Full-Time

Senior Security Systems Design Engineer

Vantage Data Centers

Vantage Data Centers

1,001-5,000 employees

Wholesale data center campuses for hyperscalers

No salary listed

London, UK + 1 more

More locations: Frankfurt, Germany

In Person

Travel across the EMEA region may be required for up to 25% of the time.

Bachelor's

Category
Electrical Engineering (1)
Required Skills
Microsoft Office
AutoCAD

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Requirements
  • A minimum of eight years of experience designing physical security solutions, with at least four years preferably in data centre or mission-critical environments.
  • A thorough understanding of physical security design concepts and relevant regulations governing the built environment.
  • The ability to coordinate security design activities with Mechanical, Electrical, Information and Communications Technology, Automation, Civil, Structural, and Architecture engineers.
  • Experience managing design through gated design processes.
  • Expertise in structured cabling, fibre optic networks, Information Technology/Internet Protocol network systems integration, access control, video surveillance, perimeter intrusion detection, intercom, and Physical Security Information Management.
  • A thorough understanding of physical security ratings and solutions, including electronic locking, walling, glazing, doors, barriers, and fencing.
  • Proficiency with Microsoft Office applications, AutoCAD, and Bluebeam for producing overlay drawings, schematics, and markups.
  • Knowledge of Building Information Modeling and Autodesk Construction Cloud processes.
  • A solid understanding of Health and Safety legislation.
  • A degree in an engineering discipline, such as Computer Science or Electronic Engineering, or a combination of education and relevant experience.
Responsibilities
  • Lead and coordinate the technical delivery of physical security design for Vantage data centres throughout the EMEA region.
  • Manage the technical security design process across multiple EMEA data centres.
  • Collaborate with external design consultants and project management teams to ensure security design solutions meet project and customer requirements.
  • Provide engineering support for site selection, new site development, and project initiation.
  • Provide engineering inputs and review early-stage planning, Campus Master-Planning, and Test-Fit Designs to assure the validity of business objectives and design assumptions for site acquisition and investment decision-making.
  • Represent Vantage Data Centres as a technical authority with hyperscale customers, investors, and other corporate stakeholders.
  • Create and evaluate high-value engineering and innovation ideas, and provide recommendations based on business-related cost-benefit analyses.
  • Engage with internal and external partners to identify and implement lessons learned and resolve recurring issues.
  • Lead technical workshops to determine project-specific requirements.
  • Review and validate consultant designs to ensure compliance and quality.
  • Act as the primary contact for technical security design queries.
  • Keep abreast of developments in physical security technologies and industry trends.
  • Provide technical guidance during tendering and bid review processes.
  • Participate in design reviews and site inspections.
  • Ensure all work complies with employer requirements, security standards, and project criteria.
  • Coordinate with consultants, integrators, manufacturers, and contractors.
  • Support project teams through planning, design, construction, commissioning, and handover phases.
  • Maintain consistent standards of technical quality, design uniformity, and operational value.
Desired Qualifications
  • Professional certification as a Physical Security Professional or Certified Protection Professional.
  • Manufacturer or platform certification in access control and video management systems, such as Lenel, Genetec, Milestone, or AMAG.
  • Health and safety or commissioning qualifications, such as NEBOSH or Information Technology Infrastructure Library.

Vantage Data Centers builds and operates large-scale wholesale data center campuses for hyperscalers, cloud providers, and large enterprises. Its core product is flexible, scalable data center space (white space) within campuses that range from 64 to 150 megawatts of power, designed to be rapidly provisioned for clients’ growth (often within six months). The company uses standardized, flexible designs to ensure predictable performance, high efficiency, and minimized downtime, while prioritizing sustainability in partnership with clients. Vantage differentiates itself through its focus on large-scale wholesale campuses, rapid deployment, scalable capacity, and energy-efficiency commitments across its North American and European markets. Its goal is to help major customers quickly and reliably scale their IT infrastructure with energy-conscious, scalable data center space, backed by a strong investor base and a footprint in key markets.

Company Size

1,001-5,000

Company Stage

Debt Financing

Total Funding

$27.1B

Headquarters

Denver, Colorado

Founded

2010

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Simplify Jobs

Simplify's Take

What believers are saying

  • January 2026 Liberty Energy deal secures up to 1GW power solutions for campuses.
  • January 2026 securitization raised £254 million for Cardiff, extending refinancing flexibility.
  • April 2026 Oracle and OpenAI commitment to Port Washington validates Vantage's AI demand capture.

