广域测量系统实测信息及故障集仿真结果构成了电网时空大数据,如何采用大数据技术对它们进行快速、高效地挖掘,实现大电网在线安全评估与防御是智能电网核心目标之一。从电网广域时空量测信息角度,解释了电网时空大数据的内涵,提出大电...广域测量系统实测信息及故障集仿真结果构成了电网时空大数据,如何采用大数据技术对它们进行快速、高效地挖掘,实现大电网在线安全评估与防御是智能电网核心目标之一。从电网广域时空量测信息角度,解释了电网时空大数据的内涵,提出大电网在线稳定态势评估与自适应防御体系(stability situation assessment and adaptive defense control system,ST-SADC)的整体架构及关键技术。ST-SADC以大数据分析与处理为底层技术支撑,基于广域时空量测信息实现大电网稳定态势量化评估及主导环节的反映射虚拟建模,进而实现轨迹型自适应防御控制。针对当前技术现状,讨论了ST-SADC循环递进式研究路线。该体系可进一步提高广域时空量测信息的挖掘深度和广度,最终提升大电网轨迹型智能化预警和防控能力。展开更多
To reach a higher level of autonomy for unmanned combat aerial vehicle(UCAV) in air combat games, this paper builds an autonomous maneuver decision system. In this system,the air combat game is regarded as a Markov pr...To reach a higher level of autonomy for unmanned combat aerial vehicle(UCAV) in air combat games, this paper builds an autonomous maneuver decision system. In this system,the air combat game is regarded as a Markov process, so that the air combat situation can be effectively calculated via Bayesian inference theory. According to the situation assessment result,adaptively adjusts the weights of maneuver decision factors, which makes the objective function more reasonable and ensures the superiority situation for UCAV. As the air combat game is characterized by highly dynamic and a significant amount of uncertainty,to enhance the robustness and effectiveness of maneuver decision results, fuzzy logic is used to build the functions of four maneuver decision factors. Accuracy prediction of opponent aircraft is also essential to ensure making a good decision; therefore, a prediction model of opponent aircraft is designed based on the elementary maneuver method. Finally, the moving horizon optimization strategy is used to effectively model the whole air combat maneuver decision process. Various simulations are performed on typical scenario test and close-in dogfight, the results sufficiently demonstrate the superiority of the designed maneuver decision method.展开更多
文摘广域测量系统实测信息及故障集仿真结果构成了电网时空大数据,如何采用大数据技术对它们进行快速、高效地挖掘,实现大电网在线安全评估与防御是智能电网核心目标之一。从电网广域时空量测信息角度,解释了电网时空大数据的内涵,提出大电网在线稳定态势评估与自适应防御体系(stability situation assessment and adaptive defense control system,ST-SADC)的整体架构及关键技术。ST-SADC以大数据分析与处理为底层技术支撑,基于广域时空量测信息实现大电网稳定态势量化评估及主导环节的反映射虚拟建模,进而实现轨迹型自适应防御控制。针对当前技术现状,讨论了ST-SADC循环递进式研究路线。该体系可进一步提高广域时空量测信息的挖掘深度和广度,最终提升大电网轨迹型智能化预警和防控能力。
基金supported by the National Natural Science Foundation of China(61601505)the Aeronautical Science Foundation of China(20155196022)the Shaanxi Natural Science Foundation of China(2016JQ6050)
文摘To reach a higher level of autonomy for unmanned combat aerial vehicle(UCAV) in air combat games, this paper builds an autonomous maneuver decision system. In this system,the air combat game is regarded as a Markov process, so that the air combat situation can be effectively calculated via Bayesian inference theory. According to the situation assessment result,adaptively adjusts the weights of maneuver decision factors, which makes the objective function more reasonable and ensures the superiority situation for UCAV. As the air combat game is characterized by highly dynamic and a significant amount of uncertainty,to enhance the robustness and effectiveness of maneuver decision results, fuzzy logic is used to build the functions of four maneuver decision factors. Accuracy prediction of opponent aircraft is also essential to ensure making a good decision; therefore, a prediction model of opponent aircraft is designed based on the elementary maneuver method. Finally, the moving horizon optimization strategy is used to effectively model the whole air combat maneuver decision process. Various simulations are performed on typical scenario test and close-in dogfight, the results sufficiently demonstrate the superiority of the designed maneuver decision method.