Principal Research Scientist - Risk

Neara

$150K — $180K *
Energy & Utilities
5 - 7 years of experience
Job Overview by Ladders

Qualifications

  • PhD in statistics, applied mathematics, physics, computer science, operations research, engineering, or equivalent research experience.
  • Proven ability to lead and define substantial research programs.
  • Experience in building and managing technical research teams.
  • Expertise in probabilistic modeling and uncertainty quantification.
  • Background in operational system modeling, including insurance, climate hazards, and reliability engineering.

Responsibilities

  • Lead Neara's applied research in infrastructure risk and resilience.
  • Establish rigorous standards for modeling and decision-making.
  • Develop predictive models for damage, outages, and wildfire risks.
  • Design models quantifying economic consequences of resilience investments.
  • Assess the value of data and inspections through empirical and analytical methods.

Benefits

  • Competitive compensation with significant equity components.
  • Opportunity to work on a unique 3D physics-enabled research platform.
  • Autonomy in defining and establishing the research modeling function.
  • Influence on Neara's product roadmap and customer advisory services.
  • Flexible work hours and arrangements for optimal performance.
Full Job Description
Principal Research Scientist, Risk

We are seeking an experienced research scientist to lead Neara's internal research group in topics of system resilience, reliability, and policy. In this role, you will define a research agenda, develop rigorous statistical and decision models, and translate findings into tools and recommendations for utilities managing billions of dollars in capital expenditure.

Neara provides network-scale structural, loading, and contextual data across complete overhead electrical systems. As the Principal Research Scientist, Risk, you will use this information to build generalizable models of asset failure and determine the value of additional data, inspections, and interventions.

What You Will Do:
  • Build and lead Neara's applied research function for infrastructure risk and resilience.
  • Direct a team of researchers and establish rigorous standards for risk modeling, uncertainty quantification, and decision-making.
  • Develop predictive models for equipment damage, vegetation failure, outage likelihood and duration, and wildfire-related risk.
  • Design decision models that quantify the operational and economic consequences of resilience and reliability investments, including asset replacement, vegetation management, and network redesign.
  • Quantify the value of data including pole loading analysis, visual inspections, and the installation of new devices and remote sensing capabilities, both empirically and by analytical methods.

Who You Are:
  • A PhD in statistics, applied mathematics, physics, computer science, operations research, engineering, or a comparable record of original research and applied technical work.
  • Evidence of having independently defined and led a substantial research program as a group leader or industry principal, demonstrated through influential publications, patents, or production systems.
  • Experienced in building technical teams and setting research direction.
  • Extensive experience in probabilistic modeling, uncertainty quantification, model validation, scientific computing capabilities and decision-making under incomplete information.
  • Substantial experience modeling operational systems. Particularly relevant topics include insurance or catastrophe modeling; weather prediction and climate hazard; outages in power systems; and reliability engineering.

What We Offer:
  • A highly competitive compensation package including a significant equity component to ensure you directly benefit from Neara's sustained success and impact on critical infrastructure.
  • The opportunity to work on a cutting-edge, 3D physics-enabled platform used to anticipate the impact of extreme events, reduce infrastructure failure, and direct investment. Access to unique network-scale utility data unavailable in other industrial research settings.
  • Freedom to define and build Neara's research modeling function, establishing the agenda, identifying preferred methods and working on novel under-specified problems.
  • A central role in shaping Neara's long-term product roadmap, analytical standards and customer advisory services.
  • Flexible hours and working arrangements designed to help you do your best work from where you work best.

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