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Cost-Effectiveness of Distributed Generation Technologies

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Cost-Effectiveness of Distributed Generation Technologies ( cost-effectiveness-distributed-generation-technologies )

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Cost-Effectiveness of Distributed Generation Technologies Along with the ability to view all the calculations, the user may change inputs to all calculations in many ways. First, the user can select different inputs for each technology line item when defining the batch run. Parameters available in the List of Technologies include:  Technology,  Utility,  Sector,  Fuel Type,  Climate Region,  Utility Rate,  Financing Option,  Rebate Type, and  Progress Ratio. The user may also select whether the current batch run will use the Base Case or the Greenhouse Gas (GHG) set of assumptions built into the model. If these inputs are not sufficient to specify the desired scenario then the user may open the individual input workbooks and make changes directly to the default inputs, allowing them to specify any scenario imaginable. It is suggested that, if the user is going to change the input workbooks, they make a copy of the original workbooks so that they can return to the default values if necessary. The results from these newly specified runs will be stored in a new workbook. The default adoptions are copied into the new workbook during the batch run. The user may change these default values as well if desired. The table of adoptions found in the Results workbook is editable, and new values copied into this tab will be automatically applied to the technology- level results to generate new aggregate results of the cost-effectiveness calculations. The bottom line is that the cost-effectiveness model is very flexible and transparent to the user. Any or all inputs may be changed by the user in an effort to specify their scenarios of choice. Itron, Inc. 4-6 SGIPce Approach and Methodology

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