LM

Liam MacIsaac

Chief Architect at Smarter Grid Solutions

Liam MacIsaac has a diverse work experience in the software engineering field. Liam started their career as a Software Engineer at IBM United Kingdom Ltd in 2007 and 2008. Liam then joined Smarter Grid Solutions in 2012, where they gradually progressed from a Software Engineer to a Senior Software Architect, a Principal Software Architect, and finally, the Chief Architect. Liam's expertise and knowledge in software architecture and engineering have been honed through their various roles and responsibilities in different organizations.

Liam MacIsaac's education history begins in 2003 when they attended the University of Glasgow for their Master of Engineering (MEng) degree in Electronics and Software Engineering. Liam completed this program in 2008. Afterward, they pursued a Doctor of Philosophy (PhD) degree in Electrical and Electronics Engineering at the same university, which they achieved in 2012.

Location

Glasgow, United Kingdom

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Smarter Grid Solutions

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Smarter Grid Solutions is an enterprise energy software company with a unique end to end approach to Distributed Energy Resource Management Systems (DERMS) to deliver net zero energy systems, operating internationally from bases in the UK and US. Our products, Strata Grid, Strata Resilience and Cirrus Flex, have enabled the connection and real-time monitoring and control of over 521 MW of Distributed Energy Resources (DER) and delivered over $400 million of value to its customers. Smarter Grid Solutions’ DERMS products are used by distribution utilities, energy service companies and microgrid operators to manage grid capacity and resilience and to seamlessly integrate energy assets to the grid and market. Smarter Grid Solutions is a Mitsubishi Electric company. Together, Mitsubishi Electric Power Products, Inc. (MEPPI) and Smarter Grid Solutions will provide combined distributed energy resources management software and grid control products to enable electric utilities to respond to energy systems and maximize the performance from their electric grids.


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51-200

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