Harvesting Solar Power Foments Prices in a Vicious Cycle: Breaking the Cycle with Price Mechanisms
References
- (2001) Overview of government and market driven programs for the promotion of renewable power generation. Renewable Energy 22(1–3):197–204.Crossref, Google Scholar
- (2017) Strategic investment in renewable energy sources: The effect of supply indeterminacy. Manufacturing Service Oper. Management 19(3):489–507.Link, Google Scholar
- (2022) Non-ownership business models for solar energy. Manufacturing Service Oper. Management 24(4):2048–2063.Link, Google Scholar
- (2007) Multi-criteria evaluation of residential energy supply systems. Energy Buildings 39(12):1218–1226.Crossref, Google Scholar
- (2016) Efficient feed-in-tariff policies for renewable energy technologies. Oper. Res. 64(1):52–66.Link, Google Scholar
- (2018) Solar energy and storage. Presentation in Industry Speaker Series organized by UT Dallas Energy Association, October 24, Senior Solar Consultant of Good Faith Energy, Dallas, TX.Google Scholar
- Austin Energy (2015) City of Austin performance report 2014–2015. Accessed May 23, 2020, https://services.austintexas.gov/edims/document.cfm?id=241185.Google Scholar
- (2020) Promoting solar panel investments: Feed-in-tariff vs. tax-rebate policies. Manufacturing Service Oper. Management 22(6):1148–1164.Link, Google Scholar
- (1972) Peak-load pricing under regulatory constraint. J. Political Econom. 80(4):662–679.Crossref, Google Scholar
- (2018) Community energy storage: A smart choice for the smart grid? Appl. Energy 212:489–497.Crossref, Google Scholar
- (2009) Distributed Renewable Energy Operating Impacts and Valuation Study (Arizona Public Service, Seattle).Google Scholar
- (2014) Solar valuation and the modern utility’s expansion into distributed generation. Electricity J. 27(1):18–32.Crossref, Google Scholar
- (2015) Why rooftop solar is disruptive to utilities—and the grid. Accessed March 10, 2018, http://www.govtech.com/fs/Why-Rooftop-Solar-is-Disruptive-to-Utilities––and-the-Grid.html.Google Scholar
- (2017) The private net benefits of residential solar PV: The role of electricity tariffs, tax incentives and rebates. J. Assoc. Environ. Resource Economists 4(S1):S85–S122.Google Scholar
- (2018) Do two electricity pricing wrongs make a right? Cost recovery, externalities, and efficiency. Amer. Econom. J. Econom. Policy 14(4):80–110.Crossref, Google Scholar
- (2017) Designing compensation for distributed solar generation: Is net metering ever optimal. Energy J. 38(3):1–32.Crossref, Google Scholar
- (2018) Sunrun in 2017: Net metering in Nevada (A). Case study. Stanford Business School Case Study No. 93A, Stanford University, Stanford, CA.Google Scholar
- (2018) Unpacking all the bad news about renewable energy & energy storage. Clean Technica (April 30), https://cleantechnica.com/2018/04/30/unpacking-all-the-bad-news-about-renewable-energy-energy-storage/.Google Scholar
- (2017) The effect of electricity prices on residential solar photovoltaic panel adoption. Preprint, submitted July 6, https://ssrn.com/abstract=2918807.Google Scholar
- (2015) When does regulation distort costs? Lessons from fuel procurement in US electricity generation. Amer. Econom. Rev. 105(1):411–444.Crossref, Google Scholar
- Civicsolar (2018) What is the panelboard sizing 120% rule? Accessed August 14, 2019, https://www.civicsolar.com/support/installer/articles/what-panelboard-sizing-120-rule.Google Scholar
- (2014) ‘Electric utilities’ ‘death spiral’: Hyperbole or reality? Electricity J. 27(10):7–26.Crossref, Google Scholar
- (2004) Demand shifts and imperfect competition. Economics Series Working Paper No. 188, University of Oxford, Oxford, UK.Google Scholar
- (2020) A new approach to the rational expectations equilibrium: Existence, optimality and incentive compatibility. Ann. Finance 16:1–61.Crossref, Google Scholar
- (2017) The long-run elasticity of electricity demand: Evidence from municipal electric aggregation. Amer. Econom. J. Appl. Econom. 12(1):86–114.Crossref, Google Scholar
- Edison Electric Institute (2017) Rate case summary. Quarterly report of the U.S. investor-owned-electric utility industry. Accessed May 27, 2019, https://www.eei.org/-/media/Project/EEI/Documents/Issues-and-Policy/Finance-And-Tax/Financial_Review/FinancialReview_2017.pdf?la=en&hash=06280E116A2A24C90F435A3F6F45 3120096260BB.Google Scholar
- EIA (2017) Electric sales, revenue, and average price. “Residential sector, T6.” Accessed October 12, 2021, https://www.eia.gov/electricity/sales\_revenue\_price.Google Scholar
- EIA (2018) U.S. monthly residential electricity price. Accessed August 20, 2020, https://www.eia.gov/outlooks/steo/report/electricity.php.Google Scholar
- EIA (2020) Electricity explained. Accessed September 27, 2021, https://www.eia.gov/energyexplained/electricity/electricity-in-the-us.php.Google Scholar
- (2017) How much does solar cost in Austin, Texas? Accessed August 20, 2020, https://news.energysage.com/how-much-does-a-solar-energy-system-cost-in-austin-texas/.Google Scholar
