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Implementing interference cancellation to increase the EV-DO Rev A reverse link capacity

机译:实施干扰消除以增加EV-DO Rev A反向链路容量

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This article provides the principles and practice of how interference cancellation can be implemented on the EV-DO Rev A reverse link. It is shown that applying interference cancellation to CDMA achieves the multiple access channel sum rate capacity for either frame synchronous or asynchronous users. The per user SINR gain from space-time interference cancellation translates directly into a CDMA capacity gain of the same factor, allowing EV-DO Rev A to support more users with higher data rates. We demonstrate how interference cancellation can be added to base station processing without modifying user terminals, EV-DO standards, or network coverage. We present commercially viable receiver architectures for implementing interference cancellation with the asynchronism and H-ARQ of EV-DO RevA, and explain why closed loop power control can operate the same way it does today. Network level simulations over a wide range of channels confirm that interference cancellation offers significant capacity gains for all users, while maintaining the same link budget and system stability.
机译:本文提供了如何在EV-DO Rev A反向链路上实现干扰消除的原理和实践。结果表明,将干扰消除应用于CDMA可以实现帧同步或异步用户的多路访问信道总速率速率容量。时空干扰消除带来的每用户SINR增益直接转换为相同因子的CDMA容量增益,从而使EV-DO Rev A能够以更高的数据速率支持更多的用户。我们演示了如何在不修改用户终端,EV-DO标准或网络覆盖范围的情况下将干扰消除添加到基站处理中。我们介绍了商业上可行的接收器体系结构,用于通过EV-DO RevA的异步性和H-ARQ实现干扰消除,并解释了为什么闭环功率控制可以像今天一样运行。在广泛的信道上进行的网络级仿真证实,干扰消除可为所有用户带来显着的容量增益,同时保持相同的链路预算和系统稳定性。

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