LINEAR PROGRAMMING

Linear Programming, V. Chandru, M. Rao, V. Chandru
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Abstract

Linear programming has been a fundamental topic in the development of the computational sciences. The subject has its origins in the early work of L.B.J. Fourier on solving systems of linear inequalities, dating back to the 1820's. More recently, a healthy competition between the simplex and interior point methods has led to rapid improvements in the technologies of linear programming. This combined with remarkable advances in computing hardware and software have brought linear programming tools to the desktop, in a variety of application software for decision support. Linear programming has provided a fertile ground for the development of various algorithmic paradigms. Diverse topics such as symbolic computation, numerical analysis, computational complexity, computational geometry, combinatorial optimization, and randomized algorithms all have some linear programming connection. This chapter reviews this universal role played by linear programming in the science of algorithms.
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线性规划
线性规划一直是计算科学发展的一个基本课题。这门学科起源于19世纪20年代L.B.J.傅立叶关于求解线性不等式系统的早期工作。最近,单纯形法和内点法之间的良性竞争导致了线性规划技术的快速发展。这与计算硬件和软件的显著进步相结合,将线性编程工具带到了桌面,在各种应用软件中为决策提供支持。线性规划为各种算法范式的发展提供了肥沃的土壤。符号计算、数值分析、计算复杂性、计算几何、组合优化和随机算法等各种主题都与线性规划有一定的联系。本章回顾线性规划在算法科学中的普遍作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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