Title :
Link-layer buffering requirements and optimization of Gb/s infrared enabled devices
Author :
Yiannopoulos, K. ; Boucouvalas, A.C.
Author_Institution :
Dept. of Telecommun. Sci. & Technol., Univ. of Peloponnese, Tripoli, Greece
Abstract :
We present an analytical model for dimensioning the buffering requirements of the link-layer in half-duplex Gb/s infrared links. Our model takes into account both physical layer parameters, including the bit-error-rate and the turnaround time of the link, and link-layer parameters, including the protocol window and frame size, in order to calculate the utilization efficiency of the infrared link as a function of the buffer size. We utilize the model to establish the buffer size that is required to achieve acceptable efficiencies for a broad range of standardized infrared link and link-layer protocol configurations. Our analysis shows that it is possible to optimize the link-layer window and frame size in order to achieve maximum efficiency for any given buffer size and link configuration, and we provide analytical relations for the buffer-constrained optimal window and frame size.
Keywords :
error statistics; optical communication; optical links; protocols; bit-error-rate; buffer-constrained optimal window; frame size; half-duplex Gb/s infrared link; infrared enabled device; link-layer buffering requirement; link-layer parameter; link-layer protocol configuration; link-layer window; physical layer parameter; protocol window; utilization efficiency; Bit error rate; Optical buffering; Payloads; Physical layer; Protocols; Receivers; Strontium; Buffer dimensioning; Gigabit optical wireless; Half-duplex infrared link; Link-layer protocol;
Journal_Title :
Optical Communications and Networking, IEEE/OSA Journal of
DOI :
10.1364/JOCN.4.000663