DocumentCode :
79195
Title :
Runtime Precoding: Enabling Multipoint Transmission in LTE-Advanced System-Level Simulations
Author :
Taranetz, Martin ; Blazek, Thomas ; Kropfreiter, Thomas ; Muller, Martin Klaus ; Schwarz, Stefan ; Rupp, Markus
Author_Institution :
Inst. of Telecommun., Vienna Univ. of Technol., Vienna, Austria
Volume :
3
fYear :
2015
fDate :
2015
Firstpage :
725
Lastpage :
736
Abstract :
System-level simulations have become an indispensable tool for predicting the behavior of wireless cellular systems. As exact link-level modeling is unfeasible due to its huge complexity, mathematical abstraction is required to obtain equivalent results by less complexity. A particular problem in such approaches is the modeling of multiple coherent transmissions. Those arise in multiple-input-multiple-output transmissions at every base station but nowadays so-called coordinated multipoint (CoMP) techniques have become very popular, allowing to allocate two or more spatially separated transmission points. Also, multimedia broadcast single frequency networks (MBSFNs) have been introduced recently in long-term evolution (LTE), which enables efficient broadcasting transmission suitable for spreading information that has a high user demand as well as simultaneously sending updates to a large number of devices. This paper introduces the concept of runtime-precoding, which allows to accurately abstract many coherent transmission schemes while keeping additional complexity at a minimum. We explain its implementation and advantages. For validation, we incorporate the runtime-precoding functionality into the Vienna LTE-A downlink system-level simulator, which is an open source tool, freely available under an academic noncommercial use license. We measure simulation run times and compare them against the legacy approach as well as link-level simulations. Furthermore, we present multiple application examples in the context of intrasite and intersite CoMP for train communications and MBSFN.
Keywords :
Long Term Evolution; MIMO communication; cellular radio; multimedia communication; precoding; MBSFN; MIMO transmissions; Vienna LTE-A downlink system-level simulator; academic noncommercial use license; coordinated multipoint techniques; intersite CoMP; intrasite CoMP; link-level modeling; link-level simulations; long-term evolution; mathematical abstraction; multimedia broadcast single frequency networks; multiple coherent transmissions; multiple-input-multiple-output transmissions; multipoint transmission; open source tool; runtime-precoding functionality; train communications; transmission points; wireless cellular systems; Broadcasting; Cellular networks; Downlink; Multimedia communication; Predictive models; System-level design; Telecommunication services; Transmission line measurements; Wireless networks; 3GPP; Coordinated Multipoint; High-User Mobility; LTE Transmission Modes; LTE transmission modes; LTE-A; Link Abstraction; Link Quality Model; Link abstraction; MIESM; Multimedia Broadcast Single Frequency Networks; Runtime-Precoding; Vienna LTE-A Downlink Link Level Simulator; Vienna LTE-A Downlink System Level Simulator; Vienna LTE-A downlink link level simulator; Vienna LTE-A downlink system level simulator; coordinated multipoint; high-user mobility; link quality model; multimedia broadcast single frequency networks; runtime-precoding;
fLanguage :
English
Journal_Title :
Access, IEEE
Publisher :
ieee
ISSN :
2169-3536
Type :
jour
DOI :
10.1109/ACCESS.2015.2437903
Filename :
7113789
Link To Document :
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