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Self-learning electronic automation system and related software for use in heat transfer solutions in commercial HVAC, and other process applications that involve fluid flow for the movement of heat energy, said system and software: minimizing any one or a combination of consumable inputs and/or outputs such as energy, water, natural gas, or carbon emissions, while monitoring and maintaining desired process settings, such as ambient humidity, temperature, flow rate, or other quantitative measures of output; computer software for use in learning and monitoring and tracking changes in equipment performance, system performance, system demands, ambient condition trends, by way of observation over time and time dependent and time independent modelling that is able to optimize in response to dynamic overall system changes resulting from aging of equipment, poor maintenance of equipment, removal of equipment from service, changing time schedule of the building occupant requirements, time dependent load profiles, time dependent weather profiles; Software and electronic control systems for monitoring, analysing, optimization and system level control and automation of: fluid pumps and fluid circulating pumps and parts therefor, refrigerant compressors, evaporative cooling towers, closed circuit adiabatic coolers, air handler units, fan coils, heat exchangers, condensers, evaporators, heat pumps, ground source borewells, solar collection panels, steam generators, boilers, natural gas burners, and regulating and balancing valves and various meters and instrumentation for temperature, flows, device poser consumption, weather conditions, time of use schedule for the aforementioned items; heat regulating apparatus providing operational control of heating or cooling of water circulation systems for commercial buildings, ice making or industrial process systems