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 The structure of the rates workbooks are similar in nature to the avoided cost workbooks in that the electric workbooks are defined for 8,760 hours over the entire possible lifetime of the technologies (in this case 2007 to 2040). The technology production curve is supplied to the workbook and a stream of annual values is provided to the calculation engine. For the rates, however, there is a secondary set of worksheets that define the rates. These worksheets are used to calculate the vast number of values needed for the yearly calculation based on production. The structure of these workbooks will be discussed later. It should be noted that due to the tremendous number of calculations the link between the secondary worksheets and the main worksheet for the non-residential rate was broken to help minimize the calculation time during the batch runs. A separate workbook with all calculations has been maintained in the event that changes are needed or new rates are desired for future runs. Both the gas avoided cost workbook and the non-residential gas rates workbook are defined at the monthly level. The quantity of natural gas required to fuel the DG technology and the natural gas savings from heat capture are supplied to the workbook in monthly values. The rates workbook multiplies the gas needed and the gas saved by the appropriate rates and then provides the calculation engine with the value of the net increase in gas consumption. The residential workbook contains both gas and electric rates in one workbook. The workbook contains two worksheets that aggregate the data needed by the system and uses the other supplementary worksheet to calculate the appropriate rates given the utility and rate defined by the user for the technology. For the residential rate it was possible to preserve the calculations without degrading the speed of the system. Adoptions The Adoptions box in Figure 4-1 represents a single workbook that supplies adoptions data to the results workbook upon completion of each batch run. Adoptions in this workbook have been defined for every combination of technologies possible. The adoptions are defined annually and span from 2007 through 2020. 4.4.4 Outputs The model outputs data at both the technology and program level. The cost-effectiveness calculations are performed at the technology level. The adoption inputs are incorporated to allow for the aggregate calculation of the cost-effectiveness inputs and test values across technologies, sectors, and for the overall portfolio of technologies. Itron, Inc. 4-9 SGIPce Approach and Methodology

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