DocumentCode :
2944121
Title :
Designing stable ABR flow control with rate feedback and open-loop control: first-order control case
Author :
Chong, Sona ; Nagarajan, Ramesh ; Wang, Yungm Terng
Author_Institution :
Dept. of Electron. Eng., Sogang Univ., Seoul, South Korea
Volume :
3
fYear :
1998
fDate :
1998
Firstpage :
1786
Abstract :
In this paper we present a control-theoretic approach to design stable rate-based flow control for ATM ABR services. The flow control algorithm that we consider has the most simple form among all the queue-length-based flow control algorithms, and is referred to as first-order rate-based flow control (FRFC) since the corresponding closed loop can be modeled as a first-order retarded differential equation. We analyze the equilibrium and the asymptotic stability of the closed loop for the case of multiple connections with diverse round-trip delays. We also characterize the asymptotic decay rate at which the stable closed loop tends to the equilibrium. The decay rate is shown to be a concave function of control gain with its maximum being the inverse of round-trip delay. We also consider an open loop control in which the queue control threshold is dynamically adjusted according to the changes in the available bandwidth and the number of connections. This open loop control is shown to be necessary and effective to prevent the closed loop from converging to an undesirable equilibrium point
Keywords :
asymptotic stability; asynchronous transfer mode; closed loop systems; feedback; queueing theory; telecommunication congestion control; ABR flow control; ATM ABR services; asymptotic decay rate; asymptotic stability; available bandwidth; closed loop; control-theoretic approach; diverse round-trip delays; first-order control case; first-order rate-based flow control; first-order retarded differential equation; flow control algorithm; multiple connections; open-loop control; queue control threshold; queue-length-based flow control algorithm; rate feedback; stable rate-based flow control; Algorithm design and analysis; Asymptotic stability; Circuits; Computer aided software engineering; Delay; Feedback; Fluid flow control; Open loop systems; Performance analysis; Steady-state;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Telecommunications Conference, 1998. GLOBECOM 1998. The Bridge to Global Integration. IEEE
Conference_Location :
Sydney,NSW
Print_ISBN :
0-7803-4984-9
Type :
conf
DOI :
10.1109/GLOCOM.1998.776690
Filename :
776690
Link To Document :
بازگشت