unstoppable energy

Hi there, Is there any power source that never be stopped?  Well, I am thinking of producing energy from the working principle of electromagnetic induction. it can be a charger, so no worries for short battery life (or maybe replace battery). I am lack of idea on how ti get it start.  Seeking for advice.  TQ.

Topic by brian lew   |  last reply


perpetual energy

I conceived an idea during my physics class in 1997 that having a perpetual energy is possible. i am currently working on it with the little funds i have which will take some time to complete and try it

Topic by cleanenergy bostile   |  last reply


Energy to matter?

                One of my friends recently talked to me.  The first thing he said was, "Energy to matter."  He said it in the way he talks when we're planning on building something dangerous, unlikely to work, and quite possibly FBI watchlist-worthy. Though I know it's been looked into before, this got me thinking:  does anyone have any ideas on practical applications of the equivalency between energy and matter?  (aside from the atomic bomb--e.g.  Fabricators that carry hundreds of products' worth of materials in a small, energy-dense source, like a battery?)

Question by mad magoo   |  last reply


Sound Energy?

I would like to know if there is a way to amplify sound waves.  I would also like to know if the frequency of the wave affects the power produced. 

Question by AlexxSolace   |  last reply


Energy wheel

This Idea is based on Magnetic Repulsion and Kinetic force. According to diagram there will be a  Wheel and a magnet(1) will be attached with this wheel. There will be a balance system(seesaw system) and two magnets(2no.magnet and 3no. magnet) will be attached with this balance system . when 1 magnet will repel 2 no.magnet then the 2 no.magnet will move upward and due to this movement the 3 no. magnet will come down and will work to repel 1 no. magnet and wheel will start to rotate. when 1 no. magnet will again repel 2 no.magnet after a rotation then the 3 no. magnet will again work to repel the 1 no.magnet. In this way the wheel will rotate again and again.The magnetic strength of 1 no. magnet will be high than 2 no. and magnetic strength of 3 no. magnet will be high than 1 no. magnet. I want to develop this technology.

Topic by vikram_gupta11   |  last reply


free energy!!!!!

Just take a look here http://www.youtube.com/watch?v=RkLfpXpO5sQ cant this be increased in number and make energy just have a look a scenario cant 12volt dc motor be driven with 5 such wheels with more strong magnets. motor http://www.google.com.pk/imgres?hl=en&client;=firefox-a&hs;=RKo&sa;=X&rls;=org.mozilla:en-US:official&biw;=1024&bih;=667&tbs;=isz:m&tbm;=isch&prmd;=imvns&tbnid;=cJRbQTZiqa21GM:&imgrefurl;=http://www.submarineboat.com/rov_joystick_for_props.htm&docid;=uxrFBCiE5M-zVM&imgurl;=http://www.submarineboat.com/images/rov/motor_dc.JPG&w;=500&h;=320&ei;=q55WUNjSDKr04QSZ6ID4Dg&zoom;=1&iact;=hc&vpx;=450&vpy;=191&dur;=3657&hovh;=180&hovw;=281&tx;=163&ty;=96&sig;=108762749557294498357&page;=1&tbnh;=120&tbnw;=187&start;=0&ndsp;=15&ved;=1t:429,r:2,s:0,i:77 what is expected

Topic by SARWAR_SARWAR   |  last reply


Solar Energy

If you have any idea about solar cooker than share with ME... 

Topic by ramoliya_ankit   |  last reply


models on harnessing energy?

A

Question by    |  last reply


The future of "mobile" energy...

