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Based on a discussion of the requirements for the multiple acess control protocol of beyond third-generation mobile systems, we in this paper articulate the needs of the new multiple acess control protocol with support of high-speed transmission and guaranteed quality of service, for voice, video and audio. In light of these, we present the design of a new multiple acess control protocol, called intelligent slot-subcarriered assignment multiple acess control protocol, to support multiple service categories and to yield high spectral efficiency. Our simulation results verify that intelligent slot-subcarriered assignment multiple acess control protocol can not only provide low delays for the real-time traffic by using bandwidth reservation and effectual scheduling, but also make full use of the limited bandwidth by using a dynamic sub-carrier assignment algorithm.
Based on a discussion of the requirements for the multiple access control protocol of beyond third-generation mobile systems, we in this paper articulate the needs of the new multiple access control protocol with support of high-speed transmission and guaranteed quality of service, for voice , video and audio. In light of these, we present the design of a new multiple access control protocol, called intelligent slot-subcarriered assignment multiple access control protocol, to support multiple service categories and to yield high spectral efficiency. Our simulation results verify that intelligent slot-subcarriered assignment multiple access control protocol can not only provide low delays for the real-time traffic by using bandwidth reservation and effectual scheduling but also make full use of the limited bandwidth by using a dynamic sub-carrier assignment algorithm.