This paper introduces the localized Radon transform (LRT) into time-frequency distributions and presents the localized Radon-Wigner transform (LRWT). The definition of LRWT and a fast algorithm is derived, the propert...This paper introduces the localized Radon transform (LRT) into time-frequency distributions and presents the localized Radon-Wigner transform (LRWT). The definition of LRWT and a fast algorithm is derived, the properties of LRWT and its relationship with Radon-Wigner transform, Wigner distribution (WD), ambiguity function (AF), and generalized-marginal time-frequency distributions are analyzed.展开更多
该文提出一种传输时间间隔(TTI,Transform Time Interval)内与传输时间间隔间联合跳频新方法,以解决EUTRA(Evolved UMTS Terrestrial Radio Access)上行链路多颗粒度用户及混合重传情况下跳频的问题。该方法根据用户的带宽需求与拉丁方...该文提出一种传输时间间隔(TTI,Transform Time Interval)内与传输时间间隔间联合跳频新方法,以解决EUTRA(Evolved UMTS Terrestrial Radio Access)上行链路多颗粒度用户及混合重传情况下跳频的问题。该方法根据用户的带宽需求与拉丁方计算得出跳频序列,控制子载波映射时各用户的子载波分配。这个方法适合任意传输带宽需求,既能保持系统单载波传输特性,又能避免数据包之间发生碰撞。仿真结果证明了其有效性。该方法在EUTRA上行链路中具有很好的应用前景。展开更多
文摘This paper introduces the localized Radon transform (LRT) into time-frequency distributions and presents the localized Radon-Wigner transform (LRWT). The definition of LRWT and a fast algorithm is derived, the properties of LRWT and its relationship with Radon-Wigner transform, Wigner distribution (WD), ambiguity function (AF), and generalized-marginal time-frequency distributions are analyzed.
文摘该文提出一种传输时间间隔(TTI,Transform Time Interval)内与传输时间间隔间联合跳频新方法,以解决EUTRA(Evolved UMTS Terrestrial Radio Access)上行链路多颗粒度用户及混合重传情况下跳频的问题。该方法根据用户的带宽需求与拉丁方计算得出跳频序列,控制子载波映射时各用户的子载波分配。这个方法适合任意传输带宽需求,既能保持系统单载波传输特性,又能避免数据包之间发生碰撞。仿真结果证明了其有效性。该方法在EUTRA上行链路中具有很好的应用前景。