首页> 外文期刊>International Journal of Satellite Communications and Networking >Channel adaptive output back-off setting of non-linear power amplifiers for high throughput multi-spot beam satellite systems
【24h】

Channel adaptive output back-off setting of non-linear power amplifiers for high throughput multi-spot beam satellite systems

机译:高通量多点波束卫星系统的非线性功率放大器的信道自适应输出退避设置

获取原文
获取原文并翻译 | 示例
           

摘要

In order to increase the satellite capacity for high throughput systems, the feeder link frequencies are gradually moved to higher bands, such as the Q/V-bands, where more bandwidth is available. Therefore, more spectrum shall be available for the user links at lower frequencies, such as in Ka-band. However, the rain attenuation on the feeder links becomes a limiting issue because of the higher frequencies. It is thus important to find link adaptation, or in other words channel adaptive techniques that can overcome this issue, such as smart gateway diversity or adaptive coding and modulation. This paper, however, introduces and describes a novel patented technique: channel adaptive output back-off (OBO) setting. This technique can be applied on any terrestrial or satellite link, in which a non-linear power amplifier is operated in multicarrier mode and the transmission channel experiences time varying attenuation. As a consequence, this technique can be applied, for example, both on the feeder uplink and on the feeder downlink of multi-spot beam satellite networks. However, due to several reasons, the present paper analyzes its performance only on the feeder downlink. According to the performed analysis, channel adaptive OBO setting can provide around 4.5 dB signal-to-noise and interference ratio improvement in case of deep rain fading compared with the conventional fixed OBO operation. This improvement reduces the outage by around 17% on the end-to-end return link. As a consequence, the feeder downlink and the total return link become much more robust against deep rain fading.
机译:为了增加高吞吐量系统的卫星容量,馈线链路频率逐渐移至更高的频段,例如Q / V频段,那里有更多带宽可用。因此,更多的频谱应可用于较低频率的用户链路,例如Ka频段。但是,由于频率较高,馈线链路上的雨水衰减成为一个限制问题。因此重要的是找到链路自适应,换句话说,可以克服此问题的信道自适应技术,例如智能网关分集或自适应编码和调制。但是,本文介绍并介绍了一种新颖的专利技术:通道自适应输出退避(OBO)设置。该技术可以应用于任何地面或卫星链路,其中非线性功率放大器以多载波模式运行,并且传输通道会经历时变衰减。结果,例如,该技术可以应用于多点波束卫星网络的馈线上行链路和馈线下行链路。但是,由于多种原因,本文仅在馈线下行链路上分析其性能。根据执行的分析,与传统的固定OBO操作相比,在深雨衰落的情况下,信道自适应OBO设置可以提供约4.5 dB的信噪比和干扰比改善。这项改进使端到端返回链路的中断减少了约17%。结果,馈线的下行链路和总返回链路变得更加坚固,可以抵抗深雨衰落。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号