In-Home Broadband Excellence Committee


Maarten Egmond, Chair of the In-Home Broadband Excellence Committee of the FTTH Council Europe, dives into one of the most crucial yet often overlooked aspects of fiber deployment: the quality of the broadband experience inside the home. In this episode, Maarten discusses why in-home broadband excellence has become strategically essential for Communication Service Providers (CSPs) and how it ties directly into broader fiber deployment goals across the European Union.
In this episode, our guest will answer to these questions and much more:

  1. Why is in-home broadband excellence strategically relevant for CSPs, and how does it relate to fibre network deployment strategies in the European Union?
  2. From the experience of your committee, what are the best practices to provide, manage and monitor the ‘Quality of Experience’ for end-users?
  3. What are the key factors driving fibre adoption among consumers?
  4. What new technologies or innovations is the committee exploring to enhance in-home broadband experiences?

Read the full interview below to get the answers to these questions.

 

Why is in-home broadband excellence strategically relevant for CSPs, and how does it relate to fibre network deployment strategies in the European Union?  

As we saw at the FTTH Conference in March, fibre rollout is steadily continuing, but will need additional investment to close the remaining gap. This investment ultimately has to come from paying subscribers, but the adoption remains lagging. If the in-home broadband experience is not addressed well, subscribers will not be able to benefit from the inherent quality of the fibre connection, and they will not see the need to adopt it.
The fact that so many homes connected stay ‘unadopted’ is a serious threat to the future of a digital Europe where everyone should have access to Gigabit connectivity (and beyond). And delivering ‘In-Home Broadband Excellence’ is the answer to that threat.

 


In the picture on the left, action from the Panel 10 - FTTH and the future of wireless applications (Wi-Fi 8 and 6G) at the FTTH Conference 2025, in Amsterdam.

 

From the experience of your committee, what are the best practices to provide, manage and monitor the ‘Quality of Experience’ for end-users?


This is a tough question to answer. There are so many things to address, from the basic infrastructure in the home, to ensuring the CSP can manage that infrastructure to help the end-users where needed, to technologies to deploy new services for additional revenue, and indeed to unlock real subscriber value that can only be delivered over fibre efficiently. For this reason, we have just released the third edition of the IBE Guide, which addresses all these topics and more. For the first time, this edition also brings content for the technicians that do the in-home installation. Many service providers choose to send a technician, to have a human touch-point with the subscriber. However, ensuring the technicians are equipped to do a high quality installation requires additional knowledge and training compared to what is typically done today.

Perhaps my conclusion on the overall best practices is especially: adopt standards and technologies that already exist. We have a habit to quickly skip over to the next ‘silver bullet’ (for example the generative-AI hype currently ongoing), but we forget there are many things that we can do with available down-to-earth technology that are not yet even implemented in many networks to the fullest.

 

What are the key factors driving fibre adoption among consumers?

European consumers are typically very price conscious, and this can be an issue as fibre is not usually a cheaper subscription. But in my opinion Europeans aren’t adverse to paying for value. In the beginning, fibre deployments could be marketed locally in effective ways. But in the mass-market, if consumers don’t perceive they get more value out of the fibre connection than what they already have, they will be reluctant to switch, especially since fibre is unlikely to be a cheaper subscription for them.

Well implemented fibre networks are of high quality, and subscribers will know. As we still await growth of new consumer services that truly and honestly require fibre connectivity, quality of the network remains the key driving factor. And this can be best influenced by taking care during deployment and initial installation. This is exactly why the committee is now focused on providing more value to CSPs in that process.




In the picture on the left, action from the Panel 10 - FTTH and the future of wireless applications (Wi-Fi 8 and 6G) at the FTTH Conference 2025, in Amsterdam.
 

What new technologies or innovations is the committee exploring to enhance in-home broadband experiences?

We’ve just seen Wi-Fi 7 released, as a major upgrade to the quality of the in-home broadband experience. Of course it will take many years to fully mature and ‘trickle down’ into most end-user devices so it is something to continue monitoring and expanding on. On a related note, while mesh networking is not exactly ‘new’ anymore, it remains of interest to deploy it more effectively, perhaps coupled with other improvements to the (initial) in-home installation quality. The latter isn’t exactly a new technology or innovation in most senses of the word, but as I mentioned above, it could actually be one of the best ways to enhance the in-home broadband experience over the next few years. Hopefully Wi-Fi usage in the 6GHz band will be expanded in Europe as well, so that in a few years, we could finally say we have achieved the solution to In-home Broadband Excellence, once and for all. Of course we all know it’s not quite going to be like that, but we have something to aspire to, and we can certainly get a lot closer than where we are today!




In the picture on the right, Maarten Egmond is moderating the Panel 10 - FTTH and the future of wireless applications (Wi-Fi 8 and 6G) at the FTTH Conference 2025, in Amsterdam.

 

More about Maarten Egmond


 

 

Maarten Egmond finished university with a double BSc in IT as well as applied physics and started his career in R&D of optical components, followed by embedded software development work for high-end X-ray machines. After this, he moved into the FTTH industry where he has been contributing to technology and product development for more than 15 years, currently serving as CTO of Genexis, and since 2021 as Committee Chair of In-Home Broadband Excellence for the FTTH Council Europe.

