Asmild, M., Paradi, J. C., Reese, D. N., & Tam, F. (2007). Measuring overall efficiency and effectiveness using DEA. European Journal of Operational Research, 178(1), 305-321.
Bi, G. B., Song, W., Zhou, P., & Liang, L. (2014). Does environmental regulation affect energy efficiency in China's thermal power generation? Empirical evidence from a slacks-based DEA model. Energy Policy, 66, 537-546.
- Byrnes, P., & Freeman, M. (1999). Using DEA measures of efficiency and effectiveness in contractor performance fund allocation. Public Productivity & Management Review, 23(2), 210-224.
Paper not yet in RePEc: Add citation now
Caves, D. W., Christensen, L. R., & Diewert, W. E. (1982). The economic theory of index numbers and the measurement of input, output, and productivity. Econometrica, 50(6), 1393–1414.
Cherchye, L., & Post, T. (2003). Methodological advances in DEA: A survey and an application for the Dutch electricity sector. Statistica Neerlandica, 57(4), 410-438.
Cook, W. D., & Zhu, J. (2007). Within-group common weights in DEA: an analysis of power plant efficiency. European Journal of Operational Research, 178(1), 207-216.
Cook, W. D., & Zhu, J. (Eds.). (2014). Data envelopment analysis: A handbook of modeling internal structure and network (Vol. 208). Springer.
- Cook, W. D., Du, J., & Zhu, J. (2015). Units invariant DEA when weight restrictions are present: ecological performance of US electricity industry. Annals of Operations Research, doi: 10.1007/s10479-015-1881-x.
Paper not yet in RePEc: Add citation now
Cooper, W. W., Seiford, L. M., & Zhu, J. (2011). Handbook on data envelopment analysis (Vol. 164). Springer Science & Business Media.
- Färe, R., Grosskopf, S., Lindgren, B., & Roos, P. (1992). Productivity changes in Swedish pharmacies 1980–1989: A non-parametric Malmquist approach. Journal of Productivity Analysis, 3(1–2), 85–101.
Paper not yet in RePEc: Add citation now
- Färe, R., Grosskopf, S., Norris, M., & Zhang, Z. (1994). Productivity growth technical progress, and efficiency change in industrialized countries. American Economic Review, 84(1), 66–83.
Paper not yet in RePEc: Add citation now
Fallahi, A., Ebrahimi, R., & Ghaderi, S. F. (2011). Measuring efficiency and productivity change in power electric generation management companies by using data envelopment analysis: A case study. Energy, 36(11), 6398-6405.
- Fielding, G. J., Babitsky, T. T., & Brenner, M. E. (1985). Performance evaluation for bus transit. Transportation Research Part A: General, 19(1), 73-82.
Paper not yet in RePEc: Add citation now
- Golany, B., Phillips, F. Y., & Rousseau, J. J. (1993). Models for improved effectiveness based on DEA efficiency results. IIE transactions, 25(6), 2-10.
Paper not yet in RePEc: Add citation now
Lam, P. L., & Shiu, A. (2001). A data envelopment analysis of the efficiency of China’s thermal power generation. Utilities Policy, 10(2), 75-83.
- Lam, P. L., & Shiu, A. (2004). Efficiency and productivity of China's thermal power generation. Review of Industrial Organization, 24(1), 73-93.
Paper not yet in RePEc: Add citation now
- Lee, C.-Y. (2015). Distinguishing Operational Performance in Power Production: A New Measure of Effectiveness by DEA. IEEE Transactions on Power Systems, 30(6), 3160-3167.
Paper not yet in RePEc: Add citation now
Lee, C.-Y., & Johnson, A. L. (2014). Proactive data envelopment analysis: Effective production and capacity expansion in stochastic environments. European Journal of Operational Research, 232(3), 537–548.
Lee, C.-Y., & Johnson, A. L. (2015). Effective production: measuring of the sales effect using data envelopment analysis. Annals of Operations Research, 235(1), 453-486.
- Lo, F. Y., Chien, C. F., & Lin, J. T. (2001). A DEA study to evaluate the relative efficiency and investigate the district reorganization of the Taiwan power company. IEEE Transactions on Power Systems, 16(1), 170-178.
Paper not yet in RePEc: Add citation now
Park, S. U., & Lesourd, J. B. (2000). The efficiency of conventional fuel power plants in South Korea: A comparison of parametric and non-parametric approaches. International Journal of Production Economics, 63(1), 59-67.
- SCC (2011). State Council of the People's Republic of China: Plan for Energy Conservation and Emissions Reduction in the 12th Five Year Plan Period.
Paper not yet in RePEc: Add citation now
- SCC. (2007). State Council of the People's Republic of China: Comprehensive Work Plan for Energy Conservation and Emissions Reduction.
Paper not yet in RePEc: Add citation now
- SERC. (2011). State electricity regulatory commission of the People's Republic of China: Energy and emission reduction conditions of the power industry in 2010 and during the 11th Five Year Plan period.
Paper not yet in RePEc: Add citation now
Sueyoshi, T., & Goto, M. (2011). DEA approach for unified efficiency measurement: assessment of Japanese fossil fuel power generation. Energy Economics, 33(2), 292-303.
Sueyoshi, T., & Goto, M. (2012). Efficiency-based rank assessment for electric power industry: a combined use of data envelopment analysis (DEA) and DEA-discriminant analysis (DA). Energy Economics, 34(3), 634-644.
Vaninsky, A. (2006). Efficiency of electric power generation in the United States: analysis and forecast based on data envelopment analysis. Energy Economics, 28(3), 326-338.
Wang, K., & Wei, Y. M. (2016). Sources of energy productivity change in China during 1997– 2012: A decomposition analysis based on the Luenberger productivity indicator. Energy Economics, 54, 50-59.
Wang, K., Huang, W., Wu, J., & Liu, Y. N. (2014). Efficiency measures of the Chinese commercial banking system using an additive two-stage DEA. Omega, 44, 5-20.
Wang, K., Wei, Y. M., & Zhang, X. (2012). A comparative analysis of China’s regional energy and emission performance: Which is the better way to deal with undesirable outputs?. Energy Policy, 46, 574-584.
Wang, K., Zhang, X., Wei, Y. M., & Yu, S. (2013). Regional allocation of CO 2 emissions allowance over provinces in China by 2020. Energy Policy, 54, 214-229.
- Wu, H., Du, S., Liang, L., & Zhou, Y. (2013). A DEA-based approach for fair reduction and reallocation of emission permits. Mathematical and Computer Modelling, 58(5), 1095-1101.
Paper not yet in RePEc: Add citation now
- Xie, B. C., Fan, Y., & Qu, Q. Q. (2012). Does generation form influence environmental efficiency performance? An analysis of China’s power system. Applied Energy, 96, 261-271.
Paper not yet in RePEc: Add citation now
Yang, H., & Pollitt, M. (2009). Incorporating both undesirable outputs and uncontrollable variables into DEA: The performance of Chinese coal-fired power plants. European Journal of Operational Research, 197(3), 1095-1105.
Yang, H., & Pollitt, M. (2010). The necessity of distinguishing weak and strong disposability among undesirable outputs in DEA: environmental performance of Chinese coal-fired power plants. Energy Policy, 38(8), 4440-4444.
Yu, M. M., & Lin, E. T. J. (2008). Efficiency and effectiveness in railway performance using a multi-activity network DEA model. Omega, 36(6), 1005-1017.
- Zhu, J. (Ed.). (2015). Data Envelopment Analysis: A Handbook of Models and Methods (Vol. 221). Springer.
Paper not yet in RePEc: Add citation now