What critics are saying

  • July 2026 Wisconsin lawsuits threaten Port Washington permits for a $15 billion campus.
  • July 2026 Clean Air Act notice targets Vantage and VoltaGrid San Antonio gas plants.
  • Malaysia asset-sale talks signal portfolio monetization pressure before DigitalBridge's SoftBank acquisition closes.

What makes Vantage Data Centers unique

  • Vantage has 40-plus hyperscale campuses and 9GW capacity across North America, EMEA.
  • Its Cardiff ABS and euro-denominated financings prove repeatable, asset-backed capital access.
  • Altarea partnership gives Vantage first French market entry with 400MW near Bordeaux.

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Benefits

Health Insurance

Dental Insurance

Vision Insurance

Life Insurance

Disability Insurance

401(k) Retirement Plan

401(k) Company Match

Flexible Work Hours

Remote Work Options

Professional Development Budget

Wellness Program

Growth & Insights and Company News

Headcount

6 month growth

0%

1 year growth

-1%

2 year growth

0%
Data Center Dynamics
Aug 6th, 2026
We Energies begins work on three renewable projects slated to help power Vantage's data center in Port Washington, Wisconsin.

We Energies begins work on three renewable projects slated to help power Vantage's data center in Port Washington, Wisconsin. 50 percent of generation is expected to serve the data center August 06, 2026 Wisconsin electrical utility We Energies has started construction on three renewable energy and battery storage projects in Wisconsin, with around half of their combined capacity earmarked to supply a major AI data center campus in Port Washington. The projects comprise a 150MW solar and 50MWh battery storage project in Rock County, a 110MW wind farm spanning Iowa and Grant counties, and a 75MW battery energy storage facility in Walworth County. The projects are expected to be completed by the end of 2027. Chicago-based Invenergy will develop the facilities before transferring ownership to Wisconsin utilities. We Energies will hold the majority ownership stake, with the remainder shared between Madison Gas & Electric and Wisconsin Public Service. Approximately 50 percent of the generated capacity of each of the projects has been allocated to the under-development $15 billion Port Washington campus being developed by Vantage Data Centers, Oracle, and OpenAI. First announced in October, Vantage is developing the 672-acre campus for OpenAI and Oracle as part of the AI firm's Stargate initiative. The site will total 902MW and 2.5 million sq ft (232,255 sqm) across four buildings at full build-out. Set to go live in 2028, the campus will use closed-loop liquid cooling. According to We Energies, the utility currently has more than 3GW of solar and wind capacity and around 600MW of battery storage either operating, under construction, or awaiting regulatory approval. The utility recently approved a large load tariff for customers such as hyperscale data centers, which will require them to fund the dedicated generation and transmission infrastructure built specifically to serve them, rather than passing those costs on to other utility customers. The tariff was approved by the Wisconsin Public Service Commission earlier this year. Vantage previously committed to underwrite 100 percent of the power infrastructure investment with a dedicated electricity rate. More in north america.

The Daily Bo Snerdley
Jul 31st, 2026
Data centers drive surging off-grid gas power demand.

