A computational approach for eliminating error in the solution of the location set covering problem

被引:32
作者
Murray, Alan T. [1 ]
Wei, Ran [1 ]
机构
[1] Arizona State Univ, GeoDa Ctr Geospatial Anal & Computat, Sch Geog Sci & Urban Planning, Tempe, AZ 85287 USA
关键词
Spatial optimization; GIS; Facility location; FACILITY PLACEMENT; COVERAGE; SERVICE; REPRESENTATION; DEMAND; GRAPH; GIS;
D O I
10.1016/j.ejor.2012.07.027
中图分类号
C93 [管理学];
学科分类号
12 ; 1201 ; 1202 ; 120202 ;
摘要
The location set covering problem continues to be an important and challenging spatial optimization problem. The range of practical planning applications underscores its importance, spanning fire station siting, warning siren positioning, security monitoring and nature reserve design, to name but a few. It is challenging on a number of fronts. First, it can be difficult to solve for medium to large size problem instances, which are often encountered in combination with geographic information systems (GIS) based analysis. Second, the need to cover a region efficiently often brings about complications associated with the abstraction of geographic space. Representation as points can lead to significant gaps in actual coverage, whereas representation as polygons can result in a substantial overestimate of facilities needed. Computational complexity along with spatial abstraction sensitivity combine to make advances in solving this problem much needed. To this end, a solution framework for ensuring complete coverage of a region with a minimum number of facilities is proposed that eliminates potential error. Applications to emergency warning siren and fire station siting are presented to demonstrate the effectiveness of the developed approach. The approach can be applied to convex, non-convex and non-contiguous regions and is unaffected by arbitrary initial spatial representations of space. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:52 / 64
页数:13
相关论文
共 37 条
[21]   THE MAXIMAL COVERING LOCATION PROBLEM WITH FACILITY PLACEMENT ON THE ENTIRE PLANE [J].
MEHREZ, A ;
STULMAN, A .
JOURNAL OF REGIONAL SCIENCE, 1982, 22 (03) :361-365
[22]  
Miller HJ, 1996, INT J GEOGR INF SYST, V10, P791, DOI 10.1080/026937996137729
[23]   M-CENTER PROBLEM [J].
MINIEKA, E .
SIAM REVIEW, 1970, 12 (01) :138-&
[24]  
Murray A.T., 2012, APPL GEOGRAPHY
[25]  
Murray A.T., 2002, JOURANL GEOGRAPHICAL, V4, P171
[26]   Regional service coverage modeling [J].
Murray, Alan T. ;
O'Kelly, Morton E. ;
Church, Richard L. .
COMPUTERS & OPERATIONS RESEARCH, 2008, 35 (02) :339-355
[27]   Coverage optimization in continuous space facility siting [J].
Murray, Alan T. ;
Tong, Daoqin .
INTERNATIONAL JOURNAL OF GEOGRAPHICAL INFORMATION SCIENCE, 2007, 21 (07) :757-776
[28]   Enhancing Classic Coverage Location Models [J].
Murray, Alan T. ;
Tong, Daoqin ;
Kim, Kamyoung .
INTERNATIONAL REGIONAL SCIENCE REVIEW, 2010, 33 (02) :115-133
[29]   Geography in coverage modeling: Exploiting spatial structure to address complementary partial service of areas [J].
Murray, AT .
ANNALS OF THE ASSOCIATION OF AMERICAN GEOGRAPHERS, 2005, 95 (04) :761-772
[30]   Strategic facility location: A review [J].
Owen, SH ;
Daskin, MS .
EUROPEAN JOURNAL OF OPERATIONAL RESEARCH, 1998, 111 (03) :423-447