Title :
Cross-Layer Measurements for a Comprehensive Characterization of Wireless Networks in the Presence of Interference
Author :
Angrisani, Leopoldo ; Vadursi, Michele
Author_Institution :
Univ. degli Studi di Napoli II, Napoli
Abstract :
Assessing the overall performance of wireless communication networks is of key importance for optimal management and planning. With special regard to wireless networks operating in an unlicensed band, evaluating overall performance mainly implies facing the coexistence issues, which are associated with the contemporaneous presence of true and interfering signals at the physical layer. This task is difficult to fulfill only on the basis of single-layer measurements, if not prohibitive; a partial perspective of network behavior would, in fact, be gained. With this concern, a cross-layer approach is presented hereinafter. It provides for several measurements to be concurrently carried out at different layers through a proper automatic station. It aims to correlate the values of the major physical-layer quantities (e.g., channel power and signal-to-interference ratio) exhibited by those characterizing the key higher layers´ parameters (e.g., packet-loss ratio and one-way delay) in the presence of interference. A first step toward a full characterization of how the effects of a problem, which is experienced at the physical layer, propagates along the whole protocol stack, can thus be taken.
Keywords :
interference (signal); radio networks; telecommunication network management; telecommunication network planning; Interference signals; comprehensive characterization; cross-layer approach; cross-layer measurements; network behavior; optimal management; optimal planning; wireless communication networks; Communication networks; Degradation; Delay; Gain measurement; ISO; Interference; Physical layer; Protocols; Wireless communication; Wireless networks; Coexistence issues; Wi-Fi; cross-layer measurements; interference measurements; one-way-delay (OWD) measurements; packet-loss-ratio (PLR) measurements; timing-jitter measurements; wireless networks;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2007.900432