R&D priority-setting for global catastrophic risks: The case of the NASA planetary defense mission

被引:7
作者
Janzwood, Scott [1 ]
机构
[1] Univ Waterloo, Balsillie Sch Int Affairs, Waterloo, ON, Canada
关键词
R& D; Priority-setting; Global catastrophic risks; Planetary defense; NASA; Science and technology policy; INFORMATION;
D O I
10.1016/j.respol.2021.104225
中图分类号
C93 [管理学];
学科分类号
12 ; 1201 ; 1202 ; 120202 ;
摘要
"Mission-oriented" public research organizations invest in R&D to improve decision-making around complex policy problems from climate change to asteroid impacts, thus producing public value. However, the estimation of benefits produced by such R&D projects is notoriously difficult to predict and measure - a challenge that is magnified for global catastrophic risks (GCRs). GCRs are highly uncertain risks that may pose enormous negative consequences for humanity. This article explores how public research organizations systematically reduce key uncertainties associated with GCRs. Building off of recent literature highlighting the organizational and political factors that influence R&D priority-setting at public research organizations, this article develops an analytical framework for explaining R&D priority-setting outcomes that integrates the key stages of decision analysis with organizational and political dynamics identified in the literature. This framework is then illustrated with a case study of the NASA Planetary Defense Coordination Office, which addresses the GCR of near-Earth object (asteroid and comet) impacts. The case study reveals how organizational and political factors interact with every stage in the R&D priority-setting process - from initial problem definition to project selection. Lastly, the article discusses the extent to which the case study can inform R&D priority-setting at other public organizations, particularly those addressing GCRs.
引用
收藏
页数:12
相关论文
共 64 条
[31]   Lottery acquisition versus information acquisition: Prices and preference reversals [J].
Hazen, GB ;
Sounderpandian, J .
JOURNAL OF RISK AND UNCERTAINTY, 1999, 18 (02) :125-136
[32]   Calculating the momentum enhancement factor for asteroid deflection studies [J].
Heberling, Tamra ;
Gisler, Galen ;
Plesko, Catherine ;
Weaver, Robert .
14TH HYPERVELOCITY IMPACT SYMPOSIUM (HVIS 2017), 2017, 204 :124-129
[33]   From thematic to organizational prioritization: the challenges of implementing RDI priorities [J].
Hellstrom, Tomas ;
Jacob, Merle ;
Sjoo, Karolin .
SCIENCE AND PUBLIC POLICY, 2017, 44 (05) :599-608
[34]  
Hempsell C.M., 2004, J BR INTERPLANET SOC, V75, P2
[35]  
Jasanoff S., 2004, STATES KNOWLEDGE COP, P1
[36]   Updating the accounts: global mortality of the 1918-1920 "Spanish" influenza pandemic [J].
Johnson, NPAS ;
Mueller, J .
BULLETIN OF THE HISTORY OF MEDICINE, 2002, 76 (01) :105-115
[37]  
Kavadias S., 2004, PROJECT SELECTION UN
[38]  
Keisler J., 2004, MANAGEMENT SCI INFOR
[39]  
Kleinmuntz DN, 2007, ADVANCES IN DECISION ANALYSIS: FROM FOUNDATIONS TO APPLICATIONS, P400, DOI 10.1017/CBO9780511611308.021
[40]   Advances in planetary defense in the United States [J].
Landis, Rob ;
Johnson, Lindley .
ACTA ASTRONAUTICA, 2019, 156 :394-408