Unmanned aerial vehicles(UAVs)may be subjected to unintentional radio frequency interference(RFI)or hostile jamming attack which will lead to fail to track global navigation satellite system(GNSS)signals.Therefore,the...Unmanned aerial vehicles(UAVs)may be subjected to unintentional radio frequency interference(RFI)or hostile jamming attack which will lead to fail to track global navigation satellite system(GNSS)signals.Therefore,the simultaneous realization of anti-jamming and high-precision carrier phase difference positioning becomes a dilemmatic problem.In this paper,a distortionless phase digital beamforming(DBF)algorithm with self-calibration antenna arrays is proposed,which enables to obtain distortionless carrier phase while suppressing jamming.Additionally,architecture of high precision Beidou receiver based on anti-jamming antenna arrays is proposed.Finally,the performance of the algorithm is evaluated,including antenna calibration accuracy,carrier phase distortionless accuracy,and carrier phase measurement accuracy without jamming.Meanwhile,the maximal jamming to signal ratio(JSR)and real time kinematic(RTK)positioning accuracy under wideband jamming are also investigated.The experimental results based on the real-life Beidou signals show that the proposed method has an excellent performance for precise relative positioning under jamming when compared with other anti-jamming methods.展开更多
针对光伏发电系统功率输出随机性强、波动性大等问题,本文提出了一种光伏-超级电容-蓄电池-电解槽混合发电系统功率协调控制策略。分析并建立了光伏、超级电容、蓄电池及电解槽的数学模型,构建了一种将系统各单元通过变换器汇集于直流...针对光伏发电系统功率输出随机性强、波动性大等问题,本文提出了一种光伏-超级电容-蓄电池-电解槽混合发电系统功率协调控制策略。分析并建立了光伏、超级电容、蓄电池及电解槽的数学模型,构建了一种将系统各单元通过变换器汇集于直流母线的混合系统结构。该控制策略将超级电容和蓄电池两者的荷电状态SOC(State of Charge)均考虑在内,通过对不同工况下系统各单元出力的协调控制,在实现直流微电网有功功率平衡的前提下,达到维持直流母线电压稳定和平抑系统并网功率的目的,提高了光伏利用率。利用PSCAD/EMTDC软件进行建模与仿真分析,验证了本文所提控制策略的有效性。展开更多
基金supported by the Key Research and Development Program of Science&Technology Department of Sichuan Province(2021YFG0155)the Technical Innovation Fund of Southwest China Institute of Electronic Technology(H21004.2).
文摘Unmanned aerial vehicles(UAVs)may be subjected to unintentional radio frequency interference(RFI)or hostile jamming attack which will lead to fail to track global navigation satellite system(GNSS)signals.Therefore,the simultaneous realization of anti-jamming and high-precision carrier phase difference positioning becomes a dilemmatic problem.In this paper,a distortionless phase digital beamforming(DBF)algorithm with self-calibration antenna arrays is proposed,which enables to obtain distortionless carrier phase while suppressing jamming.Additionally,architecture of high precision Beidou receiver based on anti-jamming antenna arrays is proposed.Finally,the performance of the algorithm is evaluated,including antenna calibration accuracy,carrier phase distortionless accuracy,and carrier phase measurement accuracy without jamming.Meanwhile,the maximal jamming to signal ratio(JSR)and real time kinematic(RTK)positioning accuracy under wideband jamming are also investigated.The experimental results based on the real-life Beidou signals show that the proposed method has an excellent performance for precise relative positioning under jamming when compared with other anti-jamming methods.
文摘针对光伏发电系统功率输出随机性强、波动性大等问题,本文提出了一种光伏-超级电容-蓄电池-电解槽混合发电系统功率协调控制策略。分析并建立了光伏、超级电容、蓄电池及电解槽的数学模型,构建了一种将系统各单元通过变换器汇集于直流母线的混合系统结构。该控制策略将超级电容和蓄电池两者的荷电状态SOC(State of Charge)均考虑在内,通过对不同工况下系统各单元出力的协调控制,在实现直流微电网有功功率平衡的前提下,达到维持直流母线电压稳定和平抑系统并网功率的目的,提高了光伏利用率。利用PSCAD/EMTDC软件进行建模与仿真分析,验证了本文所提控制策略的有效性。