Joy Y. Cheng, Daniel P. Sanders, et al.
SPIE Advanced Lithography 2008
We consider an APX-hard variant (Δ-Max-ATSP) and an APX-hard relaxation (Max-3-DCC) of the classical traveling salesman problem. We present a frac(31, 40)-approximation algorithm for Δ-Max-ATSP and a frac(3, 4)-approximation algorithm for Max-3-DCC with polynomial running time. The results are obtained via a new way of applying techniques for computing undirected cycle covers to directed problems. © 2009 Elsevier B.V. All rights reserved.
Joy Y. Cheng, Daniel P. Sanders, et al.
SPIE Advanced Lithography 2008
Vladimir Yanovski, Israel A. Wagner, et al.
Ann. Math. Artif. Intell.
John S. Lew
Mathematical Biosciences
Alfred K. Wong, Antoinette F. Molless, et al.
SPIE Advanced Lithography 2000