Title :
Global Asymptotic Stability Analysis of FAST TCP Using Nonlinear Small Gain Theorem
Author :
Joon-Young Choi ; Hongju Kim ; Soonman Kwon
Author_Institution :
Dept. of Electron. Eng., Pusan Nat. Univ., Busan, South Korea
Abstract :
We investigate the global asymptotic stability of FAST TCP based on a continuous-time model for FAST TCP network in which all of cross traffics, time-varying network feedback delays, and queuing delay dynamics at link are taken into consideration. We recognize the dynamic interaction between FAST TCP source and link as a feedback interconnection of two input-to-state stable(ISS) subsystems. Then, applying the Razumikhin-type nonlinear small gain theorem, we prove that FAST TCP network is inherently ISS and globally asymptotically stable without any specific conditions on the tuning parameter α or update gain γ for FAST TCP operation. The ISS property of FAST TCP guarantees the robustness to disturbances, and the approach using the small gain theorem provides a guideline to design a globally stable and robust congestion control algorithm. The simulation results demonstrate the validity of the global asymptotic stability of FAST TCP.
Keywords :
Internet; asymptotic stability; queueing theory; telecommunication congestion control; telecommunication links; telecommunication traffic; time-varying networks; transport protocols; tuning; FAST TCP link; FAST TCP network; ISS subsystems; Razumikhin-type nonlinear small gain; continuous-time model; cross traffics; feedback interconnection; global asymptotic stability; nonlinear small gain theorem; queuing delay dynamics; robust congestion control algorithm; time-varying network feedback delays; tuning parameter; two input-to-state stable subsystems; Algorithm design and analysis; Asymptotic stability; Delays; Robustness; Stability criteria; Tuning; FAST TCP; Internet congestion control; global asymptotic stability; input-to-state stability; small gain theorem;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2014.012214.140015