Right now our current standard is still to use LI-Ion batteries when it comes to rechargable and power demanding devices.We all want more power for our phones, laptops or battery powered tools on the job.And we also want to be able to charge our batteries faster and faster.Back in the old days a D-Cell like lead acid battery in a flashlight was good for about 3 hours until it started to dim a bit.With up to 4 batteries inside they were not just heavy but also quite hazardous.Chargin was usually done over night and you just hoped they were not blowing up while charging.I spare you the other types that came after and that we still use as they all have their good and their bad sides.If we trust our marketing experts than quite soon we will only have electric cars on our roads and battery the size of a suitcase shall be able to run your car for hundreds of miles.The ideas of graphite based batteries or those using crystals and their forming reactions are all great and promising.Some will certainly make it to the consumer in a few years.The one thing that we are never told though is where all the energy to charge those batteries is supposed to come from.Replacing the combustion engine with electric motors is one thing but if no fossil fuel is used....Energy does not come out of thin air!Right now a lot of countries already struggle to provide a reliable power supply grid and distribution network.If you ever enjoyed a scorching hot day during a blackout caused by everyone using too much electricity you know what I mean...The population is growing as fast as the energy demand for our industries.Solar and wind are well and good but without proper storage solutions of not real use because no one can really predict how much they can produce.You know, weather and such things...If we trust our so called experts than all will come together really nice.By the time we have really powerful batteries we will have enough alternative energy supply chains up and running to keep them charged.I have a few issues with this entire concept, so let's see what other people have to about this:Imagine you have a nice and big cabin somewhere really remote and beautiful - but with no electricity for miles.Obvious solution for the modern hunter or nature lover is to invest into free energy.Free because that is how your solar, battery and inverter system would be advertised.You buy the stuff and after that all the electricity comes for free - the things pays for itself!Reality is a bit off though as you need to maintain and replace the costly batteries over time and such things.All this however totally changes for a residential home.Getting a huge solar system on your roof is no problem.Getting off the grid next to impossible.You see, once (or even before) you sign up for an electricity contract it is defined that your home is in a residential area.This brings certain limitations like the requirement to connect ot gas (if available), water, sewage and electricity.Only way to enjoy your "free" energy is by getting a good deal with your supplier.Some countries do it differently but around here it goes like this:Whatever you use still comes right off the grid.That is because your solar system really struggles to cope with load changes and providing surplus back to the grid.And since your meter is not capable ofworking properly with it either...To make it "fair" it is metered how much you use and how much you supply.Most companies here even do this on at least an hourly base - just to fair...For your bill the amounts are then adjusted.What you supplied is taken off.Sadly in most cases going negativ is not an option - if you provide more than what you use only your supplier is laughing.To make things worse what you supply is valued far lower than what you get from the grid.Often the difference is above 20%.Control....Around here quite a few people basically covered house, shed, carport and all with solar panels.This was while we had a great subsidy from the government to go solar...After now over three years most of these people still struggle to get anywhere near even for their investment.Without the grants the timeframe to break even was estimated to be around 12 years - which is about the time for when you need to replace the lot anyway and start over.Some do get nice savings on their bills though but families with kids not so much...If you have little to no chance to get your investment back before you have to replace it, then it is not really that much of a good deal after all.Imagine in town with hundreds of small houses everyone would be able to get the same money back for the electricity they provide...Pay 18 cents per kWh from the grid and get 18 cents perkWh for what you supply and once you provide more than you use you get money back.The providers won't allow this to happen as it means they not just loose some money but also they would lose control.How could they justify another price hike?How could they explain the blackouts?Why should tey pay you at all... ;)If a city with enough open and unused space would decide to go solar on a huge scale and while add also add a lot wind turbines....Someone would need the electricity provided and someone need to step in for those times where demand is above supply.Here the old triangle of power goes into full swing....You see a city or town would need also need a sub station to handle the electricity and to distribute it to the town houses, shops and so on.Funny thing is that only a "provider" can do such things.Doing it privat is usually only possible in really remote areas, like big mining outposts that just have no other option than using generators or solar/wind.And in most areas a town or city is no longer allowed to be a provider of electricty - at least not in the drirect form.Buying in bulk is no problem, having your own supply system however is not in the books.Right now most, if not all the big wind and solar farms are owned and operated by energy providers.There is billionaires everyhwere who could build a solar and wind farm the size of Texas if they really wanted but they won't do it either...Starts with the land, goes over the usage rights and won't end with activists claiming how bad it all is.Means