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HOMER Grid 1.9

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HOMER Grid simplifies the task of designing distributed generation for grid connected systems. HOMER's optimization and sensitivity analysis algorithms allow you to evaluate the economic and technical feasibility of a large number of technology options and to account for variations in technology costs and energy resource availability. Working effectively with HOMER Grid requires understanding its three core capabilities; simulation, optimization, and sensitivity analysis; and how they interact.

3eggs

Simulation, Optimization, and Sensitivity Analysis

Simulation: At its core, HOMER Grid is a simulation model. It attempts to simulate a viable system for all possible combinations of the equipment you want to consider. Depending on how you set up your model, HOMER Grid may simulate hundreds or even thousands of systems.

Optimization: The optimization step follows all simulations. The simulated systems are sorted and filtered according to criteria that you define, so you can see the best possible solutions. Although HOMER Grid fundamentally is an economic optimization model, you may also choose to minimize fuel usage.

Sensitivity Analysis: This is an optional step that allows you to model the impact of variables that are beyond your control, such as wind speed and fuel costs, and see how the optimal system changes with these variations.

HOMER Grid models both conventional and renewable energy technologies.

Power sources in HOMER Grid

Solar photovoltaic (PV)

Generator: diesel, natural gas

Electric Utility

Generator: gasoline, alternative and custom fuels, cofired

Fuel cell

 

Storage in HOMER Grid

Flywheels

Customizable batteries

Flow batteries

 

 

Loads in HOMER Grid

Get started quickly with the HOMER Grid Quick Load Builder and built-in profiles

Daily profiles with seasonal variation

Thermal (space heating, crop drying)

See also

Simulation Results

Optimization Results

Sensitivity Results

The Homer Support site has a searchable knowledgebase and additional support options. HOMER Online contains the latest information on model updates, as well as sample files, resource data, and contact information.UL LLC © 2022