Power Systems Engineer in Leeds
Power Systems Engineer

Power Systems Engineer in Leeds

Leeds Part-Time 30000 - 40000 ÂŁ / year (est.) Home office (partial)
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At a Glance

  • Tasks: Join us to define power feasibility and enhance grid intelligence for energy infrastructure.
  • Company: Nyxium, a cutting-edge deep tech company in London.
  • Benefits: Earn $150 per hour while working part-time with flexible hours.
  • Other info: Collaborate in a dynamic environment with opportunities for innovation and growth.
  • Why this job: Make a real impact on energy infrastructure and shape the future of power systems.
  • Qualifications: 7+ years in grid planning and direct experience with large industrial loads required.

The predicted salary is between 30000 - 40000 ÂŁ per year.

Consultant – Transmission Planning & Interconnection Strategy

Compensation: $150 per hour

Objective: Encode power feasibility, timeline, and risk into Nyxium’s decision engine.

About Nyxium: Nyxium is a London-based deep tech company backed by top-tier investors, building an infrastructure intelligence platform for siting and deployability decisions across data centers and energy infrastructure. We are seeking a Senior Power Systems Consultant to strengthen our grid access predictive capability, perform technical modeling, and elevate our grid intelligence beyond basic GIS mapping. The work will be conducted over six weeks, with clear deadlines and deliverables to ensure focus and impact within Nyxium’s ecosystem.

Must-Have:

  • 7+ years in utility / TSO / grid planning and operation
  • Direct experience with data center or large industrial loads (≥20 MW)
  • Hands-on with:
  • Interconnection process (queues, studies, upgrades, capacity extension)
  • Substations / transmission levels (HV/MV)
  • Geography: US or Europe (ideally both exposure)
  • Expectation:

    Define a rule-based system that enables Nyxium to reliably determine whether a site can obtain power, on what timeline, and what constraints may prevent it. The consultant will define the rules once, and Nyxium will apply them automatically across thousands of sites using geospatial data and scoring logic.

    Scope of Work:

    Grid interconnection Feasibility proxies (Week 1):

    You will define indicators and heuristics for grid interconnection that Nyxium can compute as proxies for interconnection feasibility. The work will begin with data centers, and the methodology will be expanded in week 4 to additional markets, including battery energy storage and renewables. These proxies will be used to evaluate whether a site can be connected to the grid. They must include indicators of what makes a site power-viable versus non-viable, integrating key constraints such as:

    • substation and transmission access proximity
    • generation and load density
    • voltage level
    • existing and historical interconnection queue

    These indicators and heuristic rules will be used to construct a power readiness score, with components that reflect structurally favorable or unfavorable conditions for power supply or grid connection at specific sites, such as indicative spare capacity. They should also propose hard no-go rules that depend on the asset class, for example, “> X km from ≥132 kV → NO for ≥50 MW data centers,” as well as upgrade classes (minor works versus transmission upgrades required and/or new substation build-out). In addition, they should specify, where appropriate, the required inputs Nyxium must collect.

    Timeline Model (Week 2):

    On week 2, you will expand upon the first week’s methodology to translate real-world grid behavior into usable timelines. You will define:

    • Time-to-power classes for each site (e.g. T1: 0–2 yrs, T2: 2–4 yrs, T3: 4–7 yrs)
    • What conditions lead to each timeline
    • Typical envisioned upgrade pathways (e.g. transmission expansion vs new substation) and associate costs

    With this work, we should be able to produce a structured mapping from site characteristics to timeline estimates. The mapping rules (if/then) may be based on factors such as voltage level, region (US/EU), upgrade class, load density, renewable and data center density, and congestion proxies. An estimate of the confidence associated with each proxy and approach must also be provided (e.g., high / medium / low), depending on data caveats and other well-justified dimensions.

    Red Flags & False Positives (Week 3):

    By week 3, the methodologies should be safeguarded against hidden blockers. Based on the proxy models developed, critical risk patterns and common failure cases must be well documented. You will define:

    • Indicators and heuristics that provide early signals such as “site appears viable but cannot realistically secure capacity,” or “upgrade requirements will delay the project beyond viability.”
    • A list of red flags and decision rules to detect “looks good but will fail” patterns (e.g., “near substation but no spare capacity typical in the region”), along with associated data caveats.
    • A set of systematic viability checks to be performed before recommending a site.

    Battery Energy Storage System and Renewable energy Variants (Week 4):

    In week 4, the models will be reused and expanded to cover battery energy storage systems and renewable energy assets. Indicators and heuristics for the co-location of data centers with these assets will also be developed. The outputs for this week will be:

    • Novel adjusted weights for:
    • Grid access
    • Land constraint / cooling
  • Additional flags:
    • interconnection value zones (e.g., high-density of negative prices, curtailment)
    • co-location viability with data centers

    Validation (Week 5):

    You will review real site outputs from Nyxium and answer: Would you proceed with this site? What is missing or incorrect? What would block this project in reality? You will receive feedback that directly improves the model, validate 15–20 real sites, and, for each, provide a score, upgrade and timeline classifications, an explanation of the decision (e.g., would you proceed? — Yes/No/Conditional, with justification), and a discrepancy report (for sites deemed infeasible, explain what could make them viable, where appropriate).

