MONITORING & METERING
contribute to significant energy savings and better working conditions for those on site.
Beyond the factory fl oor In most industrial facilities, automation is focused on the line. Manufacturers invest in sophisticated systems to ensure their machines operate at peak efficiency, with smart diagnostics, predictive maintenance and data-led optimisation. However, it’s important to look beyond the factory floor and to the wider facility. Here, you’d be surprised how much lighting, HVAC and energy infrastructure still use basic, schedule-based controls, disconnected from the intelligent systems driving production. The most efficient, future-
Extending automation beyond the production line
Manufacturers can improve operational efficiency by extending automation beyond the production line and into wider facility management. Mark Richards explains how better monitoring and management can help improve the visibility of energy usage and address inefficiencies.
Indoor air quality (IAQ) is another
Mark Richards
www.beckhoff.co.uk
R
Sales manager UK at Beckhoff UK
important consideration. Left unaddressed, poor air quality can easily impact product quality and regulatory compliance. There’s also the impact on staff well-being, with long-term effects including increased risk of chronic respiratory conditions, such as asthma, as well as dementia.
ising energy costs, ambitious net-zero targets and increasingly stringent regulations are all on manufacturers’ radars – and
are inspiring urgency. For example, under the Streamlined Energy and Carbon Reporting (SECR), large UK organisations must report their energy use annually or face financial penalties, including fines. Manufacturers often understand that energy consumption is a major cost, but overlook how much is spent on environmental control systems. Heating, ventilation, air conditioning and refrigeration (HVAC&R) systems can account for over 60% of energy consumption in UK buildings. In temperature-sensitive industries like pharmaceuticals and food and beverage production, it’s easy to see how costs can quickly increase. It’s not just energy either. Building
occupancy can pose challenges, with shift changes, partially used zones and quiet maintenance periods all muddying the waters. Ventilating and lighting unoccupied areas makes little sense, but often businesses will end up doing so because they rely on static timers.
EIBI | JULY � AUGUST 2026
Connecting the dots This isn’t to say that industrial facilities aren’t already tracking occupancy, monitoring energy use or measuring air quality. However, these systems are often siloed – managed separately, logged independently in the building management system (BMS), and rarely brought together on the same dashboard. This fragmented approach can make
it hard for manufacturers and facilities managers to glean any meaningful insights from their building data. Monitoring CO₂ levels is important for SECR reporting, but if that data isn’t linked to ventilation and other control systems, it becomes unclear where the issues are in the building and where intervention is needed. Consequently, manufacturers lose an opportunity to gain real-time data analytics and use these to make vital improvements. By integrating these data streams,
manufacturers can uncover relationships between building usage, environmental conditions and energy demand. For example, linking occupancy patterns to ventilation rates could reveal opportunities to
reduce airflow in low-traffic zones or to increase it pre-emptively during shift changes. With better data visibility, facilities managers can shift from reactive to proactive strategies, improving efficiency while ensuring compliance and occupant comfort.
Dynamic control Modern manufacturing is far from static. Equipment ramps up and down, maintenance activities occur outside of working hours and production can intensify and vary across departments and shifts. Nevertheless, many building systems are still operating on fixed schedules, meaning spaces are being heated, ventilated and lit regardless of who’s around and what’s happening in that area.
This is where dynamic control
becomes essential. Unlike static timers, which operate building systems based on fixed schedules regardless of actual conditions, dynamic systems respond in real time to changes in occupancy or environmental factors, making them far better suited to industrial settings. Air quality is a good example
of why dynamic control is so important. If a rise in CO₂ or volatile organic compound (VOC) levels is detected in an occupied zone, such as the factory’s offices, automated ventilation can kick in immediately. Similarly, if the space is unused for several hours, lighting and airflow can scale down. These adjustments may seem small, but over time, they
proof factories are those where process automation and building automation are treated as part of the same ecosystem, not as silos. By unifying control at the facility level, manufacturers can improve energy performance, reduce operational waste and create safer, more comfortable working environments. This isn’t about gathering
more data – it’s about acting on it meaningfully. Using open, modular platforms, manufacturers can integrate building functions directly into their automation infrastructure. For example, our TwinCAT suite of automation tools can transform almost any PC-based system into a powerful real-time control platform for building services, which can also interface with supervisory control and data acquisition (SCADA) systems for monitoring and management. Engineers can use it to collect and act on data from environmental sensors, occupancy detectors and energy meters alongside their standard control logic. Process automation is a staple of modern production, but manufacturers should not stop here if they truly want to optimise their facilities. Energy, air quality and occupancy are just some of the parameters that should be tracked, and this data must be readily available in a meaningful format, not siloed. Using this information, manufacturers can implement solutions like dynamic controls to ensure spaces aren’t being lit, heated or ventilated unnecessarily.
White paper Don’t get caught out by tightening regulations and rising energy costs. To find out how building automation can help you deliver CO₂ savings, sustainability and social responsibility goals, download Beckhoff’s white paper on Solutions for energy-saving building automation by using this link:
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