radial connected solutions.Because the candidate solutions are feasible,the search efficiency would improve dramatically during the optimization process without tedious topology verification.To validate the proposed strategy,simulations are carried out on the test systems.The results are compared with other techniques in order to evaluate the performance of the proposed method.