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Arduino power controler

$30-250 AUD

Concluído
Publicado há quase 10 anos

$30-250 AUD

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Description I have a large fan to be driven by a 3 phase DC brushless motor and electronic speed controller (ESC). The motor and fan will draw more than full power if set on full speed and not managed properly. The Arduino is to manage the input to the ESC to keep the motor running at over maximum non overload conditions, (or the power setting) but not exceeding the maximum power or current rating of the motor. There is a switch which allows the motor to run/not run. Must always stop when switch is de-activated and resume when switch is re-activated. Normal state is off. There is a potentiometer that will set the % of maximum power Arduino output to ESC. There is a hall effect current transducer to provide a feedback signal of current draw, transducer range 0-200, max current to be 110A. (Data sheet available). Sketch is to use the internal Vcc to calculate the current. There is a voltage divider to provide voltage feed back, 10:1, provide 0-5V input for a supply of up to 50V. The sketch, to run on Arduino Uno must; turn the motor on and off dependent on the state of the switch (deadman) Ramp the motor speed up and down dependent on the position of the pot (pot). 0-100% sense the current draw and voltage of the motor, compare current/max current to power/max power and control to the higher value (HV). PID control, input to pid controller (max current/power (input), pot position (set point), ESC (output) The ESC uses the same input as a servo but instead of the 1-180 degree rotation should be o-100% speed, servo sketches are available from Audrino library and playground. PID routines are available from Audrino library and playground. I must be able to easily identify and alter at will; max current, max power, and the pid tuning parameters kp, ki, [login to view URL] sensitivity of current transducer I also need a routine to be able to range my ESC, that is to be able to produce a 1-100% out put without the interference of the control loop, that is; input, deadman switch, and pot only. Output is 0-100% to the ESC. This routine is done infrequently and perhaps could be done with a jumper in the board. The hardware is Arduino Uno R3 board and Panucatt Devices, hall effect current transducer 0-200A. The deliverables are to include, sketch to upload into Arduino and a description which devices are to be plugged into which pins on the board.
ID do Projeto: 5839201

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Ativo há 10 anos

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Hi! My name is Victor, I am Physics engineer. I have worked in similar proyects using Arduino, I have made Temperature Controls, a Magnetic levitator and a Solar tracking. To solve your problem I plan made a wrapper for the PID Library and the sensor class, and make for you a simple API that allow you to easyly modify the parameters of the control. Have a nice day
$166 AUD em 3 dias
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10 freelancers are bidding on average $357 AUD for this job
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Greetings. My name is Jeremy Trammell and I represent a group of developers and designers in Portland, Oregon, in the U.S. We have extensive experience with the Arduino platform and would be happy to assist you with your closed loop controller project. We don't have all the external components you've spec'd in house, but given the relative simplicity of the project overall, I'm confident that we can deliver functional firmware to you on time.
$238 AUD em 5 dias
4,9 (3 avaliações)
3,8
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$77 AUD em 3 dias
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When you write "The ESC uses the same input as a servo" do you mean that ESC will input a signal that is ranged from 1mS to 2mS ? Thank you.
$222 AUD em 10 dias
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Hi, I have 14+ years of experience in this domain. More insight into the ESC will be helpful. Does this already have a controller or just the inverter board. What algorithm is(to be) employed. Current measurements are different based on algorithm as well. Please go through my profile. Thanks, Sankar for SpliceGenesys skype: kitsankar
$388 AUD em 20 dias
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Nie złożono jeszcze oferty.
$950 AUD em 14 dias
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0,0
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0,6
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Bandeira do(a) AUSTRALIA
E.Victoria Park, Australia
5,0
1
Membro desde abr. 22, 2014

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