Jäger B, Porrmann M, Rückert U. Bio-inspired massively parallel architectures for nanotechnologies. In: IEEE Circuits and Systems Society, ed. Proceeding of the IEEE International Symposium on Circuits and Systems (ISCAS 2006). Piscataway, NJ: IEEE; 2006: 1961-1964.Massively parallel single-chip multiprocessors (CMP) share a number of traits with biological systems such as neural networks. These biological systems have therefore inspired a number of concepts that may help to overcome some of the problems that will come up in future circuit technologies. In this work we present a first comparison of CMPs based on processor cores of different complexity and estimate the efficiency of CMPs with regards to overall performance and energy consum...
© 2013, IGI Global. Molecular machines (MM, Badjic, 2004; Collier, 2000; Jian & Tour, 2003; Koumura ...
Exact cover is a non-deterministic polynomial time (NP)—complete problem that is central to optimiza...
Rückert U. Brain-Inspired Architectures for Nanoelectronics. In: Hoefflinger B, ed. CHIPS 2020 VOL. ...
Jager B, Niemann J-C, Rückert U. Analytical approach to massively parallel architectures for nanotec...
The high energy consumption of electronic data processors, together with physical challenges limitin...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
The high energy consumption of electronic data processors, together with physical challenges limitin...
Network-based biocomputation (NBC) is an alternative, parallel computation approach that can potenti...
Thesis (Ph.D.), School of Electrical Engineering and Computer Science, Washington State UniversityAs...
Thesis (Ph.D.), School of Electrical Engineering and Computer Science, Washington State UniversityLa...
The anticipated properties of future nanoelectronic devices represent orders of magnitude improvemen...
The continuous scaling of nanoelectronics is increasing the complexity of chip multiprocessors (CMPs...
Exponential growth in biological sequence data combined with the computationally intensive nature of...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
In this chapter I have provided a brief and somewhat superficial survey of the specialized hardware ...
© 2013, IGI Global. Molecular machines (MM, Badjic, 2004; Collier, 2000; Jian & Tour, 2003; Koumura ...
Exact cover is a non-deterministic polynomial time (NP)—complete problem that is central to optimiza...
Rückert U. Brain-Inspired Architectures for Nanoelectronics. In: Hoefflinger B, ed. CHIPS 2020 VOL. ...
Jager B, Niemann J-C, Rückert U. Analytical approach to massively parallel architectures for nanotec...
The high energy consumption of electronic data processors, together with physical challenges limitin...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
The high energy consumption of electronic data processors, together with physical challenges limitin...
Network-based biocomputation (NBC) is an alternative, parallel computation approach that can potenti...
Thesis (Ph.D.), School of Electrical Engineering and Computer Science, Washington State UniversityAs...
Thesis (Ph.D.), School of Electrical Engineering and Computer Science, Washington State UniversityLa...
The anticipated properties of future nanoelectronic devices represent orders of magnitude improvemen...
The continuous scaling of nanoelectronics is increasing the complexity of chip multiprocessors (CMPs...
Exponential growth in biological sequence data combined with the computationally intensive nature of...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
In this chapter I have provided a brief and somewhat superficial survey of the specialized hardware ...
© 2013, IGI Global. Molecular machines (MM, Badjic, 2004; Collier, 2000; Jian & Tour, 2003; Koumura ...
Exact cover is a non-deterministic polynomial time (NP)—complete problem that is central to optimiza...
Rückert U. Brain-Inspired Architectures for Nanoelectronics. In: Hoefflinger B, ed. CHIPS 2020 VOL. ...