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Evaluating End Effects For Linear And Integer Programs Using Infinite Horizon Linear Programming by Walker%2c Steven C.

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1Evaluating End Effects For Linear And Integer Programs Using Infinite-horizon Linear Programming

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This dissertation considers optimization problems in which similar decisions need to be made repeatedly over many successive periods. These problems have wide applications including manpower planning, scheduling, production planning and control, capacity expansion, and equipment replacement/modemization. In reality these decision problems usually extend over an indeterminate horizon, but it is common practice to model them using a finite horizon. Unfortunately, an artificial finite horizon may adversely influence optimal decisions, a difficulty commonly referred to as the end effects problem. Past research into end effects has focused on theoretical issues associated with solving (or approximately solving) infinite-horizon extensions of finite-horizon problems. This dissertation derives equivalent finite-horizon formulations for a small class of infinite-horizon problem structures. For a larger class of problems, it also develops finite-horizon approximations which bound the infinite- horizon optimal solution, thereby quantifying the influence of end effects. For linear programs, extensions of these approximations quantify the end effects of fixed initial period decisions over a functional range of future infinite-horizon conditions.

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  • Title: ➤  Evaluating End Effects For Linear And Integer Programs Using Infinite-horizon Linear Programming
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  • Language: English

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The book is available for download in "texts" format, the size of the file-s is: 1224.28 Mbs, the file-s for this book were downloaded 121 times, the file-s went public at Fri May 03 2019.

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2DTIC ADA297052: Evaluating End Effects For Linear And Integer Programs Using Infinite-Horizon Linear Programming.

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This dissertation considers optimization problems in which similar decisions need to be made repeatedly over many successive periods. These problems have wide applications including manpower planning, scheduling, production planning and control, capacity expansion, and equipment replacement/modemization. In reality these decision problems usually extend over an indeterminate horizon, but it is common practice to model them using a finite horizon. Unfortunately, an artificial finite horizon may adversely influence optimal decisions, a difficulty commonly referred to as the end effects problem. Past research into end effects has focused on theoretical issues associated with solving (or approximately solving) infinite-horizon extensions of finite-horizon problems. This dissertation derives equivalent finite-horizon formulations for a small class of infinite-horizon problem structures. For a larger class of problems, it also develops finite-horizon approximations which bound the infinite- horizon optimal solution, thereby quantifying the influence of end effects. For linear programs, extensions of these approximations quantify the end effects of fixed initial period decisions over a functional range of future infinite-horizon conditions. (KAR) P. 2

“DTIC ADA297052: Evaluating End Effects For Linear And Integer Programs Using Infinite-Horizon Linear Programming.” Metadata:

  • Title: ➤  DTIC ADA297052: Evaluating End Effects For Linear And Integer Programs Using Infinite-Horizon Linear Programming.
  • Author: ➤  
  • Language: English

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The book is available for download in "texts" format, the size of the file-s is: 188.65 Mbs, the file-s for this book were downloaded 89 times, the file-s went public at Fri Mar 23 2018.

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