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Cable modem architectures adapted to the noise problem in the upstream direction for multiple-access hybrid fiber coax networks

机译:电缆调制解调器架构适用于多址混合光纤同轴电缆网络上游方向的噪声问题

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As interactive services require more bandwidth, high speed access networks must follow this trend. Although a Hybrid Fiber Coax (HFC) system provides a large bandwidth, many problems occur due to the accumulation of the ingress and impulse noise. In this paper the properties of the ingress and impulse noise will be explained based on a measurement campaign on different networks. The most striking result of the measurement campaign is the large dynamic and time- dependent behavior of the ingress noise. This dynamic behavior is an important factor in designing an upstream communication system. We show that for this reason optimized receivers will contain adaptive equalizers. This is illustrated by the performance analysis of a TDMA and an OFDM-CDMA system. Both systems are compared under the same environment. The results of this comparison shows how both can obtain the same performance. Considering the implications of both the TDMA and the CDMA system when using an equalizer in the head-end receiver, requirements for a total HFC network architecture are given. Especially synchronization and initialization issues must be addressed.
机译:由于交互式服务需要更多的带宽,高速接入网络必须遵循此趋势。虽然混合纤维同轴电缆(HFC)系统提供了大带宽,但由于进入和脉冲噪声的累积,许多问题发生了许多问题。在本文中,将基于不同网络上的测量运动来解释入口和脉冲噪声的性质。测量活动最醒目的结果是入口噪声的大动态和依赖行为。这种动态行为是设计上游通信系统的重要因素。我们表明,由于此原因,优化的接收器将包含自适应均衡器。这是通过TDMA和OFDM-CDMA系统的性能分析来说明。两个系统都在相同的环境下进行比较。此比较的结果显示了如何获得相同的性能。考虑到TDMA和CDMA系统在头端接收器中使用均衡器时的含义,给出了总HFC网络架构的要求。特别是必须解决同步和初始化问题。

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