Performance of PRMA: A Packet Voice Protocol for Cellular Systems

نویسندگان

  • Sanjiv Nanda
  • David J. Goodman
چکیده

Future microcellular systems will require distributed network control. A packet-switched network is particularly suitable for this requirement. Moreover, packet switching naturally accommodates speech activity detection to improve Vation-ALOHA protocol for packet speech transmission from wireless terminals to a base station. Because PRMA is a statistical multiplexer, the channel becomes congested when to0 many terminals are active. Voice packets require prompt delivery, and therefore PRMA responds to congestion by dropping packets ooint analvsis is used to evaluate system behavior. We derive the A * System Goodman et al. proposed packet reservation multiple access (PRMA) for packet voice terminals in cellular systems nals Since conversational speech produces multipacket messages during talkspurts. The present paper presents an analysis of PRMA, a modification of R-ALOHA for indoor microcellular applications. This particular application implies that cation implies that delayed Packets are dropped. These modicapacity. Packet reservation multiple access (PRMA) is a Reser14i. A reservation protocol is appropriate for speech termidelayed beyond a specified time limit. In this paper, equilibrium the are The speech appliprobability of packet dropping given the number of simultaneous conversations. We also establish conditions for system stability and efficiency. Numerical calculations based on the theory show close agreement with computer simulations. They also provide valuable guides to system design. For a particular example we find that speech activity detection permits 37 speech terminals to share a PRMA channel with 20 slots per frame, with a packet dropping probability of less than 1%.

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تاریخ انتشار 2010