Data centers drive surging off-grid gas power demand. (The Center Square) - Strained electrical grids and long wait times to hook up to public utilities will push about 40% of all new data center capacity additions entirely off the main grid through 2030, according to energy research firm Enverus. The report by Enverus Intelligence Research (EIR) projects hyperscalers will spend about $5 trillion through 2030 to add 62 gigawatts of off-grid, natural gas-fired power serving data centers clustered primarily in parts of Texas, Pennsylvania, and Ohio. Faced with long waits to connect to the public grid, major tech hyperscalers like Amazon and Google are pushing back their short-term net-zero carbon pledges. To meet their immense, short-term power needs, these and other tech giants are building off-grid, privately controlled, "behind the meter" natural gas generation facilities. "Everybody wants to come on the grid, but that has been pretty saturated to this point," Thomas Mulvihill, a research associate at Enverus, explained in an interview with The Center Square. "Now we're seeing a huge shift towards this behind-the-meter story. Tech companies aren't concerned with how quickly it takes them to build the data center shell; they are entirely constrained by time-to-power." According to Enverus data, more than 80% of the off-grid, natural gas-powered data center growth will occur in Texas, the PJM market region, which covers Pennsylvania and Ohio, and the Western United States. The Austin-based energy analytics firm estimates this domestic off-grid natural gas demand will amount to 1.3 billion cubic feet per day in 2030. Texas-based energy analyst David Blackmon ties the demand for gas-fired power generation to tech-sector economics, noting that the migration to gas-fired generation is driven by necessity rather than climate strategy. "This isn't a green revolution; it's a gas-fueled sprint for speed and revenue," Blackmon wrote in an analysis of data center infrastructure. "With AI data centers raking in millions per megawatt annually, developers are prioritizing quick deployment over efficiency or eco-hype." The scale of the grid bottleneck is most acute in Texas. The Electric Reliability Council of Texas is currently tracking more than 438 GW of large-load interconnection requests, with nearly 90% coming from data centers. For perspective, ERCOT's all-time historical peak demand record is just 85.5 GW. Because burning massive volumes of natural gas threatens corporate climate goals, the hyperscalers' decarbonization strategies are increasingly driven by regional geology. A 2024 Enverus study on underground carbon storage potential ranked Texas and neighboring Louisiana as the top two states in the nation for available pore space, the microscopic cavities in deep rock formations used to permanently trap carbon dioxide emissions, giving the two states a large advantage over Ohio and Pennsylvania in implementing decarbonization strategies. Enverus's 2024 study found that while carbon storage on the Gulf Coast can break even for as little as $8.70 per ton, only about 1% of Appalachian rock formations can be developed at a comparable price point under current federal subsidies. "Texas has a big head start," Blackmon told the Center Square, noting that overall storage opportunity across both Louisiana and the Lone Star State is immense due to their deep geological formations. Lacking the same deep storage geology, data center operators in Ohio and Pennsylvania cannot cheaply bury carbon emissions locally, and alternative plans to construct local wind or solar projects are stalled by PJM's seven-year grid connection delays. In the race to bring data centers online quickly, tech companies are increasingly choosing to deploy portable gas turbines and gas-powered fuel cells directly on-site, but these strategies are triggering pushback from environmental watchdogs. A coalition including the Sierra Club and the Environmental Integrity Project recently threatened to sue developers Vantage Data Centers and VoltaGrid over behind-the-meter gas-fired power generation in San Antonio, alleging that the two tech sector companies are exploiting a legal loophole to bypass federal Clean Air Act reviews. "The developers are building massive power plants for a pair of huge data centers using permits meant only for minor sources of air pollution, allowing them to operate near residential neighborhoods without standard public disclosure or emissions monitoring," the coalition said in a legal challenge to the San Antonio data centers. In April, the Environmental Integrity Project released a report indicating that 74 planned off-grid data center gas-fired power plants now under consideration in the United States could emit 662 million tons of greenhouse gases annually - a climate footprint matching the nation of Australia. Mulvihill questions how long hyperscalers will want to remain off-grid given their rigid requirements for 99.995% operational uptime. "As time goes on - you've done four or five years behind the meter - do you not want to get an insurance connection to the grid?" Mulvihill asked. How that inevitable demand for an "insurance connection" to the public grid plays out - whether it shifts infrastructure costs onto everyday utility ratepayers - will be decided in the years ahead, according to Mulvihill.

Lockwood Broadcast Group
Jul 31st, 2026
Data centers drive surging off-grid gas power demand.

