Title :
Stochastic approximation methods for decentralized control of multiaccess communications
fDate :
3/1/1985 12:00:00 AM
Abstract :
Strategies based on stochastic approximation are suggested for controlling the transmission probabilities of stations sharing a collision access communication channel. Examples include strategies based on acknowledgment feedback only, and strategies suitable for frequency-hopped spread spectrum channels. The strategies provide for the incorporation of priorities among the stations. A Lyapunov-like function is constructed to prove global stability of the ordinary differential equation which is approximated by the system, and a design methodology based on minimizing a cost function is given. Preliminary results on transmission control in a nonbroadcast network are presented.
Keywords :
Distributed control; Multiaccess communication; Packet switching; Stochastic approximation; Approximation methods; Communication channels; Communication system control; Distributed control; Feedback; Frequency division multiaccess; Multiaccess communication; Spread spectrum communication; Stability; Stochastic processes;
Journal_Title :
Information Theory, IEEE Transactions on
DOI :
10.1109/TIT.1985.1057025