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Voice over ATM using AAL2 and bit dropping: performance and call admission control

机译:使用AAL2和位丢弃的ATM语音:性能和呼叫允许控制

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Asynchronous transfer mode (ATM) adaptation layer 2 (AAL2) has been designed for efficient transport of voice, fax, and voiceband data (VBD) traffic over an ATM virtual circuit. The protocol helps achieve low latency and high bandwidth efficiency while applying suitable compression methods on voice/VBD/fax calls and silence elimination on voice calls. We analyze the performance and capacity of an ATM multiplexer based on AAL2 adaptation. We assume that embedded adaptive differential pulse code modulation (ADPCM) is used to compress voice, and silence elimination is used to achieve statistical multiplexing gain. The embedded ADPCM coding scheme allows selective dropping of less significant bits of voice during congestion in the ATM/AAL2 multiplexer. We compare the call capacities of voice multiplexers with and without bit dropping (BD). The performance models and results presented are based on fairly general assumptions and can be used for traffic engineering and call admission control in land-line or wireless ATM systems for a variety of voice/voiceband compression algorithms. A generalized algorithm for call admission control is also described.
机译:异步传输模式(ATM)适配层2(AAL2)已设计用于在ATM虚拟电路上有效传输语音,传真和语音带数据(VBD)流量。该协议有助于实现低延迟和高带宽效率,同时在语音/ VBD /传真呼叫上应用适当的压缩方法以及在语音呼叫上消除静音。我们分析了基于AAL2自适应的ATM多路复用器的性能和容量。我们假设嵌入式自适应差分脉冲编码调制(ADPCM)用于压缩语音,而消音则用于实现统计复用增益。嵌入式ADPCM编码方案允许在ATM / AAL2多路复用器发生拥塞时选择性地丢弃不太重要的语音位。我们比较了带和不带丢位(BD)的语音多路复用器的呼叫容量。给出的性能模型和结果基于相当普遍的假设,可用于陆线或无线ATM系统中的流量工程和呼叫接纳控制,以用于各种语音/语音带压缩算法。还描述了用于呼叫接纳控制的通用算法。

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