Data centers drive surging off-grid gas power demand. (The Center Square) - Strained electrical grids and long wait times to hook up to public utilities will push about 40% of all new data center capacity additions entirely off the main grid through 2030, according to energy research firm Enverus. The report by Enverus Intelligence Research (EIR) projects hyperscalers will spend about $5 trillion through 2030 to add 62 gigawatts of off-grid, natural gas-fired power serving data centers clustered primarily in parts of Texas, Pennsylvania, and Ohio. Faced with long waits to connect to the public grid, major tech hyperscalers like Amazon and Google are pushing back their short-term net-zero carbon pledges. To meet their immense, short-term power needs, these and other tech giants are building off-grid, privately controlled, "behind the meter" natural gas generation facilities. Kemi Badenoch visists Groundswell Agricultural Festival near Stevenage "Everybody wants to come on the grid, but that has been pretty saturated to this point," Thomas Mulvihill, a research associate at Enverus, explained in an interview with The Center Square. "Now we're seeing a huge shift towards this behind-the-meter story. Tech companies aren't concerned with how quickly it takes them to build the data center shell; they are entirely constrained by time-to-power." According to Enverus data, more than 80% of the off-grid, natural gas-powered data center growth will occur in Texas, the PJM market region, which covers Pennsylvania and Ohio, and the Western United States. The Austin-based energy analytics firm estimates this domestic off-grid natural gas demand will amount to 1.3 billion cubic feet per day in 2030. Texas-based energy analyst David Blackmon ties the demand for gas-fired power generation to tech-sector economics, noting that the migration to gas-fired generation is driven by necessity rather than climate strategy. "This isn't a green revolution; it's a gas-fueled sprint for speed and revenue," Blackmon wrote in an analysis of data center infrastructure. "With AI data centers raking in millions per megawatt annually, developers are prioritizing quick deployment over efficiency or eco-hype." The scale of the grid bottleneck is most acute in Texas. The Electric Reliability Council of Texas is currently tracking more than 438 GW of large-load interconnection requests, with nearly 90% coming from data centers. For perspective, ERCOT's all-time historical peak demand record is just 85.5 GW. Because burning massive volumes of natural gas threatens corporate climate goals, the hyperscalers' decarbonization strategies are increasingly driven by regional geology. A 2024 Enverus study on underground carbon storage potential ranked Texas and neighboring Louisiana as the top two states in the nation for available pore space, the microscopic cavities in deep rock formations used to permanently trap carbon dioxide emissions, giving the two states a large advantage over Ohio and Pennsylvania in implementing decarbonization strategies. Enverus's 2024 study found that while carbon storage on the Gulf Coast can break even for as little as $8.70 per ton, only about 1% of Appalachian rock formations can be developed at a comparable price point under current federal subsidies. "Texas has a big head start," Blackmon told the Center Square, noting that overall storage opportunity across both Louisiana and the Lone Star State is immense due to their deep geological formations. Lacking the same deep storage geology, data center operators in Ohio and Pennsylvania cannot cheaply bury carbon emissions locally, and alternative plans to construct local wind or solar projects are stalled by PJM's seven-year grid connection delays. In the race to bring data centers online quickly, tech companies are increasingly choosing to deploy portable gas turbines and gas-powered fuel cells directly on-site, but these strategies are triggering pushback from environmental watchdogs. A coalition including the Sierra Club and the Environmental Integrity Project recently threatened to sue developers Vantage Data Centers and VoltaGrid over behind-the-meter gas-fired power generation in San Antonio, alleging that the two tech sector companies are exploiting a legal loophole to bypass federal Clean Air Act reviews. "The developers are building massive power plants for a pair of huge data centers using permits meant only for minor sources of air pollution, allowing them to operate near residential neighborhoods without standard public disclosure or emissions monitoring," the coalition said in a legal challenge to the San Antonio data centers. In April, the Environmental Integrity Project released a report indicating that 74 planned off-grid data center gas-fired power plants now under consideration in the United States could emit 662 million tons of greenhouse gases annually - a climate footprint matching the nation of Australia. Mulvihill questions how long hyperscalers will want to remain off-grid given their rigid requirements for 99.995% operational uptime. "As time goes on - you've done four or five years behind the meter - do you not want to get an insurance connection to the grid?" Mulvihill asked. How that inevitable demand for an "insurance connection" to the public grid plays out - whether it shifts infrastructure costs onto everyday utility ratepayers - will be decided in the years ahead, according to Mulvihill. Locations. Currently in Knoxville Partly Cloudy

Salem Media Group
Jul 31st, 2026
Data centers drive surging off-grid gas power demand.