it won't happen and if it does then the energy providers get together and claim they guy might have money but does not have the right to provide energy unless he actuall starts a corresponding company and plays by their unwritten rules.Can we still dream about it though?The dream is kept alive like the fire of hope that is only a tiny amber.If you sign up for electricity you are asked if you would like to pay bit extra so your electricity comes from alternative sources.Why is that bad, after all it is green?The initial investment might be huge for a wind farm but after that it is more or less just providing mone out of thin air.You can look the cost up for the new windfarm build near you.Same for the electricity prices in that area.And also the expected output of the entire farm.Do the math and calculate how quickly they break even....Once they do it only profit but you still pay the extra to go green.A bit like the new road that came with a toll....After 5 years the motorists paid it off but 10 years later they are still being charged while the road is disintegrating...Now add electric cars and our constantly rising consumption to the mix...We can't provide the electricity ourselfs as we don't get fully paid for it, we can go off grid either.The atom as the source of electricity is being phased out slowly as well.Finally as some might say, considering the thausands of years we have to deal with the produced waste and what aftereffects the storage might bring.Our providers will keep their grip on us for as long as they can.No government will stop them as in return they wouldn't have electricity.A cold war if you like.We never cared how much fuel our cars use until the OPEC decide to limit supplies and drive the prices up.And you can see the riches especially in Saudi Arabia.For most of the big OPEC players it really does not matter anymore whether or not they have oil or not.They make the same or even more money by other means and more modern means now.After this initial shellshock we woke up and decided that for the shopping trip of the wife a small car with just 4 cylinders will do.Overcrowded cities and roads also pushed us more into thinking small.Again it took force to go further, this time by governments slowy "going green".Emmissions, greenhouse gasses, polution, particles and corbon monoxide...Sounded all godd in the ads but it meant we could no longer afford our old car or even got banned from entering the town center with it.But a lot people still can't afford a modern car that meets the standards.Once they finally got the money and car the laws change again and they need yet again a newer car.This created a huge export and recyling market and profits for other people though.And what differenc did it all make in reality?While we were forced to improve and lose money countries like the US refused for years to even consider reducing the pollution.Countries like China and Russia even increased their pollution to impossible levels.We all remember how Bejing was literally shut down for the Olympics so the athletes have a chance to survive the games...We know how the pollution or global warming problem is misused to make money.The governments get huge payouts in the form of taxes from those cars that can't meet the specs.The dealer smiles with the increased sales of cars.And again the government smiles too as they get taxes from this as well.We know it happened before and is still happening with everything realted to fossil fuels, global warming and pollution, so why would electricity be any different?Reactors and coal fired power plants are phased out with basically nothing to replace them.Solar and wind will provide and till then we keep what we really need to keep....There is no plan for what comes after coal and the atom.There is no alternative.Batteries need electricity.And providers will always be the middleman controlling both the price and the availability.So how does this actually work you might wonder...No matter who invents or produces a new device to provide electricity - there is a very limited market for them.A farmer can't buy a full size wind generator and place it on his land...But an electricity provider can buy thausands of them....And if you go bigger than ask yourself who would need a 10 or 100MW fusion generator?Providing electricity is only a viable option if you go big and if you can sell the excess with a profit margin.Leaves only our electricity providers as customers.If you don't have to care about the buying price because it will be put down one way or the other onto your customers than it is like a credit.Only difference is that once it is paid off you start to get money back!Imagine that for your bank account ;)And if you know what you sell can have a very generous profit margin because your buyer does not care then the solar or wind farm will be quite costly to build..."We know we are not cheap, but who else can deliver you what you need?"And like our big supermarkets there will be an agreement on what the wind generator can cost.Ressources....Be it wind, be it solar or just the modern electric motor in your car - they all require stuff that is very limited on our planet.Take Neodyminum.Without it we have no wind generator or fancy motors as we wouldn't have powerful enough magnets.Vital elements and mineral required are only available in a few spots on our erth in quantities justifying mining them.I won't make this much longer than it already is, so please look up what is really needed to keep our future solow and wind projects alive.Then go and check where we can find thes things in good quantities.Once you did you might realise why the world tolerates the abuse of human rights, freedom or just self expression in other countries ;)If only China would stop today to export and sell their rare earths and prcious minerals basically our entire production worldwide would suffer quickly.Entire industries break down quickly and prices for certain things would literally explode.The US already started to re-open long abandoned mining projects as suddenly even the most costly operations become viable again.Think about this next time you fancy a world free of cars and truck using combustion engines ;)

