This paper proposes a general framework for the design and simulation of network-on-chip-based turbo decoder architectures. Several parameters in the design space are investigated, namely, network topology, parallelism degree, the rate at which messages are sent by processing nodes over the network, and routing strategy. The main results of this analysis are as follows: 1) the most suited topologies to achieve high throughput with a limited complexity overhead are generalized de Bruijn and generalized Kautz topologies and 2) depending on the throughput requirements, different parallelism degrees, message injection rates, and routing algorithms can be used to minimize the network area overhead.

Turbo NOC: a framework for the design of Network-on-Chip-basedturbo decoder architectures / Martina, Maurizio; Masera, Guido. - In: IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS. I, REGULAR PAPERS. - ISSN 1549-8328. - STAMPA. - 57:10(2010), pp. 2776-2789. [10.1109/TCSI.2010.2046257]

Turbo NOC: a framework for the design of Network-on-Chip-basedturbo decoder architectures

MARTINA, MAURIZIO;MASERA, Guido
2010

Abstract

This paper proposes a general framework for the design and simulation of network-on-chip-based turbo decoder architectures. Several parameters in the design space are investigated, namely, network topology, parallelism degree, the rate at which messages are sent by processing nodes over the network, and routing strategy. The main results of this analysis are as follows: 1) the most suited topologies to achieve high throughput with a limited complexity overhead are generalized de Bruijn and generalized Kautz topologies and 2) depending on the throughput requirements, different parallelism degrees, message injection rates, and routing algorithms can be used to minimize the network area overhead.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2375137
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