This paper introduces the TrFO feature of the packet voice core network based on IP architecture, and discusses the specific implementation scheme of the TrFO feature in the cdma2000 1x mobile communication based on IP architecture in combination with the self-developed cdma2000 1x system. It discusses in detail the flexible configuration strategies of various vocoders, and simulates and compares various strategies. The simulation results are of great significance for actual engineering implementation. In the traditional mobile communication system based on circuit switching, the switching of the system is concentrated in the mobile switching center (MSC) in the form of circuit switching. Therefore, the vocoder function is generally placed at the base station controller (BSC), so that after the air voice packet lands, it is first decoded and converted into circuit mode, and then exchanged. This method will not only cause the \"traffic backhaul\" phenomenon of two voice terminals controlled by the same base station, but also require the voice calls of the same terminal to add decoding and encoding processes, affecting the voice quality. In the early stage of the development of mobile communication systems, the voice calls in the system were mainly concentrated between mobile users and fixed users, and the above impact was not obvious. Traffic statistics show that calls between mobile users have now dominated. The original vocoder configuration method not only increases equipment costs, but also affects system performance. Therefore, improving the network structure and strategy of vocoder configuration management has become a hot topic of research. In the GSM network and 3GPP R99 version of the standard, in order to improve the vocoder operation performance, the so-called TFO (Tandem Free Operation) feature is proposed, which can achieve voice transparent transmission through TFO to reduce the voice quality damage caused by voice encoding and decoding. With the development of all-IP mobile communication technology, supporting traditional voice services and packet data services in a lower cost, more flexible and effective way is the main driving force for the development of all-IP mobile communication technology. When supporting traditional voice services, all-IP mobile communication networks face a problem of how to support the use of multiple vocoders at a lower cost, that is, the so-called TrFO (Transcoder Free Operation) feature support problem.
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