Preprint

·2020 OPEN ACCESS

On the Relationships Between Average Channel Capacity, Average Bit Error Rate, Outage Probability, and Outage Capacity Over Additive White Gaussian Noise Channels

Ferkan Yılmaz YTU

IEEE Transactions on Communications

Abstract

In the theory of wireless communications, average performance measures (APMs) are widely utilized to quantify the performance gains/impairments in various fading environments under various scenarios, and to comprehend how the factors arising from design/implementation affect system performance. To the best of our knowledge, it has not been yet discovered in the literature how these APMs relate to each other. In this article, to supplement the APM analyses available in the literature we propose that one APM can be calculated using the other APMs instead of using the end-to-end SNR distribution. Particularly, using the Lamperti's transformation (LT), we propose a tractable approach, which we call LT-based APM analysis, to identify a relationship between any two given APMs such that it is irrespective of SNR distribution. Thereby, we introduce some novel relationships among average channel capacity (ACC), average bit error rate (ABER) and outage probability/capacity (OP/OC) performances, and accordingly present how to obtain ACC from ABER performance and how to obtain OP/OC from ACC performance in fading environments. We demonstrate that the ACC of any communications system can be evaluated empirically without using end-to-end SNR distribution. We consider some numerical examples and simulations to validate our newly derived relationships.

Keywords

Fading Additive white Gaussian noise Computer science Channel (broadcasting) Bit error rate Channel capacity Outage probability Gaussian Performance improvement Algorithm Wireless Statistics Telecommunications Electronic engineering Mathematics Engineering

Subject Areas

Advanced Wireless Communication Techniques ·Electrical and Electronic Engineering ·Physical Sciences
Advanced MIMO Systems Optimization ·Electrical and Electronic Engineering ·Physical Sciences
Wireless Communication Networks Research ·Computer Networks and Communications ·Physical Sciences

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