Tag Archives: NEXGEN SIMS

EU competition, collaboration and connections helping Epiroc solve mining challenges

Epiroc’s start-up mentality is enabling it to continue to solve the mining industry’s biggest challenges, but it is not doing this alone, according to Katarina Öquist, R&D Manager of Technology and Innovation in the Underground Division.

Speaking ahead of her appearance at the EIT Raw Materials Summit 2022 in Berlin, Germany – taking place on May 23-25 – Öquist said access to other industry partners, academic institutes and start-ups through initiatives like EIT Raw Materials continues to help the company overcome challenges the sector throws at it.

“Specifically on the EIT Raw Materials project, there is the possibility to take in young start-ups and academic institutes, which can prove key when considering the ‘kicks‘ the funding can provide such companies and initiatives,” she said. “It is important for these young technology companies to have a connection to applications, being able to test out concepts and ideas in a real-world environment with companies like Epiroc, and, at the same time, introduce new thinking into industries such as mining.”

This wide scope of participation is increasingly required when considering the future direction of the mining industry, according to Öquist.

Katarina Öquist, R&D Manager of Technology and Innovation in Epiroc’s Underground Division

“If you look at the mining industry, and the part I am in with Epiroc, we are experiencing the biggest technology shift ever,” she said. “We are looking at electrification, autonomy and digitalisation all at the same time. All of these have interdependencies and connections in between, which make it quite complicated.

“When I started in the start-up sector some 15 years ago, you often were looking to solve one problem, but, today, you are not offering the sole solution; you must interact with a much bigger technology ecosystem.

“For this, collaboration is very important.”

In this regard, EIT Raw Materials and European Union Commission funding are more important than ever, ensuring all stakeholders are connected and focused on coming up with workable solutions for industry to achieve their lofty ambitions.

While not tied to EIT Raw Materials, the NEXGEN SIMS project is a good example to highlight here.

NEXGEN SIMS builds on the EU-sponsored SIMS (Sustainable Intelligent Mining Systems) project, which aimed to demonstrate new technology and solutions for the mining industry. Running from 2017 to 2020, the SIMS project resulted in, among other things, the Epiroc line of battery-powered mining machines.

NEXGEN SIMS, meanwhile, is a consortium of 13 partners collaborating in an EU-sponsored project to develop autonomous, carbon-neutral, sustainable mining solutions, building on the SIMS success. The partners are Epiroc Rock Drills, AFRY – ÅF Digital Solutions, Agnico Eagle Finland, Boliden Mineral, Ericsson, KGHM Cuprum, KGHM Polska Miedź, K+S Minerals and Agriculture, Luleå University of Technology (LTU), LTU Business, Mobilaris MCE, OZ Minerals and RWTH Aachen University. The project, led by Epiroc, has a budget of €16 million ($16.8 million) and will run from May 2021 to April 2024.

“In the case of NEXGEN SIMS, it is built on a known partnership including new partners,” Öquist said. “After being involved with the majority of these partners since SIMS, we build from a high level of trust, which increases the possibility of success, especially concerning integration.

“Europe, in general, is very good in facilitating these type of collaborative projects that involve all segments of the innovation ecosystem – start-ups, industry partners and academics.”

According to Öquist, the NEXGEN SIMS project remains on track, with the integrations between electrification, automation and digitalisation likely to hold the most exciting outcomes for the wider mining industry.

For its part, Epiroc is also helping accelerate the development of start-ups of its own, taking stakes/interests in key technology providers and allowing them access to its much larger network.

ASI Mining, FVT Research and Mining TAG represent just a few examples here.

Öquist expanded on this with a reference to Mobilaris MCE, a company Epiroc acquired outright just last year, after five years of holding a 34% stake.

“They (Mobilaris MCE) started off in 1999 as a start-up from the telecoms business,” she said. “Due to them being in the northern part of Sweden, they tagged onto the mines and we ended up acquiring a minority interest in them.

“In the five years since, they have had a nice journey under the guise of Epiroc. They represent a local small start-up growing by going under the wings of a much larger industry partner.”

Epiroc, too, has benefitted from this collaboration, with Mobilaris MCE’s situational awareness technology recently becoming a key part of the OEM’s 6th Sense digital solution.

Not all OEMs would be willing to facilitate the growth of other companies in such a way, but Öquist, who has only been in her role with Epiroc for two years, puts this down to the company‘s unique culture.

“We call ourselves a 150-year-old start-up,” she said. “Regardless of how big we grow, that mindset remains – if someone highlights a problem, we set out to solve it through both internal and external collaboration.”

The smart miners putting people first

We’ve all heard about the sustained pressures mining companies are facing from stakeholders when it comes to changing the way they do business, with the use of new technology often touted as the way to transform the sector for the good of the industry and society.