    Integration Requirements:

    Consultant must provide:

    • Rule tables (clear thresholds)
    • Weightings (e.g., substation proximity = 30%, voltage = 30%, etc.)
    • Decision tree (if/then logic)
    • Examples (good vs bad sites)

    What success looks like:

    By the end of week 6, the Power Readiness Score and timeline classes must be live in the product. Greater than 80% agreement between consultant judgment and the model across 10 validation sites must be demonstrated, and the decision output must be enabled as: Deployable / Conditional / Not Deployable (power-driven). The methodology and code must be clearly documented, transparent, and reproducible, with a Python-based approach preferred and aligned with industry best practices.

    Power Systems Engineer in Leeds employer: Nyxium

    Nyxium is an exceptional employer, offering a unique opportunity to work at the forefront of deep tech innovation in London. With a strong focus on employee growth and collaboration, we foster a dynamic work culture that values creativity and expertise, providing consultants with the chance to make a significant impact on energy infrastructure. Our commitment to flexible working arrangements and competitive compensation ensures that you can thrive both professionally and personally while contributing to meaningful projects in the energy sector.
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    Contact Detail:

    Nyxium Recruiting Team

    StudySmarter Expert Advice 🤫

    We think this is how you could land Power Systems Engineer in Leeds

    ✨Tip Number 1

    Network, network, network! Get out there and connect with professionals in the power systems field. Attend industry events, webinars, or even local meetups. You never know who might have a lead on your next opportunity!

    ✨Tip Number 2

    Don’t underestimate the power of informational interviews. Reach out to people working at companies you admire, like Nyxium, and ask for a chat. It’s a great way to learn more about the company culture and potentially get your foot in the door.

    ✨Tip Number 3

    Showcase your expertise! Create a portfolio or a blog where you can share insights on power systems, interconnection strategies, or any relevant projects you've worked on. This not only demonstrates your knowledge but also makes you memorable to potential employers.

    ✨Tip Number 4

    Apply through our website! We love seeing candidates who take the initiative to apply directly. Make sure to tailor your application to highlight your experience with grid planning and interconnection processes, as that’s what we’re looking for!

    We think you need these skills to ace Power Systems Engineer in Leeds

    Power Systems Engineering
    Grid Planning and Operation
    Interconnection Process
    Data Centre Load Analysis
    Technical Modelling
    Geospatial Data Analysis
    Feasibility Proxies Development
    Timeline Modelling
    Risk Assessment
    Heuristic Rule Definition
    Decision Tree Logic
    Python Programming
    Documentation Skills
    Analytical Thinking
    Communication Skills

    Some tips for your application 🫡

    Tailor Your Application: Make sure to customise your application for the Power Systems Engineer role. Highlight your relevant experience in utility/grid planning and any direct work with data centres or large industrial loads. We want to see how your skills align with what we're looking for!

    Showcase Your Expertise: Don’t hold back on showcasing your hands-on experience with interconnection processes and substations. Use specific examples from your past work to demonstrate your knowledge and how it can benefit Nyxium. We love seeing real-world applications of your skills!

    Be Clear and Concise: When writing your application, keep it clear and to the point. Avoid jargon unless it's necessary, and make sure your key points stand out. We appreciate straightforward communication that gets right to the heart of your qualifications.

    Apply Through Our Website: We encourage you to apply directly through our website. It’s the best way to ensure your application gets into the right hands. Plus, it shows us you're keen on joining our team at Nyxium!

    How to prepare for a job interview at Nyxium

    ✨Know Your Stuff

    Make sure you brush up on your knowledge of power systems, especially around grid planning and interconnection processes. Familiarise yourself with the specifics of HV/MV substations and how they relate to data centres. Being able to discuss these topics confidently will show that you're the right fit for the role.

    ✨Prepare Real-World Examples

    Think of specific projects or experiences where you've tackled similar challenges in utility or TSO operations. Be ready to share how you defined feasibility indicators or managed timelines for large industrial loads. This will help demonstrate your hands-on experience and problem-solving skills.

    ✨Understand Nyxium's Vision

    Dive into Nyxium’s mission and their infrastructure intelligence platform. Knowing how your role as a Power Systems Consultant fits into their goals will not only impress the interviewers but also help you tailor your responses to align with their objectives.

    ✨Ask Insightful Questions

    Prepare thoughtful questions about the methodologies Nyxium uses or the challenges they face in grid access predictive capability. This shows your genuine interest in the role and helps you gauge if the company culture and expectations align with your career goals.

    Power Systems Engineer in Leeds
    Nyxium
    Location: Leeds

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