How to half energy consumption of broadband network equipment to meet sustainability targets

Member company: Nokia
Country or geographical scope: Global
Period: 2019-2030
Company type: Vendor/Reseller
Product/service category involved: FTTP access nodes

Abstract
Investing in power-efficient network technologies can significantly reduce the carbon footprint of broadband access networks. Network operators should consider accelerating the phase-out of copper, selecting the most power-efficient network equipment, and upgrading PON networks to XGS-PON or 25G PON to increase the bits delivered per watt consumed. For this purpose, Nokia developed a new chipset that brings power savings of more than 50% in the broadband network and helps operators to meet their emissions goals with growing usage and increasing penetration of broadband.


Context

Climate change is the greatest challenge of our time and every organization has a role to play in minimising the carbon footprint of their activities. The ICT industry today accounts for more than 2% of global greenhouse gas (GHG) emissions[1], approximately the same as all air traffic. However, ICT helps consumers, businesses and other industries become more sustainable. Digitalization in general and broadband in particular contribute by cutting transportation, creating gains in productivity, and boosting economic growth for individuals, countries, cities, and society as a whole. So, despite its own carbon footprint, ICT actually carries a 7-fold net positive effect on emissions, reducing global CO2 emissions by up to 15%1. Nevertheless, network operators must continue to reduce the emissions created by their own activities.
 

Solutions

The power consumption—and hence the carbon emissions—of a broadband network is primarily dictated by the chipsets used in network equipment. Nokia has developed an optimized System-on-a-Chip (SOC) that now resides in all our network nodes. This chipset enables line cards for fibre and copper broadband with higher port densities and higher throughput per watt. In turn, this leads to smaller nodes, which occupy less space, use less power and can be passively cooled (up to operating temperatures of 65°C). When installed in street cabinets, they require less grid protection equipment, smaller power supplies and only “heatwave days” fan ventilation backup. We also have integrated energy-saving features, such as powering down unused optical modules (which is better than just switching the laser off per port, saving up to 1.5W for GPON), and improved intelligent fan tray control algorithms to reduce energy consumption and cooling when not required.

This brings power savings of more than 50% in fixed broadband networks and helps operators to meet their emissions goals. We are already shipping broadband solution with this chipset to more than 150 operators. 

The second path for operators to reduce emissions is the transition from copper to fibre broadband networks. Future-proof scalability and higher capacity make full-fibre networks the most energy efficient solution. Replacing copper-based DSL connections with full fibre-to-the-home breaks the link between bandwidth demand and power consumption. VDSL requires many more active components in the network than PON and so consumes more power. But when one also considers the far greater bandwidth of GPON compared to VDSL, the net gain is a 12-fold improvement in bits delivered per watt consumed. XGS-PON takes this even further, delivering five times the bandwidth of GPON for only twice the power consumption, with another positive impact on the energy efficiency.
 

Results

Nokia joined the Science-Based Targets (SBT) initiative and are now targeting to cut emissions by 50 percent between 2019 and 2030 across our value chain. SBT provides companies a clearly defined pathway to take action on how much and how quickly they need to reduce their greenhouse gas (GHG) emissions in line with the 1.5°C scenario.

Achieving this target requires efficiency improvements in network power consumption, continuously driving for more data bits per kilowatt of energy. As part of this commitment, Nokia and other industry players report product energy consumption according to the Code of Conducts for Broadband Communication Equipment from the European Commission. The Code sets the (maximum) electricity consumption for fixed broadband equipment sold in the EU and manufactured or procured by participating service providers, network operators, equipment and component manufacturers.

All this results in the cumulative effect of advances in technology on power consumption as shown in the graph.

The first few years of reductions are driven by the introduction of optimized, energy efficient chipsets, followed by the transition from copper to fibre. Our forecasts predict that we will be able to reach a 50% reduction from the Science-Based Targets initiative.

Note that this graph shows absolute values, and we take into account that across this decade we will deliver higher speeds to more people. XGS-PON and 25G PON will gradually overtake GPON. The blue line shows that the explosion in demand for data does not automatically lead to a massive increase in power consumption. Overall, since 2007, broadband power consumption has been reduced by 38% while speeds have increased by a factor of 64.
 

Conclusions

As broadband enables consumers and businesses to reduce their own carbon footprint, the more people connected to high-speed broadband, the better it is for the planet. Most fixed broadband operators are in the process of upgrading older copper and cable networks to deep fibre or full fibre-to-the-home networks. Accelerating these projects will accelerate the savings in power consumption and greenhouse gas emissions. Selecting the most power-efficient equipment in these network upgrades will also contribute significantly to meeting sustainability targets. Finally, successive generations of PON technology—XGS-PON and 25G PON—further improve the bits delivered per watt consumed; accelerating PON network upgrades will further enhance the sustainability of a broadband network.
 

Further reading

[Blog] Sustainability: how Nokia is helping broadband meet the 1.5°C target
[Blog] Why it’s vital to strive for Broadband Zero
[White Paper] Broadband Zero - Delivering the benefits of broadband while minimizing environmental impact
 

Contact

Filip de Greve, Product Marketing Manager, Nokia Fixed Networks
filip.de_greve@nokia.com


[1] Source: European Commission fact sheet, “Supporting the green transition”, February 2020

 

 

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