Latest News Archive

Please select Category, Year, and then Month to display items
Previous Archive
26 May 2020 | Story Valentino Ndaba | Photo iStock
UFS campuses are transforming into research instruments while simultaneously improving campus operations through the Smart Grid initiative.

Imagine living in a smart home. Imagine monitoring your household’s electricity usage via an integrated system that would notify you of your daily electricity use, peak usage times, and tariffs and consumption at the location of the house. As a user, you would be able to take advantage of such information in order to manage your resources in a more efficient manner. This is just one example of what a Smart Grid can do.

The University of the Free State’s (UFS) Faculty of Natural and Agricultural Sciences has teamed up with the Department of University Estates to drive our very own Smart Grid initiative that is transforming the university’s power network into one with full control and monitoring. “A Smart Grid allows for resource optimisation and asset protection, especially in times like these,” said Nicolaas Esterhuysen, Director of Engineering Services. 

Why is it important for our university to have a Smart Grid?
Dr Jacques Maritz, Lecturer of Engineering Sciences at the Faculty, considers a Smart Grid the natural evolution of power grids in the era of Big Data, IoT and Machine Learning. Resources such as electricity, water and steam can now be monitored and controlled to promote savings and the protection of valuable infrastructure. “Aiming towards Smart Grid status, the UFS will improve resource service-delivery to its staff and students, while sculpting a digital twin of its campus’s power grid, consumer network and resource generators,” he added.
  
How will a Smart Grid improve student success?
The integrity, sustainability and continuous supply of energy directly affects the academic project on all three campuses. The implementation of a Smart Grid could allow improved service delivery and reaction time when any utility is interrupted, as well as maintaining the valuable infrastructure that serves the UFS community.

In what way does a Smart Grid improve the lives of staff members?
According to Dr Maritz  and Esterhuysen: “A Smart Grid will support staff to perform their teaching and research duties in a seamless manner, continuously optimising the energy that they consume to enable full comfort and reliability in energy supply, whilst simultaneously generating savings in energy and preventing wastage.”

The UFS already boasts most of the fundamental building blocks associated with the Smart Grid initiative, especially focusing on monitoring, grid protection, centralised and decentralised solar PV generation and software platforms to serve all these domains. However, to integrate all of these domains into one digital real-time paradigm will be a first for the UFS.

Some examples of the UFS smart grid applications currently in practice
Real-time remote monitoring and control that focuses on the following:
- We are able to detect power outages and don’t have to rely on customer complaints. This enables faster response time and fault identification, thus less downtime and an increase in reliability;
- Solar plant generation; 
- Monitoring our standby generation fleet; 
Identifying usage patterns and saving thereof;
Benchmarking buildings in terms of application usage, area or occupancy to determine energy efficiency and identify savings; and condition-based preventive maintenance that will increase reliability while saving costs.

News Archive

UFS Prestige Scholar shares her vision on crystallography with worldwide audience
2014-04-24

 
Dr Alice Brink
Dr Alice Brink, a Prestige Scholar and lecturer in the Department of Chemistry at the University of the Free State, was selected by UNESCO to participate, together with some 15 other young scientists from all over the world, in a round-table discussion at the Opening Ceremony of the International Year of Crystallography.

During this event, that took place in Paris, France, Dr Brink could, on stage, share her vision as one of the next generation of scientists.

“The 15 crystallographers consisted of eight young, established scientists and seven ‘young-young’ scientists who are starting their careers. We participated in a group discussion in order for the crystallographic community to better understand the challenges faced by young scientists across the globe.

“It was a great privilege to be invited to be part of this talented and diverse discussion group and to hear the challenges that are faced by young scientists from different parts of the world. It is also comforting to hear that scientific difficulties that are found in South Africa are commonly experienced in both First and Third World countries,” said Dr Brink.

“Crystallography has directly influenced the development of numerous scientific fields such as chemistry, physics, mathematics, medicine, engineering and material sciences. More inter-departmental collaboration would benefit greatly from crystallography, as this multi-faceted science provides foundation principles for applied research,” she said.

The United Nations declared 2014 as the International Year of Crystallography, and it was officially opened at the UNESCO Headquarters in Paris by the Secretary-General of the UN, Ban Ki-moon.

The ceremony was video-streamed live to more than 500 destinations all over the world.

We use cookies to make interactions with our websites and services easy and meaningful. To better understand how they are used, read more about the UFS cookie policy. By continuing to use this site you are giving us your consent to do this.

Accept