Topic by Downunder35m   |  last reply


High Energy shenanigans

Blowin up small fruits with my capacitor bank, and a little look at my homemade plasma globe hopefully ill add more of a description at some point, feel free to comment and ask questions

Topic by The 4th Doctor   |  last reply


Energy saving ideas???

I am on a fixed income and need homemade project ideas to cut my hydro bills down that have doubled in the last 3 years. Any low cost project plans would be helpful to me and my family. Thanks!

Question by    |  last reply


Storing Lightning Energy? Answered

Hey Guys, I have wondered on this from a long time. Can lightning energy be stored? Lightning occurs when water droplets rub together right? Which means this is static electricity. As lightning strike the highest point why dont they make a huge conductive bar? And as i know from the various lyden jar projects storing static isnt that difficult. So why dont they do it? I asked my dad  that how much is it per lightning strike he said millions of kilovolts if that is true then why dont they store it? My dad said that its because they cant store that much electricity. Is that the only reason? BTW I'm 12 so please ignore my dumb electric knowledge :).

Question by SA-DIY   |  last reply


Is free energy using two DC Motors is real or fake? Answered

I have recently seen the free energy using two DC motors.After watching it.I had interest in making that.At the same time, one question has raised in my mind.That is according to the newton law ,energy can neither be created nor destroyed or it can transform from one form to another.According to that free energy seems to me as fake.Any one explain me, is it real or fake?

Question by Rajkumar2506   |  last reply




anyone working on an magnetic over unity generator?

I was wondering if anyone could help me out with instructions or at least point me in the right direction for a magnetic over unity generator

Question by Loki1978   |  last reply


why water is one of yhe best fire extinguisher??

Hydrogen is one of the best fuel,which can be fired only in the presence of oxygen.on the contrary water which is made by hydrogen ?

Question by varun saxena   |  last reply



anybody experiment with zero point energy?

I have alwats thought there was usable energy in magnets but have been assured that there isn't. Still can't accept it.

Question by boogiemann   |  last reply


Free Energy... NOT From Saltwater!

This one's for Kiteman. Right after an independent cancer cure researcher in Ohio discovers that he can make saltwater burn, we get a story from the UK about a water heater with an efficiency of 250%-300%.The device seems to break the fundamental physical law that energy cannot be created from nothing - but researchers believe it taps into a previously unrecognised source of energy, stored at a sub-atomic level within the hydrogen atoms in water. The system - developed by scientists at a firm called Ecowatts in a nondescript laboratory on an industrial estate at Lancing, West Sussex - involves passing an electrical current through a mixture of water, potassium carbonate (otherwise known as potash) and a secret liquid catalyst, based on chrome. full story

Topic by fungus amungus   |  last reply


Question about how much energy the internet uses?

On BBC World Service yesterday a man stated that sending a 4.8Mb  email creates as much greenhouse gas emissions as boiling 17.5 kettles of water. I just cannot see how this can be true; he said it twice so I did not mishear. So unless I misunderstood entirely could anybody explain how?

Question by FriendOfHumanity   |  last reply


How do you move solar energy from the panels to your house?

How/what does the panel hook up to to bring the electricity into your house, and back to the grid if it's over producing?

Question by dallen518   |  last reply




Isn't it written in stone that you have to put more energy into water than can be extracted from it?

