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Solar Power System Passed Desert Test
Written by Raina Xiao Tuesday, 27 September 2011 09:28
Solar Power System Passed Desert Test
The process was the survival and procedure of the
photo voltaic driven power battery demand circuit
over a 12V lead-acid vehicle power battery that
sourced power power to peripherals for example
LED lights, an audio tracks system, together
acquiring a h2o pump for just about any camp
bathtub as well as mist system.
The check ambiance was the comfortable Nevada
desert, without the water, no shade, no electricity,
nothing.
The repercussions of incapacity would yield a
miserable experience for just about any area check
like this. it experienced been broadly agreed the
fact that demand program should be monitored to
stop the power battery from draining entirely.
therefore appropriate measurements should be
used and collected in true time so that one could
preserve and recovery power battery life.
The apparatus integrated a demo aboard which
employed a photo voltaic power battery demand
controller (LT3652) linked to some 70W photo
voltaic screen (Solec SQ-70) which experienced a
ideal voltage of 17V and present-day of 4.45A.
The demand controller optimised power power
regarding the photo voltaic screen by checking the
power power curve and optimising it to demand the
power battery at 14V and 2A ideal current.
The query was, if we commenced acquiring a
completely charged power battery and maintained
demand through the day, would the photo voltaic
screen furnish satisfactory power power to keep
the power battery charged for all night time LED
lumination usage, a 12V h2o pump shower, many
evenings of ipod device playback of the 12V audio
tracks vehicle amplifier, too as other recharging
peripherals?
We needed to check on the usefulness regarding
the demand circuit. while it isn't hard to gauge
usefulness power-out/power-in x 100, it grew to
become impractical to think about readings with 4
multimeters.
So we created an “efficiency meter” employing two
demo boards that contains a microcontroller and an
analogue-to-digital ripper tools (ADC), which
measured and calculated usefulness in true time
and shown the results.
No meters, no calculator, and importantly, no
personal computer is required.
The program operates on its personal with only a
9V power battery and inside embedded
programming.
The real-time usefulness information was
employed to optimise the photo voltaic screen
demand system, for example getting rid of the
guesswork in positioning the photo voltaic panel,
identifying time of day time for most effective
charging, and appropriate price assortment of
power battery usage.
One demo aboard (DC590B) carries a PIC
microcontroller that interfaces while using other
demo aboard (DC571A), an 8-channel differential
24-bit ADC (LTC2418). Only 4 channels are used.
Two channels regarding the ADC gauge V-in and V
-out. one other two channels gauge I-in and I-out
in voltages just like a % of current, employing a
present-day sensation amplifier regarding one
other board. The aboard was somewhat modified
with resistor adjustments for just about any
0.1V/1A ratio.
I authored signal that could flip by way of 4
differential channels regarding the ADC, consider a
snapshot regarding the measured voltages,
convert, calculate efficiency, and exhibit regarding
the LCD. The accomplish result is genuinely an
extremely simple program that exhibits V-s (solar
screen voltage), I-in (input present-day when it
comes to the power battery charger), V-b (battery
voltage), I-out (output present-day regarding the
power battery charger when it comes to the 12V
lead-acid battery), and calculated usefulness (V-b x
I-out)/(V-s- x I-in) x 100.
Having just about every channel operate just like a
differential voltage measurement meant the fact
that filthy channels for V-in and V-out necessary
being tied together. In my design, channels three,
five, seven and nine are tied to ground. Channels
two and 6 are V-s and V-b. Channels 4 and 8 are I-
in and I-out.
The ADC has an inside reference voltage restrict of
2.5V that forced me to look at advantage of a
voltage divider regarding the V-s and V-b channels
so that one could continue to be within of the input
assortment of 20V maximum.
The resistor divider regarding the channel
maximises solution and inside signal recalculates
the right voltage value, acquiring a negligible total
of mistake correction.
The final steps was to generate the merchandise
operate away a 9V alkaline power battery to hold
roughly with me, but in add-on able to look at
advantage of while using 12V lead-acid battery. one
more aboard (DC823B) employed a buck regulator
to regulate 5V when it comes to the whole photo
voltaic screen power battery charger system. I
linked the 9V alkaline power battery when it comes
to the V-in terminals regarding the demo aboard
while using 5V output assortment jumper.
Living within the desert for a lot of times wasn't
easy, but acquiring power battery power power
supplied some creature comforts. we're actually
able to fight the comfortable environment acquiring
a bathtub and mist program by employing a 12V
h2o pump.
The campsite was lit up acquiring a string of LED
lights. We even performed our iPods by way of the
amplifier and speakers.
Having a real-time usefulness meter aided us to
price assortment our power power utilization
through the day, positioning photo voltaic screen
orientation and identifying how lengthy we could
use machines before the power battery drained.