Data centers drive surging off-grid gas power demand. 11:44 AM on friday, july 31. Alton wallace. (The Center Square) - Strained electrical grids and long wait times to hook up to public utilities will push about 40% of all new data center capacity additions entirely off the main grid through 2030, according to energy research firm Enverus. The report by Enverus Intelligence Research projects hyperscalers will spend about $5 trillion through 2030 to add 62 gigawatts of off-grid, natural gas-fired power serving data centers clustered primarily in parts of Texas, Pennsylvania, and Ohio. Faced with long waits to connect to the public grid, major tech hyperscalers like Amazon and Google are pushing back their short-term net-zero carbon pledges. To meet their immense, short-term power needs, these and other tech giants are building off-grid, privately controlled, "behind the meter" natural gas generation facilities. "Everybody wants to come on the grid, but that has been pretty saturated to this point," Thomas Mulvihill, a research associate at Enverus, explained in an interview with The Center Square. "Now we're seeing a huge shift towards this behind-the-meter story. Tech companies aren't concerned with how quickly it takes them to build the data center shell; they are entirely constrained by time-to-power." According to Enverus data, more than 80% of the off-grid, natural gas-powered data center growth will occur in Texas, the PJM market region, which covers Pennsylvania and Ohio, and the Western United States. The Austin-based energy analytics firm estimates this domestic off-grid natural gas demand will amount to 1.3 billion cubic feet per day in 2030. Texas-based energy analyst David Blackmon ties the demand for gas-fired power generation to tech-sector economics, noting that the migration to gas-fired generation is driven by necessity rather than climate strategy. "This isn't a green revolution; it's a gas-fueled sprint for speed and revenue," Blackmon wrote in an analysis of data center infrastructure. "With AI data centers raking in millions per megawatt annually, developers are prioritizing quick deployment over efficiency or eco-hype." The scale of the grid bottleneck is most acute in Texas. The Electric Reliability Council of Texas is currently tracking more than 438 GW of large-load interconnection requests, with nearly 90% coming from data centers. For perspective, ERCOT's all-time historical peak demand record is just 85.5 GW. Because burning massive volumes of natural gas threatens corporate climate goals, the hyperscalers' decarbonization strategies are increasingly driven by regional geology. A 2024 Enverus study on underground carbon storage potential ranked Texas and neighboring Louisiana as the top two states in the nation for available pore space, the microscopic cavities in deep rock formations used to permanently trap carbon dioxide emissions, giving the two states a large advantage over Ohio and Pennsylvania in implementing decarbonization strategies. Enverus's 2024 study found that while carbon storage on the Gulf Coast can break even for as little as $8.70 per ton, only about 1% of Appalachian rock formations can be developed at a comparable price point under current federal subsidies. "Texas has a big head start," Blackmon told the Center Square, noting that overall storage opportunity across both Louisiana and the Lone Star State is immense due to their deep geological formations. Lacking the same deep storage geology, data center operators in Ohio and Pennsylvania cannot cheaply bury carbon emissions locally, and alternative plans to construct local wind or solar projects are stalled by PJM's seven-year grid connection delays. In the race to bring data centers online quickly, tech companies are increasingly choosing to deploy portable gas turbines and gas-powered fuel cells directly on-site, but these strategies are triggering pushback from environmental watchdogs. A coalition including the Sierra Club and the Environmental Integrity Project recently threatened to sue developers Vantage Data Centers and VoltaGrid over behind-the-meter gas-fired power generation in San Antonio, alleging that the two tech sector companies are exploiting a legal loophole to bypass federal Clean Air Act reviews. "The developers are building massive power plants for a pair of huge data centers using permits meant only for minor sources of air pollution, allowing them to operate near residential neighborhoods without standard public disclosure or emissions monitoring," the coalition said in a legal challenge to the San Antonio data centers. In April, the Environmental Integrity Project released a report indicating that 74 planned off-grid data center gas-fired power plants now under consideration in the United States could emit 662 million tons of greenhouse gases annually - a climate footprint matching the nation of Australia. Mulvihill questions how long hyperscalers will want to remain off-grid given their rigid requirements for 99.995% operational uptime. "As time goes on - you've done four or five years behind the meter - do you not want to get an insurance connection to the grid?" Mulvihill asked. How that inevitable demand for an "insurance connection" to the public grid plays out - whether it shifts infrastructure costs onto everyday utility ratepayers - will be decided in the years ahead, according to Mulvihill.

Salem Media Group
Jul 31st, 2026
Data centers drive surging off-grid gas power demand.