I can see how astronauts could need oxygen from water on the moon, but haven't we always been told it takes more energy to separate the molecules than can be gained from burning them? In reply to a response from my last question, I referenced something I read a long while back. It was about deep space probes extracting water from Mars or other planets and using it for fuel to go even further (faster I'm assuming). So sure, astronauts need to breathe, and would be able to recoup some of the lost energy  from the hydrogen, but how would an unmanned space probe benefit from such a loss of energy?

Question by owendrake   |  last reply




whether this work? whether thiss is possible?

Http://www.youtube.com/watch?v=qVdK5v725eo&list=HL1334487146&feature=mh_lolz

Topic by Gvozdenovic   |  last reply







How to harness the energy in snow

I found a thread that asked this question previously on instructables but the author wanted to harness the kinetic energy of falling snow, and many of the criticisms involved the unpredictability of when snow will fall.I am specifically curious if it is possible to create a machine to remove snow that uses the energy of the snow itself. Ideally, it would melt the snow and use the water or steam to power itself.The things Canadian winters do to the mind...

Topic by shareefhadid   |  last reply


how to design and build a solar power monitoring system?

Budget less than USD100, require a small solar panel(<100W will do), thin film type solar panel, need some voltage and current sensors, data acquistion card (which type of card shd i choose?) i will need to monitor its output voltage, current and power, how should i start?

Question by project_stress   |  last reply


Cheap mass solar energy

I am going on a trip to mexico to build houses for poor families. I was wondering, is there any solution to lighting where our team could make multiple packages that we could give to the families that would supply them with light, etc. ?

Topic by Twistman   |  last reply


Has science ever touched on the possibility of using the vacuum of space for electricity?

I have no real knowledge of anything practical or important so forgive me if I sound ignorant . I guess I kind of am. To me it seems like it would be possible to use the constant vacuum of space to create electricity. Like perhaps some type of reverse piston pulling against elastic resistance inside a sealed container therefore creating sound waves which could be harnessed like in a wind belt generator. This cracked out idea occurred to me after seeing the wind belt generators made from hard drive voice coils on here. Until that I didn't even know there was such a thing as a wind belt generator. Again, I'm sorry if this question offends any of the real Einsteins on here who can see why something like that would so obviously NOT work.

Question by owendrake   |  last reply


I have a problem in this code for Arduino UNO , Can you help me?

