1993Electronics and Communications in Japan (Part I Communications)Requires access

Evaluation of input traffic control in atm networks

Nobuo Sakamoto, Yoshihiro Ohba, Masayuki Murata, Hideo Miyahara

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Abstract

Abstract This paper evaluates a leaky‐bucket‐type control method as a means of policing control of input traffic in ATM networks. In an ATM network, a user reports parameters specifying traffic characteristics to each traffic source at the time of making a request for a call connection and the network determines whether or not to accept the call on the basis of these parameters. In addition, after the call reception, input traffic after a call connection must be controlled such that the cell arrivals from the traffic source conform with the reported parameters. In this paper, as a method of controlling input traffic, the mean arrival rate and burstiness of input traffic are evaluated quantitatively using the leaky‐bucket method and problems associated with introduction of such an input control system to an ATM network are discussed.

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Abstract This paper evaluates a leaky‐bucket‐type control method as a means of policing control of input traffic in ATM networks. In an ATM network, a user reports parameters specifying traffic characteristics to each traffic source at the time of making a request for a call connection and the network determines whether or not to accept the call on the basis of these parameters. In addition, after the call reception, input traffic after a call connection must be controlled such that the cell arrivals from the traffic source conform with the reported parameters. In this paper, as a method of controlling input traffic, the mean arrival rate and burstiness of input traffic are evaluated quantitatively using the leaky‐bucket method and problems associated with introduction of such an input control system to an ATM network are discussed.

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Available abstract

Abstract This paper evaluates a leaky‐bucket‐type control method as a means of policing control of input traffic in ATM networks. In an ATM network, a user reports parameters specifying traffic characteristics to each traffic source at the time of making a request for a call connection and the network determines whether or not to accept the call on the basis of these parameters. In addition, after the call reception, input traffic after a call connection must be controlled such that the cell arrivals from the traffic source conform with the reported parameters. In this paper, as a method of controlling input traffic, the mean arrival rate and burstiness of input traffic are evaluated quantitatively using the leaky‐bucket method and problems associated with introduction of such an input control system to an ATM network are discussed.

Key concepts: Burstiness, Traffic policing, Leaky bucket, Computer science, Computer network, Asynchronous Transfer Mode, Traffic shaping, Traffic generation model

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