- (2014) The life and death of the utility death spiral. Electricity J. 27(6):9–16.Crossref, Google Scholar
- (2017) The impact of retail electricity tariff evolution on solar photovoltaic deployment. Electricity J. 30(9):22–28.Crossref, Google Scholar
- (2015) Markets, governments and renewable electricity. Donovan CW, ed. Renewable Energy Finance: Powering the Future (Imperial College Press, London), 105–129.Crossref, Google Scholar
- (2012) Project Finance for Renewable Energy and Clean Technology Projects (Wilson, Sonsini, Goodrich and Rosati, Palo Alto, CA).Google Scholar
- (2015) Energy monopoly stifles innovation in Austin. Accessed September 12, 2020, https://www.uschamberfoundation.org/blog/post/energy-monopoly-stifles-innovation-austin/42603.Google Scholar
- (2009) Lecture notes for economics. Accessed March 8, 2019, http://faculty.haas.berkeley.edu/hermalin/lecturenotes201b_v5.pdf.Google Scholar
- (2015) Capacity investment in renewable energy technology with supply intermittency. Manufacturing Service Oper. Management 17(4):480–494.Link, Google Scholar
- (2013) A Regulator’s Guidebook: Calculating the Benefits and Costs of Distributed Solar Generation (Interstate Renewable Energy Council, Latham, NY).Google Scholar
- (2015) Leaving the grid. Energy Policy 82:207–221.Crossref, Google Scholar
- (2016) Electricity regulation in the US: A guide. Regulatory Assistance Project. Accessed June 7, 2019, https://www.raponline.org.Google Scholar
- (2013) New utility business models: Utility and regulatory models for the modern era. Electricity J. 26(8):35–53.Crossref, Google Scholar
- Letsgosolar (2018) Solar energy grants, loans and mortgages. Accessed July 23, 2019, https://www.letsgosolar.com/solar-panels/financing/grants.Google Scholar
- (2014) Analysis of product rollover strategies in the presence of strategic customers. Management Sci. 60(4):1033–1056.Link, Google Scholar
- (2011) Consumer choice model for forecasting demand and designing incentives for solar technology. MIT Sloan working paper, MIT, Cambridge, MA.Google Scholar
- (2021) Report shows strong solar + storage market growth and plenty of room for improvement. PV Mag. (August 13), https://pv-magazine-usa.com/2021/08/13/.Google Scholar
- (2012) Solairedirect: The quest for solar energy. INSEAD Case Study No. 612-027-1, INSEAD, France.Google Scholar
- OhmHome (2017) 2016 Solar penetration by state. Accessed May 23, 2020, https://www.ohmhomenow.com/2016-solar-penetration-state.Google Scholar
- (2017) Game over: Regulatory capture, negotiation, and utility rate cases in an age of disruption. Univ. San Francisco Law Rev. 52:75–114.Google Scholar
- (2018) Strategic forward trading and technology. Preprint, submitted February 29, https://papers.ssrn.com/sol3/papers.cfm?abstract_id=2738703.Google Scholar
- (1988) What can regulators regulate? The case of electric utility rates of return. Managerial Decision Econom. 9(2):145–152.Crossref, Google Scholar
- (2016) The solar net metering controversy. Forbes (March 16), https://www.forbes.com/sites/uhenergy/2016/03/16/the-solar-net-metering-controversy-who-pays-for-energy-subsidies/?sh=7cb2e77e6fd2.Google Scholar
- SEIA (2018) Net metering. https://www.seia.org/initiatives/net-metering.Google Scholar
- (2018) If solar and wind are so cheap, why are they making electricity so expensive? Forbes (April 23), https://www.forbes.com/sites/michaelshellenberger/2018/04/23/if-solar-and-wind-are-so-cheap-why-are-they-making-electricity-more-expensive/?sh=6b0383ca1dc6.Google Scholar
- (1992) Regulation and efficiency: A reappraisal of research and policies. The National Regulatory Research Institute Document No. 92-14, National Regulatory Research Institute, Washington, DC.Google Scholar
- (2008) Market Regulation (Addison-Wesley, Boston).Google Scholar
- (2015) What is a reasonable rate of return on utility infrastructure? Accessed October 12, 2020, https://blog.enerdyna-mics.com/2015/12/10/what-is-a-reasonable-rate-of-return-on-utility-infrastructure.Google Scholar
- (2022) That’s not fair: Tariff structures for electric utilities with rooftop solar. Manufacturing Service Oper. Management 24(1):40–58.Link, Google Scholar
- (2020) On the dynamics of distributed energy adoption: Equilibrium, stability, and limiting capacity. IEEE Trans. Automatic Control 65(1):102–114.Crossref, Google Scholar
- (2019) Strategic commitment to a production schedule with uncertain supply and demand: Renewable energy in day-ahead electricity markets. Management Sci. 65(2):714–734.Link, Google Scholar
- (2021) Net-metered distributed renewable energy: A peril for utilities? Management Sci. 67(11):6716–6733.Link, Google Scholar
- (2022) Socially relevant and inclusive operations management. Production Oper. Management 31(12):4379–4392.Crossref, Google Scholar
- (2021) The two hours that nearly destroyed Texas’s electric grid. Bloomberg (February 20), https://www.bloomberg.com/news/features/2021-02-20/texas-blackout-how-the-electrical-grid-failed.Google Scholar
- (1975) Peak-load pricing under regulatory constraint: A proof of inefficiency. J. Political Econom. 83(3):645–654.Crossref, Google Scholar

