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Welcome, my friend.

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I hope you all look great in the previous session.

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We just finished the preliminary design.

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Today, we are going to start with that perfect design.

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Knesset, today, we are going to only make a symbol of design, forget connected in the next lecture,

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we are going to choose a more complicated one.

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First.

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We are going to make this a fine name.

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Let's say.

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We are about to make three point six kilowatt system.

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Mean boy.

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You wait.

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Now, as you see right here, it's there.

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There is a message you need to follow.

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First, you want to you to insert a geographical site to enter the geographical site.

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You can edit from the meet the database and choose geographical site and search for U.K. and London.

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And this one now we have going to add it import and proces.

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And the way to imported.

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Now we have at the end of Key and Steve, two key.

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Is do you want to save it?

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Yes.

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I won't save it, okay.

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Now we have added.

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Export.

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Wookey.

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Those who both to the project, as you see right here, it's just a.

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Now, the second thing we need to know to do is save the project.

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Now we are going to save the project.

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That their reaction to it is going to be at this place.

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And we the fire name is going to cold.

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Three people, three point six.

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He'd want.

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He'd want NC seven message.

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We need to follow is their orientation now.

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We need to add the orientation and she's the.

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Can see right here.

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There are many types for Z or a solar system.

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Fix it.

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Title Blaine.

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Or several plantation, if you are going to use a different orientation and tracking.

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If you are going to make a solar treuting or other thing, this is choose the fixed plane type of plane.

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We won't.

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As you remember, the best and the lowest of the lowest losses is going to be at.

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Three point thirty nine degrees tell.

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And this is the lowest lost.

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And as most is going to be here also, as you remember, you can change it.

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According to the summer and winter as you want.

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OK.

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Now we are going to choose the whole year and the price.

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OK.

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So don't think we are going to need to define is that system.

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So System A, we are used to having to use their only one kind of Sabari.

53
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You can use a different kind.

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Different category for now.

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Let's keep it as one.

56
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And second, think we want to make this is a three point six Katar what?

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Sentencing.

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We are going to choose the type of their TV module, as you see right here.

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There are many companies, me, which provides a B.V. module.

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I usually use LG TV module.

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Net say we are going to use.

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You also can choose by year.

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Now we have here.

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Those types, which is produced by energy, need to choose.

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Three point three hundred.

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Three hundred and sixty what?

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Which is approximately 10 waddill.

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No.

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You can use optimizer if you aren't sensing we are going to need is the type of inverter you are going

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to connect to the grid.

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This is about the inverter.

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I usually prefer it as a.

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Inverter.

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So we are meant to choose a inverter.

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You can choose is inverter.

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If we choose one point five, we are going to need to inverter.

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If we choose 2.5.

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We also will need to inverter.

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But if we more desire to see prices, which is going to be 60 kilowatt.

80
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Let's say we are going to use one point five feet a lot and we are going to wait five kilowatt and use

81
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two inverter.

82
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Okay.

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Now we are going to use a two module in series.

84
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And once Frank Zeman said we need to solve, you should define at least one.

85
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During the inverter.

86
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Or in BBT input.

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INSS mean you'll need only one in liberty because you are already using get had to drink one strength,

88
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why strength?

89
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Does this mean you'll need only one inverter?

90
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You can use both inverter with different MBT.

91
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As a simple.

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You also can add more string and the front, the more string, another string, or you can also choose

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another.

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To me, they say, as this case, APB is CBB.

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APB has three point sixty two, what you can now choose on these this inverter and use eleven in serious

96
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module and one string.

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And this is going to be the best one, as you see here is a message, the arraignment's import is greater,

98
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Zain.

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They specified board of inverter.

100
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You this means that inverter has a higher power.

101
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You can reduce their power to three point three.

102
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But this is going to require to increase and need one more inverter.

103
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Mothers not problem.

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They are going to use on the one with Street by OKing.

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Also, you can see right here in Liberty, the M, b, b venue is going for their or operating point.

106
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Three hundred and fifty seven.

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At 60 degree and at 22, as you know, the temperature is affecting their voltage.

108
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As you see, the voltage is going to increase with reducing the voltage.

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Also, if you want to see their datasheet of this module, can do of in here.

