Modernize electrical installations in existing buildings
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The building stock
is under pressure
A large proportion of buildings are over 30 years old—and so are their electrical installations. At the same time, demands are increasing: flexible space concepts, energy efficiency, digitalization, as well as applications such as e-mobility or Photovoltaic.
Many existing electrical installations are not designed for these demands. They offer too little reserve for modern applications, are often undersized, not very flexible, and no longer meet the safety and comfort standards of contemporary buildings.
Those who only make selective renewals in existing buildings often merely solve acute problems. A building becomes future-proof only when the electrical installation is considered structurally.
Renewing the electrical installation in existing buildings is not just a technical measure—it determines how safe, usable, and future-proof a building remains.
More than THE electrical refurbishment OF OLD WIRING
Revitalization means not only modernizing existing buildings, but making them usable and adaptable in the long term. It’s not just about replacing old electrical wiring. The key is an electrical installation that meets today’s requirements and takes future changes into account.
The focus is on a solution that:
- establishes an up-to-date level of safety
- reliably supplies modern applications
- reduces interventions in the building fabric
- enables short construction times during ongoing operations
- can be flexibly expanded and adapted
The crucial difference: an installation that not only works for today—but also remains adaptable tomorrow.
EVERY REVITALIZATION BRINGS CHALLENGES WITH IT
– WE DELIVER THE RIGHT SOLUTION
When renewing the electrical installation in existing buildings, every intervention counts. Construction times, the building fabric, and later changes in use must be considered from the outset. with pluggable systems, this becomes a plannable solution: less effort on site, less intervention in the building fabric, and more flexibility for later changes.
The following examples show how typical challenges of revitalization can be solved efficiently.
ONGOING OPERATIONS & TIME PRESSURE
Challenge:
Revitalizations often take place during ongoing operations—for example, in offices, hotels, educational institutions, or residential complexes. The more the building fabric is interfered with, the greater the downtime, disruptions, and costs.
Requirement:
The modernization must be carried out so that operational interruptions are reduced to a minimum—while ensuring high predictability and execution reliability.
Solution:
- Pluggable systems enable installation up to 70% faster through plug & play instead of individual wiring
- Prefabricated, tested components significantly reduce assembly effort and sources of error
Modernization must adapt to operations—not the other way around.
Result:
Buildings remain largely usable—and are back in full operation much faster.
UNPREDICTABLE BUILDING FABRIC IN EXISTING BUILDINGS
Challenge:
In existing buildings, rarely is everything plannable: unclear routing paths, tight installation zones, previous alterations, or hard-to-access areas can quickly affect schedule and effort.
Requirement:
The electrical installation must be able to adapt flexibly to real conditions—even with limited access and complex building fabric.
Solution:
- Pluggable, modular systems reduce labor-intensive on-site work and make it easier to integrate into existing structures—for example, in cavities, suspended ceilings, parapet ducts, or existing installation zones.
- Cables can be routed flexibly, added, or adapted to new requirements
Even under difficult conditions, the installation remains plannable and controllable
Result:
The building fabric does not become a risk—but can be integrated into the modernization safely and efficiently.
ERROR SUSCEPTIBILITY ON THE CONSTRUCTION SITE
Challenge:
Time pressure, complex installations, and many interfaces increase the risk of wiring errors. Errors directly affect function, safety, and project costs.
Requirement:
The electrical installation must be able to be implemented reliably, reproducibly, and error-proof even under construction-site conditions.
Solution:
- Mechanically coded plug connections prevent incorrect connections—mix-ups are excluded by design
- Industrially prefabricated and tested components ensure consistently high quality
The system reduces sources of error right from the start—not only during inspection
Result:
Less rework, lower risk, and significantly higher execution reliability on the construction site.
SAFETY REQUIREMENTS IN EXISTING BUILDINGS
Challenge:
In many existing buildings, cable routing, protection, and distribution no longer meet today’s requirements. Outdated installations, poorly placed distributors, or additional fire loads can become safety-critical weak points.
Requirement:
The electrical installation must be permanently safe, compliant with standards, and operationally reliable—regardless of the existing building fabric.
Solution:
- Factory-prefabricated and tested connections ensure consistently high contact quality
- Stable, defined connections reduce the risk of contact resistance and thus of cable fires
Safety comes from tested system quality—not from subsequent on-site inspection
Result:
A significantly higher level of safety—reliably sustained and ensured even with demanding building fabric.
CHANGING USE OF BUILDINGS
Challenge:
Space concepts change—especially in office buildings, educational institutions, or commercial properties. New requirements for workplaces, infrastructure, or usage lead to existing installations quickly reaching their limits.
Requirement:
The electrical installation must be easy and economical to adapt to changing usage concepts—with sufficient connection options, power reserves, and infrastructure for lighting, building services, IT, e-mobility, or photovoltaic.
Solution:
- Pluggable systems enable easy expansion, restructuring, and repurposing
- Adjustments are made without labor-intensive reinstallation or interventions in existing structures
The installation grows with the requirements—instead of becoming the limiting factor
Result:
Rooms remain flexibly usable—and adjustments are made quickly, economically, and without new refurbishment cycles.
FUTURE-READINESS & SUSTAINABILITY
Challenge:
Buildings must be prepared in the long term for new technologies and requirements—at the same time, expectations for energy efficiency and sustainable construction are rising.
Requirement:
The electrical installation must be expandable, reusable, and energy-efficient—and able to adapt to future developments.
