Optimal parking of idle elevators under myopic and state-dependent policies

In this paper we discuss the problem of optimally parking single and multiple idle elevators under light-traffic conditions. The problem is analyzed from the point of view of the elevator owner whose objective is to minimize the expected total cost of parking and dispatching the elevator (which incl...

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Main Authors: Parlar M., MOOSA Sharafali, Ou J.
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Language:English
Published: Institutional Knowledge at Singapore Management University 2006
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Online Access:https://ink.library.smu.edu.sg/lkcsb_research/4745
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spelling sg-smu-ink.lkcsb_research-57442015-10-22T10:06:06Z Optimal parking of idle elevators under myopic and state-dependent policies Parlar M., MOOSA Sharafali, Ou J., In this paper we discuss the problem of optimally parking single and multiple idle elevators under light-traffic conditions. The problem is analyzed from the point of view of the elevator owner whose objective is to minimize the expected total cost of parking and dispatching the elevator (which includes the cost incurred for waiting passengers). We first consider the case of a single elevator and analyze a (commonly used but suboptimal) state-independent myopic policy that always positions the idle elevator at the same floor. Building on the results obtained for the myopic policy, we then show that the optimal non-myopic (state-dependent) policy calls for dispatching the idle elevator to the state-dependent median of a weight distribution. Next, we consider the more difficult case of two elevators and develop an expression for the expected dispatching distance function. We show that the objective function for the myopic policy is non-convex. The non-myopic policy is found to be dependent on the state of the two idle elevators. We compute the optimal state-dependent policy for two elevators using the results developed for the myopic policy. Next, we examine the case of multiple elevators and provide a general recursive formula to find the expected dispatching distance functions. Finally, we generalize the previous models by incorporating a fixed cost for parking the idle elevators that results in a two-sided optimal policy with different regions. Every policy that we introduce and analyze is illustrated by an example. The paper concludes with a short summary and suggestions for future research. 2006-05-01T07:00:00Z text https://ink.library.smu.edu.sg/lkcsb_research/4745 info:doi/10.1016/j.ejor.2004.07.042 Research Collection Lee Kong Chian School Of Business eng Institutional Knowledge at Singapore Management University Applied probability Location science Nonlinear programming Business Administration, Management, and Operations
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Applied probability
Location science
Nonlinear programming
Business Administration, Management, and Operations
spellingShingle Applied probability
Location science
Nonlinear programming
Business Administration, Management, and Operations
Parlar M.,
MOOSA Sharafali,
Ou J.,
Optimal parking of idle elevators under myopic and state-dependent policies
description In this paper we discuss the problem of optimally parking single and multiple idle elevators under light-traffic conditions. The problem is analyzed from the point of view of the elevator owner whose objective is to minimize the expected total cost of parking and dispatching the elevator (which includes the cost incurred for waiting passengers). We first consider the case of a single elevator and analyze a (commonly used but suboptimal) state-independent myopic policy that always positions the idle elevator at the same floor. Building on the results obtained for the myopic policy, we then show that the optimal non-myopic (state-dependent) policy calls for dispatching the idle elevator to the state-dependent median of a weight distribution. Next, we consider the more difficult case of two elevators and develop an expression for the expected dispatching distance function. We show that the objective function for the myopic policy is non-convex. The non-myopic policy is found to be dependent on the state of the two idle elevators. We compute the optimal state-dependent policy for two elevators using the results developed for the myopic policy. Next, we examine the case of multiple elevators and provide a general recursive formula to find the expected dispatching distance functions. Finally, we generalize the previous models by incorporating a fixed cost for parking the idle elevators that results in a two-sided optimal policy with different regions. Every policy that we introduce and analyze is illustrated by an example. The paper concludes with a short summary and suggestions for future research.
format text
author Parlar M.,
MOOSA Sharafali,
Ou J.,
author_facet Parlar M.,
MOOSA Sharafali,
Ou J.,
author_sort Parlar M.,
title Optimal parking of idle elevators under myopic and state-dependent policies
title_short Optimal parking of idle elevators under myopic and state-dependent policies
title_full Optimal parking of idle elevators under myopic and state-dependent policies
title_fullStr Optimal parking of idle elevators under myopic and state-dependent policies
title_full_unstemmed Optimal parking of idle elevators under myopic and state-dependent policies
title_sort optimal parking of idle elevators under myopic and state-dependent policies
publisher Institutional Knowledge at Singapore Management University
publishDate 2006
url https://ink.library.smu.edu.sg/lkcsb_research/4745
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