This paper generalizes the previous mobile communication systems from the first generation to the thirdgeneration, and presents the requirements of the future fourth generation mobile communication system (4G). Thenth...This paper generalizes the previous mobile communication systems from the first generation to the thirdgeneration, and presents the requirements of the future fourth generation mobile communication system (4G). Thenthe Internet-based 4G system is presented, which breaks through the close structure of the traditional ones. Finally,the key technologies of the Internet-based 4G system are discussed.展开更多
该文设计了一款可用于第四代(4G)移动通信的宽带偶极子天线。利用寄生微带线的阻抗加载,实现不平衡-平衡转换的巴伦;设计天线臂与巴伦之间的传输线,使其在阻抗匹配的同时能延展天线臂中辐射电流径程,产生新的谐振点,实现带宽扩展。2-3...该文设计了一款可用于第四代(4G)移动通信的宽带偶极子天线。利用寄生微带线的阻抗加载,实现不平衡-平衡转换的巴伦;设计天线臂与巴伦之间的传输线,使其在阻抗匹配的同时能延展天线臂中辐射电流径程,产生新的谐振点,实现带宽扩展。2-3 GHz频带内仿真和实测回波损耗(S11)吻合较好,小于-10 d B频带覆盖4G的6个业务频段,频带内仿真和实测方向图也显著体现了偶极子天线良好的辐射特性。展开更多
文摘This paper generalizes the previous mobile communication systems from the first generation to the thirdgeneration, and presents the requirements of the future fourth generation mobile communication system (4G). Thenthe Internet-based 4G system is presented, which breaks through the close structure of the traditional ones. Finally,the key technologies of the Internet-based 4G system are discussed.
文摘该文设计了一款可用于第四代(4G)移动通信的宽带偶极子天线。利用寄生微带线的阻抗加载,实现不平衡-平衡转换的巴伦;设计天线臂与巴伦之间的传输线,使其在阻抗匹配的同时能延展天线臂中辐射电流径程,产生新的谐振点,实现带宽扩展。2-3 GHz频带内仿真和实测回波损耗(S11)吻合较好,小于-10 d B频带覆盖4G的6个业务频段,频带内仿真和实测方向图也显著体现了偶极子天线良好的辐射特性。