Solution:
- Preparation for smart buildings, photovoltaic, and e-mobility
- Reusable components enable a circular economy instead of single-use installation
- Non-destructive adjustments significantly reduce construction effort and waste
The installation is not replaced, but continuously evolved
Result:
An electrical installation that remains usable in the long term—and makes buildings sustainable, flexible, and future-proof.
Expert assessment:
Why modern electrical installation is crucial
“Renewing the electrical installation in existing buildings is not a replacement of old technology, but the foundation for safety, usability, and future readiness.”
Dominik Stöcklein
Product Manager gesis®
CONVENTIONAL VS. PLUGGABLE: THE DIFFERENCE AT A GLANCE
Pluggable installation systems not only offer conceptual advantages, they also have a measurable impact on time, costs, and material usage.
| Time required | 100 |
|---|---|
| Costs | 100 |
| Cable lengths | 100 |
| Fire load | 100 |
| Copper weight | 100 |
| Technical rooms | 100 |
| Time required | 30 |
|---|---|
| Costs | 70 |
| Cable lengths | 30 |
| Fire load | 40 |
| Copper weight | 50 |
| Technical rooms | 40 |
The values shown are based on typical project comparisons and may vary depending on the application.
SUSTAINABLE ELECTRICAL INSTALLATION
BEGINS IN EXISTING BUILDINGS
Revitalization is a key lever for sustainable construction—because most of the buildings of tomorrow already exist today.
For these buildings to remain energy-efficient, flexible, and certifiable in the long term, the electrical installation must be considered from the ground up.
FROM INCREASING REQUIREMENTS TO A FUTURE-PROOF ELECTRICAL INSTALLATION
REQUIREMENTS FOR EXISTING BUILDINGS
Energy efficiency is no longer an optional goal today, but enshrined in law—for example through the Building Energy Act (GEG) or DIN 18599. For electrical engineering, this means concrete requirements, e.g., through daylight-dependent lighting control.
At the same time, green building certifications such as DGNB, LEED, or BREEAM are becoming increasingly important. They assess buildings holistically—from energy efficiency and resource use to flexibility and utilization.
CONTRIBUTION OF PLUGGABLE SYSTEMS
This is exactly where pluggable, modular systems come in. They support the implementation of sustainable building concepts in two ways:
- They meet the increasing requirements for energy efficiency and enable the easy integration of modern building technology
- At the same time, they create measurable benefits for certifications—such as through lower material usage, reusability, and flexible use
This makes the electrical installation in existing buildings the decisive lever for sustainable buildings: it makes requirements for energy efficiency, certifiability, and flexible use technically feasible.
RESOURCE CONSERVATION
Fewer interventions in the building fabric reduce material usage and construction effort.
- fewer interventions in the building fabric
- lower material usage
- reduced construction waste
CIRCULAR ECONOMY
Reusable systems avoid unnecessary deconstruction and enable long-term use.
- reusable plug-in systems
- non-destructive adaptation and expansion
- less “throw away and start over”
ENERGY EFFICIENCY
A modern electrical installation forms the foundation for energy-efficient building technology.
- Foundation for modern building technology
- Integration of LED, smart building, and load management
REFURBISHMENT OF THE ELECTRICAL INSTALLATION IN PRACTICE
As diverse as buildings are, so too are the requirements for their revitalization. Discover suitable solutions for your application.
Revitalization begins
with good planning
Before an electrical installation in an existing building is renewed, a clear assessment of the existing conditions is needed: Which cable routes are in place? Which loads need to be supplied? What requirements arise from new usage concepts, building services, or future expansions?
Wieland supports you in developing a plannable system solution from these requirements—with pluggable components that reduce construction time, minimize interventions, and make future adjustments easier.
THE RIGHT INSTALLATION SYSTEMS FOR THE
RENEWAL OF YOUR ELECTRICAL INSTALLATION
With pluggable systems and modular components, Wieland Electric offers a seamless portfolio for the efficient and future-proof renewal of electrical installations in existing buildings.
FLAT CABLE SYSTEM FOR EFFICIENT POWER DISTRIBUTION
With the gesis® NRG flat cable system, you reduce cabling effort by up to 70%. Less material, lower fire load, and maximum flexibility—ideal for office, education, and healthcare buildings.
DISTRIBUTION BOX FOR
POWER AND DATA
The gesis® RAN distribution box enables decentralized power and data distribution for modern building structures. Quick to install, flexibly extendable, and reliable in operation.
PLUGGABLE CONNECTION TECHNOLOGY FOR EVERY APPLICATION
With the gesis® installation system, you create reliable connections for lighting, power supply, and control—from individual applications to the complete electrical installation.
FAQ
What should be considered when renewing the electrical installation in existing buildings?
Early planning, a thorough assessment of the existing conditions, and sufficient flexibility for later changes in use are important. Straight in existing buildings, cable routes, spatial constraints, safety requirements, and future applications such as smart building, LED lighting, or charging infrastructure should be considered from the outset.
How can we avoid having to renew the electrical installation again in 30 years?
By not understanding the renewal as a one-time refurbishment, but as the Setup of an adaptable infrastructure. Conventional installations are often rigid and can only be modified with considerable effort.
Pluggable installation systems, on the other hand, enable later expansions, repurposing, or adaptations with significantly fewer interventions. This means the electrical installation is not only suited to today’s requirements, but can be developed further with the building.