Title :
On the analysis of effective capacity over generalized fading channels
Author :
Zhe Ji ; Chao Dong ; Youzheng Wang ; Jianhua Lu
Author_Institution :
Tsinghua Nat. Lab. for Inf. Sci. & Technol., Tsinghua Univ., Beijing, China
Abstract :
Quality of service (QoS) guarantees play a significant role in next-generation wireless networks and the concept of effective capacity is proposed to characterize the maximum arrival rate that a time-varying fading channel can support under a delay-QoS constraint. However, the probability density function (PDF)-based analysis of effective capacity over generalized fading channels suffers from mathematical intractability in some situations of interest. In this paper, an approach based on the moment generating function (MGF) is introduced, which is suitable to deduce the closed-form expression for effective capacity computation. We start with the general case of adaptation transmission policy under the assumption of channel side information (CSI) only at the receiver, and then extend it to other adaptation policies. In addition, we derive unified and concise expressions of effective capacity by means of Fox´s H function, which can be easily calculated, accommodating a wide variety of fading scenarios. Finally, the formulas of effective capacity are verified by numerical and simulation results.
Keywords :
channel capacity; fading channels; probability; quality of service; time-varying channels; CSI; Fox´s H function; MGF; PDF-based analysis; QoS; channel side information; delay-QoS constraint; generalized fading channels; moment generating function; next-generation wireless networks; probability density function; quality of service; time-varying fading channel; Channel capacity; Delays; Fading; Quality of service; Receivers; Signal to noise ratio; Transmitters; Effective capacity; Fox´s H function; adaptation transmission policy; generalized fading channels; moment generating function;
Conference_Titel :
Communications (ICC), 2014 IEEE International Conference on
Conference_Location :
Sydney, NSW
DOI :
10.1109/ICC.2014.6883613