Yet, as the COVID-19 pandemic has reinforced, these technologies can only work with the right suite of people to design, install, operate and maintain them.

The onset of machine learning and artificial intelligence in the mining space is expected to remove manual tasks in the exploration, development, production and maintenance processes of miners, but the real benefits come with freeing up skilled personnel to concentrate on more ‘transformative’ processes.

The same could be said for the automation of equipment and processes at mine sites, with contractors and mine owners able to use skilled workers across multiple operating stations above ground or at remote operations centres instead of being bogged down on one piece of kit on the mine site.

Keeping humans at the “centre” of this technology evolution is one of the underlying themes of the 2021 edition of the Smart Mining Conference (SMC2021), hosted by the Institute for Advanced Mining Technologies of RWTH Aachen University (AMT) and VDMA Mining, according to Aarti Sörensen, Scientific Research Assistant at AMT.

“Technology is an enabler, but you need to know what you actually want to achieve with any of these projects to be a success,” Sörensen told IM.

Aarti Sörensen, Scientific Research Assistant at AMT

A focus on this human centre transcends just the people on the mine site, or the neighbouring communities; it includes the wider society that interact, judge and rely on the outputs of mining.

Elisabeth Clausen, Professor & Director of AMT, told IM: “One aspect that is really important for the mining industry is how to deal with the public perception of the industry. All miners are lacking the talent they need to continue to grow. We have seen this come through in the numbers of university students we are educating. While every student currently looks like getting a job upon graduation, there are not enough people coming through the system with the skills required and the appetite to work in the mining sector. That is not only in disciplines like mine engineering, but also machine learning, automation, big data analytics, etc. Mining is not currently viewed as an attractive workplace when compared with the likes of Google and Amazon.”

The introduction of more ‘carbon neutral’ operations, improved safety procedures and flexible work practices will go some way to changing the perception and, to make the required leaps, collaboration will prove key.

This is a topic Sörensen and Clausen know well given the number of industry research projects the AMT is currently working on.

NEXGEN SIMS, the next generation of the EU-backed SIMS project, is a great example here.

Involving Epiroc, Ericsson, Boliden, Agnico Eagle Finland, KGHM Polska, K+S, OZ Minerals, Mobilaris MCE, AFRY, KGHM Cuprum, LTU Business, Luleå University of Technology and AMT, NEXGEN SIMS (the Next-Generation Carbon-Neutral Pilots for Smart Intelligent Mining Systems) aims to develop autonomous, carbon-neutral mining processes.

While more innovation networks are gaining traction across the globe – in Canada, the Canada Mining Innovation Council or the Centre for Excellence in Mining Innovation, and Expande, in Chile, provide examples here – Clausen said there is still some reluctance in the mining community to commit to large-scale collaboration and collaborative innovation.

“Companies see the need but have some hesitation where it involves large-scale collaboration,” she said. The dilemmas of data sharing, IP rights and the need to provide individual companies with a list of competitive advantage benefits remain.

Elisabeth Clausen, Professor & Director of AMT

“It all hinges on openness and trust,” Clausen said. “Openness can only be generated by trust.”

Sörensen said the ‘sweetspot’ for miner collaboration often comes from the mid-tier sector – those companies big enough and agile enough to commit funds and resources to projects, but not so big that they can develop their own technology in-house.

“They often open up their mine sites for demonstrations and are more open to collaboration,” she said.

“The collaboration dynamic between suppliers and miners is also changing, with miners now driving the technology development and putting their requirements to suppliers, instead of the other way round. Some miners have also built key relationships with research institutions and start-ups to come up with solutions to their problems, building collaboration or innovation ecosystems around their companies.”

Collaborations such as NEXGEN SIMS are seeing all parts of the mining ecosystem converge to help decarbonise the sector, as well as change the perception of how mines are operated. The use of 5G communication networks, battery-electric and automated machinery could see operators track equipment from a city centre in real time, without the need to even step on site.

What is clear is that more collaborations like this will be needed to decarbonise the industry, make it more appealing to younger people considering their career options, and change the ‘dirty’ and ‘dangerous’ connotations that are often associated with the word ‘mining’.

This represents a challenge as well as an opportunity, but, like all technology developments/transformations, it requires the ‘buy-in’ of people to be a success.

Clausen concluded: “We are convinced that the benefits of all the technologies and innovations can only be fully leveraged if we have the right people in place. Putting people at the centre of all activities is of utmost importance to change and challenge the perception of mining.”

SMC2021 will bring business leaders, policy makers and researchers together to discuss what ‘smart mining’ means against such a backdrop.