单个器件输出功率不满足系统要求时,功率合成技术是提高系统输出功率的有效方法.本文详细研究了基于薄膜电阻的波导E-T结功率分配/合成器,最终设计了一种新型的基于薄膜电阻的波导E-T结.该结构具有高隔离度、低插入损耗、小体积、宽频...单个器件输出功率不满足系统要求时,功率合成技术是提高系统输出功率的有效方法.本文详细研究了基于薄膜电阻的波导E-T结功率分配/合成器,最终设计了一种新型的基于薄膜电阻的波导E-T结.该结构具有高隔离度、低插入损耗、小体积、宽频带等优点.通过合理设计薄膜电阻的长宽比,尽量增大薄膜电阻的面积,并且采用高导热的氮化铝陶瓷基板作为微带和薄膜电阻的介质基板,提高了基于薄膜电阻的波导E-T结承受的功率.利用三维电磁场仿真软件HFSS对其进行了建模仿真,加工的实物经过测试在25~34 GHz插入损耗小于0.2 d B,回波损耗优于-15 d B,隔离度优于10 d B.经对比,实测结果与仿真结果吻合,具有较好的工程应用价值.展开更多
针对传统功分器的不足,提出了一种改进型波导E-T结功分器。通过三维电磁仿真软件CST对其进行了建模仿真,得到一个合理的设计方案,该结构具有高隔离度、低插入损耗、小体积、宽频带等优点。加工的实物经测试在12~17 GHz的频率范围内,该...针对传统功分器的不足,提出了一种改进型波导E-T结功分器。通过三维电磁仿真软件CST对其进行了建模仿真,得到一个合理的设计方案,该结构具有高隔离度、低插入损耗、小体积、宽频带等优点。加工的实物经测试在12~17 GHz的频率范围内,该功分器的插入损耗〈0.12 d B,回波损耗〉18 d B,隔离度〉15 d B,具有良好的工程应用价值。展开更多
This paper concerns the robust non-fragile guaranteed cost control for nonlinear time delay discrete-time systems based on Takagi-Sugeno (T-S) model. The problem is to design a guaranteed cost state feedback control...This paper concerns the robust non-fragile guaranteed cost control for nonlinear time delay discrete-time systems based on Takagi-Sugeno (T-S) model. The problem is to design a guaranteed cost state feedback controller which can tolerate uncertainties from both models and gain variation. Sufficient conditions for the existence of such controller are given based on the linear matrix inequality (LMI) approach combined with Lyapunov method and inequality technique. A numerical example is given to illustrate the feasibility and effectiveness of our result.展开更多
文摘单个器件输出功率不满足系统要求时,功率合成技术是提高系统输出功率的有效方法.本文详细研究了基于薄膜电阻的波导E-T结功率分配/合成器,最终设计了一种新型的基于薄膜电阻的波导E-T结.该结构具有高隔离度、低插入损耗、小体积、宽频带等优点.通过合理设计薄膜电阻的长宽比,尽量增大薄膜电阻的面积,并且采用高导热的氮化铝陶瓷基板作为微带和薄膜电阻的介质基板,提高了基于薄膜电阻的波导E-T结承受的功率.利用三维电磁场仿真软件HFSS对其进行了建模仿真,加工的实物经过测试在25~34 GHz插入损耗小于0.2 d B,回波损耗优于-15 d B,隔离度优于10 d B.经对比,实测结果与仿真结果吻合,具有较好的工程应用价值.
文摘针对传统功分器的不足,提出了一种改进型波导E-T结功分器。通过三维电磁仿真软件CST对其进行了建模仿真,得到一个合理的设计方案,该结构具有高隔离度、低插入损耗、小体积、宽频带等优点。加工的实物经测试在12~17 GHz的频率范围内,该功分器的插入损耗〈0.12 d B,回波损耗〉18 d B,隔离度〉15 d B,具有良好的工程应用价值。
文摘This paper concerns the robust non-fragile guaranteed cost control for nonlinear time delay discrete-time systems based on Takagi-Sugeno (T-S) model. The problem is to design a guaranteed cost state feedback controller which can tolerate uncertainties from both models and gain variation. Sufficient conditions for the existence of such controller are given based on the linear matrix inequality (LMI) approach combined with Lyapunov method and inequality technique. A numerical example is given to illustrate the feasibility and effectiveness of our result.