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Location based radio resource allocation (LBRRA) in WiMAX and WiMAX-WLAN interface network

机译:WiMAX和WiMAX-WLAN接口网络中的基于位置的无线电资源分配(LBRRA)

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In this paper, we deal the location based resource allocation (LBRRA) in WiMAX and WiMAX - WLAN interface technology. In first phase we explore how to trounce radio link connections rejected by BS (Base Station). It will help to judge clients with better QoS for different applications in real time analysis for any location based networks. The Scope of this paper is to design a WiMAX Network to support a wide variety of applications. WiMAX defines five scheduling services in which all applications are supported. The performance analysis of a WiMAX network is done on the basis of Resource Allocations. Proposed work given scrutiny about how can justify, how many packets are created in the network, how many packets are copied, how many packets are destroyed on each and every nodes in location based networks. In second phase we propose, WiMAX and WLAN interface technology for Location Based Radio Resource Allocation (LBRRA). Since as quality of technology is increase demand is also increases with human nature. Our proposed work can provide solution for replacement of optical fiber (Fiber to Home) for interne and it will be reduced cost significantly for next generation networks (NGN).The proposed solution has given sketch to replaced Wi-Fi router with WiMAX-WLAN router. The range of WiMAX is 50km in radius so proposed network will satisfy end user within one city effortlessly. It will support high data rates, good Quality of Services (QoS), seamless mobility both within a network and between networks of different technologies and service providers. In last phase analyzed the request band width (BW) and admitted bandwidth (AB) with WLAN and WiMAX interface with Adaptive Modulation and coding (AMC)
机译:在本文中,我们处理WiMAX和WiMAX-WLAN接口技术中的基于位置的资源分配(LBRRA)。在第一阶段,我们探索如何截断被BS(基站)拒绝的无线电链路连接。这将有助于针对任何基于位置的网络进行实时分析,从而为不同应用判断具有更好QoS的客户端。本文的范围是设计一种WiMAX网络,以支持多种应用。 WiMAX定义了五种调度服务,其中支持所有应用程序。 WiMAX网络的性能分析是基于资源分配进行的。对拟议工作进行了仔细的审查,包括如何证明其合理性,在网络中创建了多少个数据包,复制了多少个数据包,在基于位置的网络中的每个节点上销毁了多少个数据包。在第二阶段,我们提出WiMAX和WLAN接口技术,用于基于位置的无线电资源分配(LBRRA)。由于随着技术质量的提高,需求也随着人性的增长而增加。我们的拟议工作可以为互联网替代光纤(Fiber to Home)提供解决方案,并将显着降低下一代网络(NGN)的成本。拟议的解决方案已为用WiMAX-WLAN路由器替代Wi-Fi路由器提供了草图。 。 WiMAX的半径范围为50公里,因此建议的网络将毫不费力地满足一个城市内的最终用户的需求。它将支持网络内以及不同技术和服务提供商的网络之间的高数据速率,良好的服务质量(QoS),无缝移动性。在最后一个阶段中,通过WLAN和WiMAX接口以及自适应调制和编码(AMC)分析了请求带宽(BW)和允许带宽(AB)

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