论文标题
自适应框架保留方案的开发和幼稚的持续状态共存控制器
Development of Adaptive Frame Reservation Scheme and Naive Persistent State Co-Located Coexistence Controller
论文作者
论文摘要
未来的宽带网络需要以低成本提供高容量,并通过增强服务增加收入。 WiMax成为领先的技术之一,但是,分配的2.3 GHz和2.5 GHz频带与相邻的2.4 GHz ISM频段造成了两个严重的共存问题。第一个问题是解决位于两个独立平台上的无线电接口,并且由于彼此近距离近距离而仍然具有相互干扰的潜力。此处介绍的自适应框架预订方案将802.11规范中定义的CTS框架保留信号传导扩展到基于需求和自适应方案。第二个问题是解决两个或多个无线电共存的多拉迪奥平台中的共存问题,从而造成了更糟糕的干扰情况。这可以通过硬件信号来管理,可以通过OS控件在无线电接口之间提供。探索了智能共处共存控制器的开发,该控制器连续接收来自附件界面和回报授予权限的传输,接收和睡眠请求。
Future broadband networks need to provide high capacity at low cost with increased revenue through enhanced services. WiMAX came up as one of the leading technologies, however, the 2.3 GHz and 2.5 GHz frequency bands allocated create two serious coexistence issues with the adjacent 2.4 GHz ISM band. First problem is to address radio interfaces that are located on two independent platforms and still possess the potential for mutual interference owing to close proximity to each other. The Adaptive Frame Reservation Scheme presented here extends the CTS frame reservation signaling defined in 802.11 specifications to a demand based and adaptive scheme. Second issue is to address the coexistence problem in multi-radio platforms where two or more radios are co-located, creating an even worse interference scenario. This can be managed by hardware signaling that can be made available between radio interfaces through OS control. The development of a smart Co-located Coexistence Controller is explored which continuously receives transmission, reception and sleep requests from attached interfaces and in return grant permissions.