Data centers drive surging off-grid gas power demand. 11:44 AM on friday, july 31. Alton wallace. (The Center Square) - Strained electrical grids and long wait times to hook up to public utilities will push about 40% of all new data center capacity additions entirely off the main grid through 2030, according to energy research firm Enverus. The report by Enverus Intelligence Research (EIR) projects hyperscalers will spend about $5 trillion through 2030 to add 62 gigawatts of off-grid, natural gas-fired power serving data centers clustered primarily in parts of Texas, Pennsylvania, and Ohio. Faced with long waits to connect to the public grid, major tech hyperscalers like Amazon and Google are pushing back their short-term net-zero carbon pledges. To meet their immense, short-term power needs, these and other tech giants are building off-grid, privately controlled, "behind the meter" natural gas generation facilities. "Everybody wants to come on the grid, but that has been pretty saturated to this point," Thomas Mulvihill, a research associate at Enverus, explained in an interview with The Center Square. "Now we're seeing a huge shift towards this behind-the-meter story. Tech companies aren't concerned with how quickly it takes them to build the data center shell; they are entirely constrained by time-to-power." According to Enverus data, more than 80% of the off-grid, natural gas-powered data center growth will occur in Texas, the PJM market region, which covers Pennsylvania and Ohio, and the Western United States. The Austin-based energy analytics firm estimates this domestic off-grid natural gas demand will amount to 1.3 billion cubic feet per day in 2030. Texas-based energy analyst David Blackmon ties the demand for gas-fired power generation to tech-sector economics, noting that the migration to gas-fired generation is driven by necessity rather than climate strategy. "This isn't a green revolution; it's a gas-fueled sprint for speed and revenue," Blackmon wrote in an analysis of data center infrastructure. "With AI data centers raking in millions per megawatt annually, developers are prioritizing quick deployment over efficiency or eco-hype." The scale of the grid bottleneck is most acute in Texas. The Electric Reliability Council of Texas is currently tracking more than 438 GW of large-load interconnection requests, with nearly 90% coming from data centers. For perspective, ERCOT's all-time historical peak demand record is just 85.5 GW. Because burning massive volumes of natural gas threatens corporate climate goals, the hyperscalers' decarbonization strategies are increasingly driven by regional geology. A 2024 Enverus study on underground carbon storage potential ranked Texas and neighboring Louisiana as the top two states in the nation for available pore space, the microscopic cavities in deep rock formations used to permanently trap carbon dioxide emissions, giving the two states a large advantage over Ohio and Pennsylvania in implementing decarbonization strategies. Enverus's 2024 study found that while carbon storage on the Gulf Coast can break even for as little as $8.70 per ton, only about 1% of Appalachian rock formations can be developed at a comparable price point under current federal subsidies. "Texas has a big head start," Blackmon told the Center Square, noting that overall storage opportunity across both Louisiana and the Lone Star State is immense due to their deep geological formations. Lacking the same deep storage geology, data center operators in Ohio and Pennsylvania cannot cheaply bury carbon emissions locally, and alternative plans to construct local wind or solar projects are stalled by PJM's seven-year grid connection delays. In the race to bring data centers online quickly, tech companies are increasingly choosing to deploy portable gas turbines and gas-powered fuel cells directly on-site, but these strategies are triggering pushback from environmental watchdogs. A coalition including the Sierra Club and the Environmental Integrity Project recently threatened to sue developers Vantage Data Centers and VoltaGrid over behind-the-meter gas-fired power generation in San Antonio, alleging that the two tech sector companies are exploiting a legal loophole to bypass federal Clean Air Act reviews. "The developers are building massive power plants for a pair of huge data centers using permits meant only for minor sources of air pollution, allowing them to operate near residential neighborhoods without standard public disclosure or emissions monitoring," the coalition said in a legal challenge to the San Antonio data centers. In April, the Environmental Integrity Project released a report indicating that 74 planned off-grid data center gas-fired power plants now under consideration in the United States could emit 662 million tons of greenhouse gases annually - a climate footprint matching the nation of Australia. Mulvihill questions how long hyperscalers will want to remain off-grid given their rigid requirements for 99.995% operational uptime. "As time goes on - you've done four or five years behind the meter - do you not want to get an insurance connection to the grid?" Mulvihill asked. How that inevitable demand for an "insurance connection" to the public grid plays out - whether it shifts infrastructure costs onto everyday utility ratepayers - will be decided in the years ahead, according to Mulvihill.