Title :
Model time-frequency resource allocation WiMAX aimed at improving the electromagnetic compatibility
Author :
Lemeshko, A.V. ; Garkusha, S.V.
Author_Institution :
Kharkiv Nat. Univ. of Radio Electron., Kharkiv, Ukraine
Abstract :
The results of development a mathematical model for capacity allocation downlink technology WiMAX. The novelty of the proposed model is possible preventive limit transmission rate allocated to the service flows of the user stations in the downlink by using the WiMAX technology linear or linear-quadratic objective function. It is shown that the use of a linear-quadratic objective function in comparison with the linear, can produce a more equitable management of requests based on the relative priorities. The analysis of known methods for dividing the time-frequency resource WiMAX technology showed that they all focus on the distribution between the subscriber stations all bandwidth downlink. The model proposed is directed to the allocation of each user station a guaranteed bit rate in the absence of overload downlink as well as the preventive rate limiting allocated user stations under overload conditions. Using the mathematical model is directed to distribution between subscriber stations of a time-frequency resource of the downlink, which in turn improves the conditions in the electromagnetic frequency range used. The influence of the priority request rate used in the model, the nature of the possible failures.
Keywords :
WiMax; electromagnetic compatibility; quadratic programming; resource allocation; time-frequency analysis; bandwidth downlink; capacity allocation; downlink technology; electromagnetic compatibility; electromagnetic frequency range; guaranteed bit rate; linear-quadratic objective function; mathematical model; model time-frequency resource allocation; overload conditions; overload downlink; preventive limit transmission rate; preventive rate limiting; request management; service flows; subscriber stations; time-frequency resource WiMAX technology; user stations; Bandwidth; Downlink; Mathematical model; Resource management; Time-frequency analysis; Vectors; WiMAX; WiMAX; guaranteed bit rate; mathematical model; the electromagnetic compatibility; time-frequency resource;
Conference_Titel :
Antenna Theory and Techniques (ICATT), 2013 IX International Conference on
Conference_Location :
Odessa
Print_ISBN :
978-1-4799-2896-5
DOI :
10.1109/ICATT.2013.6650716