首页> 外国专利> Optimum hysteresis based on two different parameters for the transmission power control and for the to anticipate the switching command of the phy mode in adaptive phy mode systems

Optimum hysteresis based on two different parameters for the transmission power control and for the to anticipate the switching command of the phy mode in adaptive phy mode systems

机译:基于两个不同参数的最佳磁滞,用于传输功率控制以及用于预测自适应phy模式系统中phy模式的切换命令

摘要

In radio transmission systems with point-to-point and point-to-multipoint topology a master station and one or several terminal stations are defined as well as a downstream channel from the master station to the terminal stations and an upstream channel from the terminal stations to the master station. In such systems, in order to send traffic to several terminal stations, the downstream channel is used by the master station in time division multiplexing.;In some cases, the modulation type and the forward error correction, jointly called phy mode, depend on the addressed terminal. These systems are called adaptive phy mode systems.;The present invention relates to adaptive phy mode systems, and it defines a power control technique for the terminal stations that also commands the phy mode switching and optimizes the system in terms of coverage, capacity and interference. In particular the terminal stations transmit with the several phy modes so that the signals are received at the master station making a performance related parameter equal. Then a hysteresis based on two different parameters (received power and available unused transmit power) is defined which regulates the phy mode switching.
机译:在具有点对点和点对多点拓扑的无线电传输系统中,定义了一个主站和一个或几个终端站,以及从主站到终端站的下行信道和从终端站的上游信道到主站。在这样的系统中,为了将业务发送到多个终端站,下行信道由主站用于时分多路复用。在某些情况下,调制类型和前向纠错(统称为phy模式)取决于寻址终端。这些系统称为自适应phy模式系统。本发明涉及自适应phy模式系统,它定义了用于终端站的功率控制技术,该技术还命令phy模式切换并在覆盖范围,容量和干扰方面对系统进行了优化。 。特别地,终端站以几种物理模式进行发送,使得在主站处接收信号,从而使性能相关参数相等。然后定义基于两个不同参数(接收功率和可用未使用的发射功率)的磁滞,以调节phy模式切换。

著录项

  • 公开/公告号DE60117750T2

    专利类型

  • 公开/公告日2007-02-15

    原文格式PDF

  • 申请/专利权人

    申请/专利号DE2001617750T

  • 发明设计人

    申请日2001-12-05

  • 分类号H04B7/005;H04L1/00;

  • 国家 DE

  • 入库时间 2022-08-21 20:28:26

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