Charlie Wilson
#185,866
Most Influential Person Now
Researcher, ORCID id # 0000-0001-8164-3566
Charlie Wilson's AcademicInfluence.com Rankings
Charlie Wilsoncomputer-science Degrees
Computer Science
#12037
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#12819
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Computational Linguistics
#3031
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#3066
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Machine Learning
#5517
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#5591
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Artificial Intelligence
#5959
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#6050
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Computer Science
Charlie Wilson's Degrees
- PhD Computer Science Stanford University
- Masters Computer Science University of California, Berkeley
- Bachelors Computer Science University of California, Berkeley
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Why Is Charlie Wilson Influential?
(Suggest an Edit or Addition)Charlie Wilson's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- The challenge to keep global warming below 2 °C (2013) (895)
- A low energy demand scenario for meeting the 1.5 °C target and sustainable development goals without negative emission technologies (2018) (623)
- Models of Decision Making and Residential Energy Use (2007) (582)
- Drivers of declining CO2 emissions in 18 developed economies (2019) (232)
- The Energy Technology Innovation System (2012) (231)
- An equivalence factor between CO2 avoidedemissions and sequestration – description andapplications in forestry (2000) (177)
- Energy Pathways for Sustainable Development (2012) (151)
- Marginalization of end-use technologies in energy innovation for climate protection (2012) (148)
- Apples, oranges, and consistent comparisons of the temporal dynamics of energy transitions (2016) (139)
- Future capacity growth of energy technologies: are scenarios consistent with historical evidence? (2013) (130)
- Lessons from the history of technological change for clean energy scenarios and policies (2011) (105)
- Chapter 24: Policies for the Energy Technology Innovation System (ETIS) (2012) (96)
- Chapter 17 - Energy Pathways for Sustainable Development (2012) (90)
- Granular technologies to accelerate decarbonization (2020) (86)
- Measuring the duration of formative phases for energy technologies (2016) (77)
- Rural Livelihoods and Carbon Management (2000) (75)
- Demand-side approaches for limiting global warming to 1.5 °C (2018) (70)
- Energy technology innovation : learning from historical successes and failures (2013) (66)
- Trends in investments in global energy research, development, and demonstration (2011) (59)
- Meta-analysis of Unit and Industry Level Scaling Dynamics in Energy Technologies and Climate Change Mitigation Scenarios (2009) (54)
- Energy modellers should explore extremes more systematically in scenarios (2020) (51)
- Comparing future patterns of energy system change in 2 °C scenarios with historically observed rates of change (2015) (49)
- Structured decision-making to link climate change and sustainable development (2007) (41)
- Climate mitigation scenarios with persistent COVID-19-related energy demand changes (2021) (35)
- Evaluating process-based integrated assessment models of climate change mitigation (2017) (35)
- Integrating Backcasting & Decision Analytic Approaches to Policy Formulation: A Conceptual Framework (2006) (23)
- Reviewing the scope and thematic focus of 100 000 publications on energy consumption, services and social aspects of climate change: a big data approach to demand-side mitigation (2021) (23)
- Comparing future patterns of energy system change in 2 °C scenarios to expert projections (2018) (22)
- Financial mechanisms for sustainable forestry (1999) (21)
- Advancing energy and well-being research (2021) (15)
- Analysing future change in the EU's energy innovation system (2019) (15)
- Lessons from the history of technology and global change for the emerging clean technology cluster (2011) (13)
- Market‐Based Incentives and Private Ownership of Wildlife to Remedy Shortfalls in Government Funding for Conservation (2017) (12)
- Deep decarbonisation towards 1.5°C-2°C stabilisation (2016) (11)
- Energy Technology Innovation: Historical Case Studies of Energy Technology Innovation (2013) (10)
- Analysing energy innovation portfolios from a systemic perspective (2019) (9)
- Energy Transition Pathways to a low-carbon Europe in 2050: the degree of cooperation and the level of decentralization (2020) (9)
- SOCIAL INFLUENCE IN THE ADOPTION OF DIGITAL CONSUMER INNOVATIONS FOR CLIMATE CHANGE (2021) (8)
- Energy Technology Innovation (2013) (7)
- Historical Diffusion and Growth of Energy Technologies (2014) (7)
- Report on methods for demographic projections at multiple levels of aggregation (2007) (7)
- Reducing the UK’s Carbon Footprint: Household Renovation Decisions and the results of a UK-Wide Survey (2014) (7)
- Social norms and policies to promote energy efficiency in the home (2008) (6)
- Global R&D, Market Formation, and Diffusion Investments in Energy Technology Innovation (2014) (6)
- Aligning consumer decisions and sustainability objectives: Energy efficiency in the residential retrofit market (2011) (6)
