Title :
Using traffic regulation to meet end-to-end deadlines in ATM networks
Author :
Raha, Amitava ; Kamat, Sanjay ; Jia, Xiaohua ; Zhao, Wei
Author_Institution :
Fijitsu Software Corp., USA
fDate :
9/1/1999 12:00:00 AM
Abstract :
Considers the support of hard real-time connections in ATM networks. In an ATM network, a set of hard real-time connections can be admitted only if the worst-case end-to-end delays of cells belonging to individual connections are less than their deadlines. There are several approaches to managing the network resources in order to meet the delay requirements of connections. This paper focuses on the use of traffic regulation to achieve this objective. Leaky buckets provide simple and user-programmable means of traffic regulation. An efficient optimal algorithm for selecting the burst parameters of leaky buckets to meet connections´ deadlines is designed and analyzed. The algorithm is optimal in the sense that it always selects a set of burst parameters whose mean value is minimal and by which the delay requirements of hard real-time connections can be met. The exponential size of the search space makes this problem a challenging one. The algorithm is efficient through systematically pruning the search space. There is an observed dramatic improvement in the system performance in terms of the connection admission probability when traffic is regulated using this algorithm
Keywords :
asynchronous transfer mode; delays; real-time systems; search problems; telecommunication control; telecommunication traffic; ATM networks; burst parameter selection; connection admission probability; connection delay requirements; efficient optimal algorithm; end-to-end deadlines; exponential search space size; hard real-time connections; leaky buckets; network delay analysis; network resource management; system performance; systematic search space pruning; user-programmable traffic regulation; worst-case end-to-end cell delays; Algorithm design and analysis; Asynchronous transfer mode; Communication system traffic control; Delay; Intelligent networks; Job shop scheduling; Processor scheduling; Real time systems; Telecommunication traffic; Traffic control;
Journal_Title :
Computers, IEEE Transactions on