Systolic arrays for integer Chinese remaindering

Parallel Computing - Tập 19 - Trang 1303-1311 - 1993
Çetin Kaya Koç1, Peter Cappello2
1Department of Electrical & Computer Engineering, Oregon State University, Corvallis, OR 97331, USA
2Department of Computer Science, University of California, Santa Barbara, CA 93106, USA

Tài liệu tham khảo

Annaratone, 1987, The WARP computer: Architecture, implementation, and performance, IEEE Trans. Comput., 36, 1523, 10.1109/TC.1987.5009502 Bareiss, 1972, Computation solution of matrix problems over an integral domain, J. Inst. Math. Appl., 10, 68, 10.1093/imamat/10.1.68 Chakraborti, 1986, An implementation of mixed-radix conversion for residue number applications, IEEE Trans. Comput., 35, 762, 10.1109/TC.1986.1676829 Chang, 1989, Residue arithmetic VLSI array architecture for manipulator pseudoinverse Jacobian computation, IEEE Trans. Robotics and Automation, 5, 569, 10.1109/70.88077 Foulser, 1987, The Saxpy Matrix-1: A general-purpose systolic computer, IEEE Comput. Mag., 20, 35, 10.1109/MC.1987.1663618 Garner, 1959, The residue number systems, IRE Trans. Electronic Comput., 8, 140, 10.1109/TEC.1959.5219515 INMOS Ltd, 1986, Almondsbury, Bristol, UK, IMS T800 Transputer Knuth, 1981, vol. 2 Koç, 1991, Comments on ‘Residue arithmetic VLSI array architecture for manipulator pseudoinverse Jacobian computation’, IEEE Trans. Robotic and Automation, 7, 715, 10.1109/70.97885 Koç, 1992, A parallel algorithm for exact solution of linear equations via congruence technique, Comput. Math. Appl., 23, 13, 10.1016/0898-1221(92)90089-Z Kung, 1988 Lipson, 1971, Chinese remainder and interpolation algorithms, 372 Lipson, 1981 Newman, 1967, Solving equations exactly, J. Res. Nat. Bureau of Standards, 71B, 171, 10.6028/jres.071B.023 1986 Szabo, 1967