110
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And seen their short circuit current message on board, Poyan, maximum burgoyne's voltage of a certain

111
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voltage and temperature.

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And the other thing.

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Also for the anniversary, you can see right here the minimum voltage maximum in the current and other

114
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differences.

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First of all, for the injured, we are going to use for London 60 hertz.

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Okay.

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And also SDC, as you remember, is the standard temperature condition, which is 1000 what their meters

118
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squared and 1:00 a.m. or air miss.

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Now, we have edited everything.

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We are ready now for simulation this to get to simulation and this similarly.

121
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OK.

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And we all want to save, let's say, this simulation called simulation.

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Now, we can't see there, but as a Raybert, you can see right here, this project is made by you,

124
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Weight Academy's a difficult side is going to be in London.

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The latitude and longitude and as the nick of time.

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The.

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I'll be to this thing.

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We are going to discuss also later.

129
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What is albedo and how to change it?

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And also, you have their simulation date and the plan.

131
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And also as this humiliation parameter.

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And you can seize a module used.

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And the Beezy module, as you see, is the LG three hundred and sixteen to one, C A five.

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Is mono crystalline silicon.

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We are going to use air in seven modules in Ceres and only one module in Bahrain.

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The total number of modules is going to be live in module that.

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Out the board of this module is flight we see.

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Hundred and sixty what beat?

139
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They're global.

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What is a globin aery power for Zehr, two to three is supposed to be three point six.

141
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But according to it, this is going to be three point nine seats is greater and saying three in six.

142
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Also, as they're 50 degrees, Lizzie, is you can find their inability voltage or the maximum ballpoint

143
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voltage and maximum power blind current.

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The area will needed to for the system is linked to be 19 meter square.

145
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The cell area is going to be 17 meter square.

146
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And inverter you are using is you in all from Zemanek manufacture, AP and the.

147
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Operating voltage is going to be three from three hundred and fifty to eight hundred and twenty and

148
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their E unit nominal bar is going to be three by six.

149
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They're nominal border issues going to be one point one.

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As a to sector and the other saying as effect, you can't see right here.

151
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According to the temperature in the second bead you can find.

152
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Their main parameter for ZET and the TLT as Moss and BVA module, name, number of module and the total

153
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nominal power and.

154
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Nominal bore, total and nominal, Bouwer is normal in a bar.

155
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D.C..

156
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A nominal bar.

157
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And also you can see their performance issue to performance ratio.

158
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And for their each month.

159
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January, February, March.

160
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And get the average for it is.

161
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At eighty eight point three percent.

162
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And this is good.

163
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Really good.

164
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And that would produce energy over the year.

165
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It's going to be three Gigha, three point nine Gigha.

166
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What our.

167
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And you can also see right here, the venue is a green venue, is the system losses and their produce,

168
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the boy inverter output is the red one.

169
00:14:23,140 --> 00:14:26,800
And you can also see the D.C..

170
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Global energy, you see, global energy yield for January is going to be forty point two and then the

171
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E.S. Energy is going to be thirty nine point two.

172
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You can see it and Barometer Square.

173
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You can see it right here.

174
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Their energy of every day.

175
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D.C. Energy is going to be one hundred and forty nine point three kilowatt.

176
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And according to the losses of the invertors, you can find the easy grid energy is going to be less

177
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to one hundred and forty five point four kilowatt hour.

178
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And the average also is going to be.

179
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You can also find as third beach the losses.

180
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The value of LOSO losses and the opposite.

181
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That celebrity audience is going to be nine hundred and seventy six kilowatt hour beer meter squared

182
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and.

183
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Which is going to give us nearly.

184
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Four hundred, four thousand and three hundred and fifty two kilowatt hour, this with their losses

185
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due to solar Iranians irradiance level 10, preacher quality Muthee a quality mismatch, losses between

186
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the modules and the strength of the armed resistance.

187
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Arie and other losses and inverter losses you can find the total energy output is going to be three

188
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point nine five eight megawatt hour.

189
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This is only a small exercise, and to let you how to train and then get to that airport and that bond

190
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simulation, this only a small project is the next lecture.

191
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We are going to get a more detailed project.

192
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And we are going to learn how we are going to handle unbalance in BBT.

193
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And if we have a different structure, how we can design it.

194
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OK.

195
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See you in the flesh.