- Towards integrated modeling of the long-term impacts of oil spills (2021) (6)
- A low energy demand scenario for meeting the 1.5 °C target and sustainable development goals without negative emission technologies (2018) (6)
- Improving efficiency in buildings: conventional and alternative approaches (2015) (6)
- A comparative analysis of annual market investments in energy supply and end-use technologies (2011) (6)
- Input, Output and Outcome Metrics for Assessing Energy Technology Innovation (2014) (6)
- Translating Global Integrated Assessment Model Output into Lifestyle Change Pathways at the Country and Household Level (2022) (5)
- Chapter 22 Policies for Energy System Transformations : Objectives and Instruments 1553 Executive Summary (4)
- A Comparative Assessment of Wind Turbine Innovation and Diffusion Policies. Historical Case Studies of Energy Technology Innovation (2012) (4)
- Improving efficiency in buildings (2015) (3)
- Digitalization and the Anthropocene (2022) (3)
- Policies for energy technology innovation (2014) (3)
- Growth dynamics of energy technologies: using historical patterns to validate low carbon scenarios (2010) (3)
- What developers think about district energy: A mental models approach (2006) (3)
- Rural livelihoods and carbon management - Final technical report (2000) (2)
- COVID-19 impacts on energy demand can help reduce long-term mitigation challenge (2021) (2)
- How Are Future Energy Technology Costs Estimated? Can We Do Better? (2021) (2)
- Interaction of consumer preferences and climate policies in the global transition to low-carbon vehicles (2018) (2)
- Formative Phase Lengths for a Sample of Energy Technologies Using a Diverse Set of Indicators (2014) (2)
- Technical, economic, social, and cultural perspectives on energy demand (2015) (2)
- Historical characteristics and scenario analysis of technological change in the energy system (2015) (2)
- Technology-Specific Analysis of Energy Innovation Systems (2018) (2)
- Lessons learnt from the Energy Technology Innovation System (2014) (1)
- Demand-side approaches for limiting global warming to 1.5 °C (2018) (1)
- Energy modellers should explore extremes more systematically in scenarios (2020) (1)
- Trials of market based incentives to conserve wildlife (2020) (1)
- Energy Technology Innovation: The Energy Technology Innovation System (2013) (1)
- Book Review of ‘Factor Five: Transforming the Global Economy through 80% Improvements in Resource Productivity’ (2010) (1)
- Consumer Uptake of Digital Low-Carbon Innovations (2022) (1)
- Transformations towards zero-carbon development pathways (2019) (1)
- Why homeowners decide to renovate: the influence of six conditions of domestic life (2013) (1)
- Granular Technologies to Accelerate (2020) (1)
- Multilevel (ML-ICLV) & Single Level Integrated Discrete Choice and Latent Variable (ICLV) Models Using Alternative Latent Structures' Conceptualizations (2013) (0)
- Energy efficient home renovations are not financial investments (2008) (0)
- The discontinuance of low carbon digital products and services (2022) (0)
- Near-term actions for transforming energy-service efficiency to limit global warming to 1.5°C (2019) (0)
- Formative Phases of Energy Technologies: Definitions, Indicators, Lengths and Comparative Analysis (2013) (0)
- A comparative analysis of scaling dynamics in 20th century energy technologies (2011) (0)
- Linking climate change adaptation, mitigation and sustainability via structured decision-making (2006) (0)
- Supply chain contributions to household energy efficiency (2009) (0)
- Impacts of COVID-19 induced energy demand changes on emissions and mitigation challenges (2021) (0)
- Bottom-up estimation of annual investment costs in end use energy technologies (2010) (0)
- Review of: Planning for a Better Urban Living Environment in Asia, by Gar-On Yeh & Mee Kam Ng (eds) (2002) (0)
- SOCIAL INFLUENCE IN THE ADOPTION OF DIGITAL CONSUMER INNOVATIONS TO MITIGATE CLIMATE CHANGE (2021) (0)
- Technology as the Art of the Science of the Possible (2012) (0)
- Book Review of ‘Environmental Policy and Household Behaviour’ (2011) (0)
- Steering social impact outcomes in extractive resource regions: A comparative case study of private meta-governance in Australia and the United States (2017) (0)
- Local conditions for the decentralization of energy systems (2022) (0)
- Policy Approaches for Improving Household Energy Efficiency (2011) (0)
- The potential contribution of disruptive low-carbon innovations to 1.5 °C climate mitigation (2018) (0)
- Increasing Access to Food: A Comprehensive Report on Food Supply Options (2019) (0)
- Energy Technology Innovation: Acronyms (2013) (0)
- Consumer Sustainability Decisions: Conceptualizing Scientific Progress Regarding Home Energy Renovation Decisions (2013) (0)
- Rejection of Innovations: The Discontinuance of Low Carbon Digital Products and Services (2022) (0)
- A comparative analysis of scaling dynamics in energy technologies (2010) (0)
- Corrigendum to “Analysing energy innovation portfolios from a systemic perspective” [Energy Policy 134 (2019) 110942] (2020) (0)
- Report for BEIS on Disruptive Low Carbon Innovations (2021) (0)
- 1 Comparing future patterns of energy system change in 2 ° C 1 scenarios with historically observed rates of change 2 3 (2015) (0)
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