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Calculation of CIS and CdTe module efficiencies

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An accurate and fast method to calculate the efficiency of Cu(In,Ga)Se-2 (CIGS) and CdTe thin-film solar modules is presented here. This comprises a new method to calculate the fill factor as a function of discrete and distributed series resistance, and of shunt conductance: a three-dimensional, third-order polynomial approximation is presented, and the expansion of the coefficients as a power series of 1/V-oc is given. Analytical expressions are presented which fit experimental data of the optical absorption in ZnO as a function of its thickness or sheet resistance. Together with a calculation outline of the series and shunt effects of the module integration, this constitutes a practical module design tool. This is illustrated with results of dependence of module efficiency on cell length, window and absorber sheet resistance, interconnect contact resistance, "softness" of the cell I-V curve, and absorber material (CIGS or CdTe). Optimal or critical values for these parameters are given. (C) 1998 Elsevier Science B.V. All rights reserved. References: 18

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