It was however challenging, with dirt storms
blocking the sun, stopping photo voltaic panels from
charging the power battery and limiting power.
however the program worked as designed, the
power battery by no shows drained, and we
survived the area test
The process was the survival and procedure of the photo voltaic driven power battery demand circuit over a 12V lead-acid vehicle power battery that sourced power power to peripherals for example LED lights, an audio tracks system, together acquiring a h2o pump for just about any camp bathtub as well as mist system.
The check ambiance was the comfortable Nevada desert, without the water, no shade, no electricity, nothing.
The repercussions of incapacity would yield a miserable experience for just about any area check like this. it experienced been broadly agreed the fact that demand program should be monitored to stop the power battery from draining entirely. therefore appropriate measurements should be used and collected in true time so that one could preserve and recovery power battery life.
The apparatus integrated a demo aboard which employed a photo voltaic power battery demand controller (LT3652) linked to some 70W photo voltaic screen (Solec SQ-70) which experienced a ideal voltage of 17V and present-day of 4.45A.
The demand controller optimised power power regarding the photo voltaic screen by checking the power power curve and optimising it to demand the power battery at 14V and 2A ideal current.
The query was, if we commenced acquiring a completely charged power battery and maintained demand through the day, would the photo voltaic screen furnish satisfactory power power to keep the power battery charged for all night time LED lumination usage, a 12V h2o pump shower, many evenings of ipod device playback of the 12V audio tracks vehicle amplifier, too as other recharging peripherals?
We needed to check on the usefulness regarding the demand circuit. while it isn't hard to gauge usefulness power-out/power-in x 100, it grew to become impractical to think about readings with 4 multimeters.
So we created an “efficiency meter” employing two demo boards that contains a microcontroller and an analogue-to-digital ripper tools (ADC), which measured and calculated usefulness in true time and shown the results.
No meters, no calculator, and importantly, no personal computer is required.
The program operates on its personal with only a 9V power battery and inside embedded programming.
The real-time usefulness information was employed to optimise the photo voltaic screen demand system, for example getting rid of the guesswork in positioning the photo voltaic panel, identifying time of day time for most effective charging, and appropriate price assortment of power battery usage.
One demo aboard (DC590B) carries a PIC microcontroller that interfaces while using other demo aboard (DC571A), an 8-channel differential 24-bit ADC (LTC2418). Only 4 channels are used. Two channels regarding the ADC gauge V-in and V-out. one other two channels gauge I-in and I-out in voltages just like a % of current, employing a present-day sensation amplifier regarding one other board. The aboard was somewhat modified with resistor adjustments for just about any 0.1V/1A ratio.
I authored signal that could flip by way of 4 differential channels regarding the ADC, consider a snapshot regarding the measured voltages, convert, calculate efficiency, and exhibit regarding the LCD. The accomplish result is genuinely an extremely simple program that exhibits V-s (solar screen voltage), I-in (input present-day when it comes to the power battery charger), V-b (battery voltage), I-out (output present-day regarding the power battery charger when it comes to the 12V lead-acid battery), and calculated usefulness (V-b x I-out)/(V-s- x I-in) x 100.
Having just about every channel operate just like a differential voltage measurement meant the fact that filthy channels for V-in and V-out necessary being tied together. In my design, channels three, five, seven and nine are tied to ground. Channels two and 6 are V-s and V-b. Channels 4 and 8 are I-in and I-out.
The ADC has an inside reference voltage restrict of 2.5V that forced me to look at advantage of a voltage divider regarding the V-s and V-b channels so that one could continue to be within of the input assortment of 20V maximum.
The resistor divider regarding the channel maximises solution and inside signal recalculates the right voltage value, acquiring a negligible total of mistake correction.
The final steps was to generate the merchandise operate away a 9V alkaline power battery to hold roughly with me, but in add-on able to look at advantage of while using 12V lead-acid battery. one more aboard (DC823B) employed a buck regulator to regulate 5V when it comes to the whole photo voltaic screen power battery charger system. I linked the 9V alkaline power battery when it comes to the V-in terminals regarding the demo aboard while using 5V output assortment jumper.
Living within the desert for a lot of times wasn't easy, but acquiring power battery power power supplied some creature comforts. we're actually able to fight the comfortable environment acquiring a bathtub and mist program by employing a 12V h2o pump.
The campsite was lit up acquiring a string of LED lights. We even performed our iPods by way of the amplifier and speakers.
Having a real-time usefulness meter aided us to price assortment our power power utilization through the day, positioning photo voltaic screen orientation and identifying how lengthy we could use machines before the power battery drained.
It was however challenging, with dirt storms blocking the sun, stopping photo voltaic panels from charging the power battery and limiting power. however the program worked as designed, the power battery by no shows drained, and we survived the area test.
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