0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (2)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Physical Layer Multi-Core Prototyping - A Dataflow-Based Approach for LTE eNodeB (Paperback, 2013 ed.): Maxime Pelcat,... Physical Layer Multi-Core Prototyping - A Dataflow-Based Approach for LTE eNodeB (Paperback, 2013 ed.)
Maxime Pelcat, Slaheddine Aridhi, Jonathan Piat, Jean-Francois Nezan
R3,654 Discovery Miles 36 540 Ships in 10 - 15 working days

Base stations developed according to the 3GPP Long Term Evolution (LTE) standard require unprecedented processing power. 3GPP LTE enables data rates beyond hundreds of Mbits/s by using advanced technologies, necessitating a highly complex LTE physical layer. The operating power of base stations is a significant cost for operators, and is currently optimized using state-of-the-art hardware solutions, such as heterogeneous distributed systems. The traditional system design method of porting algorithms to heterogeneous distributed systems based on test-and-refine methods is a manual, thus time-expensive, task. Physical Layer Multi-Core Prototyping: A Dataflow-Based Approach provides a clear introduction to the 3GPP LTE physical layer and to dataflow-based prototyping and programming. The difficulties in the process of 3GPP LTE physical layer porting are outlined, with particular focus on automatic partitioning and scheduling, load balancing and computation latency reduction, specifically in systems based on heterogeneous multi-core Digital Signal Processors. Multi-core prototyping methods based on algorithm dataflow modeling and architecture system-level modeling are assessed with the goal of automating and optimizing algorithm porting. With its analysis of physical layer processing and proposals of parallel programming methods, which include automatic partitioning and scheduling, Physical Layer Multi-Core Prototyping: A Dataflow-Based Approach is a key resource for researchers and students. This study of LTE algorithms which require dynamic or static assignment and dynamic or static scheduling, allows readers to reassess and expand their knowledge of this vital component of LTE base station design.

Physical Layer Multi-Core Prototyping - A Dataflow-Based Approach for LTE eNodeB (Hardcover, 2013 ed.): Maxime Pelcat,... Physical Layer Multi-Core Prototyping - A Dataflow-Based Approach for LTE eNodeB (Hardcover, 2013 ed.)
Maxime Pelcat, Slaheddine Aridhi, Jonathan Piat, Jean-Francois Nezan
R3,016 Discovery Miles 30 160 Ships in 10 - 15 working days

Base stations developed according to the 3GPP Long Term Evolution (LTE) standard require unprecedented processing power. 3GPP LTE enables data rates beyond hundreds of Mbits/s by using advanced technologies, necessitating a highly complex LTE physical layer. The operating power of base stations is a significant cost for operators, and is currently optimized using state-of-the-art hardware solutions, such as heterogeneous distributed systems. The traditional system design method of porting algorithms to heterogeneous distributed systems based on test-and-refine methods is a manual, thus time-expensive, task.

"Physical Layer Multi-Core Prototyping: A Dataflow-Based Approach" provides a clear introduction to the 3GPP LTE physical layer and to dataflow-based prototyping and programming. The difficulties in the process of 3GPP LTE physical layer porting are outlined, with particular focus on automatic partitioning and scheduling, load balancing and computation latency reduction, specifically in systems based on heterogeneous multi-core Digital Signal Processors. Multi-core prototyping methods based on algorithm dataflow modeling and architecture system-level modeling are assessed with the goal of automating and optimizing algorithm porting.

With its analysis of physical layer processing and proposals of parallel programming methods, which include automatic partitioning and scheduling, "Physical Layer Multi-Core Prototyping: A Dataflow-Based Approach" is a key resource for researchers and students. This study of LTE algorithms which require dynamic or static assignment and dynamic or static scheduling, allows readers to reassess and expand their knowledge of this vital component of LTE base station design.

"

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Psychiatric Medication Issues for Social…
Kia J. Bentley Hardcover R1,682 Discovery Miles 16 820
Psychiatric Drug Withdrawal - A Guide…
Peter R. Breggin Paperback R2,136 R1,543 Discovery Miles 15 430
Still Life
Sarah Winman Paperback R358 Discovery Miles 3 580
An Island
Karen Jennings Paperback  (1)
R267 Discovery Miles 2 670
Understanding Medicinal Plants - Their…
Bryan Hanson Hardcover R5,955 Discovery Miles 59 550
Suspects
Danielle Steel Paperback  (3)
R340 R292 Discovery Miles 2 920
An Account of the Foxglove, and Some of…
William Withering Paperback R452 Discovery Miles 4 520
The Collected Regrets Of Clover
Mikki Brammer Paperback R305 R238 Discovery Miles 2 380
Pharmacy Practice
Kevin M.G. Taylor, Geoffrey Harding Paperback R2,626 Discovery Miles 26 260
Ethnobotany - From the Traditional to…
Jose L. Martinez, Alfred Maroyi, … Hardcover R4,121 Discovery Miles 41 210

 

Partners