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You are required to design a GCPV system for MIBC building. The configuration and dimension is shown in Figure 1. The rooftop material is metal

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You are required to design a GCPV system for MIBC building. The configuration and dimension is shown in Figure 1. The rooftop material is metal cladding, tilted 12. The design must fulfil the following criteria. 1. Based on the given area, the design must be oriented towards obtaining maximum power. Your team can select any type of module from the Tier 1 category and any type of high quality three phase string inverters. The design must provide the configuration together with proof of calculation in terms of: a) Type of PV module b) Total PV capacity c) Number of strings and modules in a string d) Type and number of inverter used e) Array-inverter size matching 2. Show through proper calculation the: a) Estimated annual and daily average energy yield b) Specific yield c) Performance ratio. State your assumptions on the losses that will occur and give your reasons. Hint: X is void area. Figure 1: Aerial view of MIBC, Ayer Keroh Melaka \( \begin{array}{ll}\text { H_Gh: } & \text { Mean irradiance of global radiation horizontal } \\ \text { H_Dh: } & \text { Mean irradiance of diffuse radiation horizontal } \\ \text { H_Gk: } & \text { Mean irradiance of global radiation, tilted plane } \\ \text { H_Dk: } & \text { Irradiation of diffuse rad., tilted plane } \\ \text { H_Bn: } & \text { Irradiance of beam } \\ \text { Ta: } & \text { Air temperature } \\ \text { FE: } & \text { Wind speed } \\ \text { H_Ges: } & \text { Clear sky radiation }\end{array} \) You are required to design a GCPV system for MIBC building. The configuration and dimension is shown in Figure 1. The rooftop material is metal cladding, tilted 12. The design must fulfil the following criteria. 1. Based on the given area, the design must be oriented towards obtaining maximum power. Your team can select any type of module from the Tier 1 category and any type of high quality three phase string inverters. The design must provide the configuration together with proof of calculation in terms of: a) Type of PV module b) Total PV capacity c) Number of strings and modules in a string d) Type and number of inverter used e) Array-inverter size matching 2. Show through proper calculation the: a) Estimated annual and daily average energy yield b) Specific yield c) Performance ratio. State your assumptions on the losses that will occur and give your reasons. Hint: X is void area. Figure 1: Aerial view of MIBC, Ayer Keroh Melaka \( \begin{array}{ll}\text { H_Gh: } & \text { Mean irradiance of global radiation horizontal } \\ \text { H_Dh: } & \text { Mean irradiance of diffuse radiation horizontal } \\ \text { H_Gk: } & \text { Mean irradiance of global radiation, tilted plane } \\ \text { H_Dk: } & \text { Irradiation of diffuse rad., tilted plane } \\ \text { H_Bn: } & \text { Irradiance of beam } \\ \text { Ta: } & \text { Air temperature } \\ \text { FE: } & \text { Wind speed } \\ \text { H_Ges: } & \text { Clear sky radiation }\end{array} \)

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