Optimal-size problem kernels for -Hitting Set in linear time and space
arXiv:2003.04578 · doi:10.1016/j.ipl.2020.105998
Abstract
The known linear-time kernelizations for -Hitting Set guarantee linear worst-case running times using a quadratic-size data structure (that is not fully initialized). Getting rid of this data structure, we show that problem kernels of asymptotically optimal size for -Hitting Set are computable in linear time and space. Additionally, we experimentally compare the linear-time kernelizations for -Hitting Set to each other and to a classical data reduction algorithm due to Weihe.
More detailed algorithm descriptions, extended experimental section