Characterization of the anticipated performance of energy technologies to inform policy decisions increasingly relies on expert elicitation. Knowledge about how elicitation design factors impact the probabilistic estimates emerging from these studies is, however, scarce. We focus on nuclear power, a large-scale low-carbon power option, for which future cost estimates are important for the design of energy policies and climate change mitigation efforts. We use data from three elicitations in the USA and in Europe and assess the role of government research, development, and demonstration (RD&D) investments on expected nuclear costs in 2030. We show that controlling for expert, technology, and design characteristics increases experts' implied ...
Probabilistic estimates of the cost and performance of future nuclear energy systems under different...
In this paper we standardize, compare, and aggregate results from thirteen surveys of technology exp...
In this study we analyze the impact of a radical change in nuclear electricity costs on the optimal ...
Characterization of the anticipated performance of energy technologies to inform policy decisions in...
Characterizing the anticipated performance of energy technologies to inform policy decisions increas...
<p><strong>Figure 2.</strong> RD&D and technology cost with and without observable expert, technolog...
<p><b>Table 3.</b> Estimates of effects on variation in nuclear costs. <em>Y</em>...
<p><strong>Figure 1.</strong> Elicitation results for large-scale Gen. III/III+ reactor systems for ...
<p><b>Table 2.</b> Estimates of expert's elicited 50th percentile of overnight ca...
Probabilistic estimates of the cost and performance of future nuclear energy systems under different...
Expert elicitations are frequently used to characterize future technology outcomes. However their us...
Expert elicitations are now frequently used to characterize uncertain future technology out-comes. H...
Expert elicitations of future energy technology costs can improve energy policy design by explicitly...
Expert elicitations of future energy technology costs can improve energy policy design by explicitly...
Expert elicitation is a process for eliciting subjective probability distributions from experts abou...
Probabilistic estimates of the cost and performance of future nuclear energy systems under different...
In this paper we standardize, compare, and aggregate results from thirteen surveys of technology exp...
In this study we analyze the impact of a radical change in nuclear electricity costs on the optimal ...
Characterization of the anticipated performance of energy technologies to inform policy decisions in...
Characterizing the anticipated performance of energy technologies to inform policy decisions increas...
<p><strong>Figure 2.</strong> RD&D and technology cost with and without observable expert, technolog...
<p><b>Table 3.</b> Estimates of effects on variation in nuclear costs. <em>Y</em>...
<p><strong>Figure 1.</strong> Elicitation results for large-scale Gen. III/III+ reactor systems for ...
<p><b>Table 2.</b> Estimates of expert's elicited 50th percentile of overnight ca...
Probabilistic estimates of the cost and performance of future nuclear energy systems under different...
Expert elicitations are frequently used to characterize future technology outcomes. However their us...
Expert elicitations are now frequently used to characterize uncertain future technology out-comes. H...
Expert elicitations of future energy technology costs can improve energy policy design by explicitly...
Expert elicitations of future energy technology costs can improve energy policy design by explicitly...
Expert elicitation is a process for eliciting subjective probability distributions from experts abou...
Probabilistic estimates of the cost and performance of future nuclear energy systems under different...
In this paper we standardize, compare, and aggregate results from thirteen surveys of technology exp...
In this study we analyze the impact of a radical change in nuclear electricity costs on the optimal ...