#include #include #define SOL_ADC A0     // Solar panel side voltage divider is connected to pin A0 #define BAT_ADC A1    // Battery side voltage divider is connected to pin A1 #define CURRENT_ADC A2  // ACS 712 current sensor is connected to pin A2 #define TEMP_ADC A3   // LM 35 Temperature is connected to pin A3 #define AVG_NUM 10    // number of iterations of the adc routine to average the adc readings #define BAT_MIN 10.5  // minimum battery voltage for 12V system #define BAT_MAX 15.0  // maximum battery voltage for 12V system #define BULK_CH_SP 14.4 // bulk charge set point for sealed lead acid battery // flooded type set it to 14.6V #define FLOAT_CH_SP 13.6  //float charge set point for lead acid battery #define LVD 11.5          //Low voltage disconnect setting for a 12V system #define PWM_PIN 3         // pin-3 is used to control the charging MOSFET //the default frequency is 490.20Hz #define LOAD_PIN 2       // pin-2 is used to control the load #define BAT_RED_LED 5 #define BAT_GREEN_LED 6 #define BAT_BLUE_LED 7 #define LOAD_RED_LED 8 #define LOAD_GREEN_LED 9 //-------------------------------------------------------------------------------------------------------------------------- ///////////////////////DECLARATION OF ALL BIT MAP ARRAY FOR FONTS//////////////////////////////////////////////////////////////// //-------------------------------------------------------------------------------------------------------------------------- byte solar[8] = //icon for solar panel {   0b11111,0b10101,0b11111,0b10101,0b11111,0b10101,0b11111,0b00000 }; byte battery[8] =  //icon for battery {   0b01110,0b11011,0b10001,0b10001,0b10001,0b10001,0b10001,0b11111 }; byte energy[8] =  // icon for power {   0b00010,0b00100,0b01000,0b11111,0b00010,0b00100,0b01000,0b00000 }; /*byte alarm[8] =  // icon for alarm { 0b00000,0b00100,0b01110,0b01110,0b01110,0b11111,0b00000,0b00100 };*/ byte temp[8] = //icon for termometer { 0b00100,0b01010,0b01010,0b01110,0b01110,0b11111,0b11111,0b01110 }; byte charge[8] = // icon for battery charge {   0b01010,0b11111,0b10001,0b10001,0b10001,0b01110,0b00100,0b00100, }; byte not_charge[8]= {   0b00000,0b10001,0b01010,0b00100,0b01010,0b10001,0b00000,0b00000, }; //-------------------------------------------------------------------------------------------------------------------------- ///////////////////////DECLARATION OF ALL GLOBAL VARIABLES////////////////////////////////////////////////////////////////// //-------------------------------------------------------------------------------------------------------------------------- float solar_volt=0; float bat_volt=0; float load_current=0; int temperature=0; int temp_change=0; float system_volt=0; float bulk_charge_sp=0; float float_charge_sp=0; float charge_status=0; float load_status=0; float error=0; float Ep=0; int duty =0; float lvd; float msec=0; float last_msec=0; float elasped_msec=0; float elasped_time=0; float ampSecs = 0; float ampHours=0; float watts=0; float wattSecs = 0; float wattHours=0; // Set the pins on the I2C chip used for LCD connections: //                    addr, en,rw,rs,d4,d5,d6,d7,bl,blpol LiquidCrystal_I2C lcd(0x27, 2, 1, 0, 4, 5, 6, 7, 3, POSITIVE);  // Set the LCD I2C address // In my case 0x27 //******************************************************* MAIN PROGRAM START ************************************************ void setup() { Serial.begin(9600); pinMode(BAT_RED_LED,OUTPUT); pinMode(BAT_GREEN_LED,OUTPUT); pinMode(BAT_BLUE_LED,OUTPUT); pinMode(LOAD_RED_LED ,OUTPUT); pinMode(LOAD_GREEN_LED,OUTPUT); pinMode(PWM_PIN,OUTPUT); pinMode(LOAD_PIN,OUTPUT); digitalWrite(PWM_PIN,LOW);  // default value of pwm duty cycle digitalWrite(LOAD_PIN,LOW);  // default load state is OFF lcd.begin(20,4);   // initialize the lcd for 16 chars 2 lines, turn on backlight lcd.backlight(); // finish with backlight on  lcd.createChar(1,solar); lcd.createChar(2, battery); lcd.createChar(3, energy); //lcd.createChar(4,alarm); lcd.createChar(5,temp); lcd.createChar(6,charge); lcd.createChar(7,not_charge); lcd.clear(); } void loop() { read_data();             // read different sensors data from analog pin of arduino system_voltage();        // detect the system voltage according to battery voltage setpoint();      // decide the charge set point according to system voltage charge_cycle();         // pwm charging of battery power();                // calculate the load power and energy load_control();         //control the load led_indication();       // led indica print_data();            // print in serial monitor lcd_display();           // lcd display } //************************************************************ PROGRAM END ************************************************* //------------------------------------------------------------------------------------------------------ ////////////////// READS AND AVERAGES THE ANALOG INPUTS (SOLRAR VOLTAGE,BATTERY VOLTAGE)//////////////// //------------------------------------------------------------------------------------------------------ int read_adc(int adc_parameter) {     int sum = 0;   int sample ;   for (int i=0; i   {                                        // loop through reading raw adc values AVG_NUM number of times      sample = analogRead(adc_parameter);    // read the input pin      sum += sample;                        // store sum for averaging     delayMicroseconds(50);              // pauses for 50 microseconds    }   return(sum / AVG_NUM);                // divide sum by AVG_NUM to get average and return it } //------------------------------------------------------------------------------------------------------------- ////////////////////////////////////READ THE DATA////////////////////////////////////////////////////////////// //------------------------------------------------------------------------------------------------------------- void read_data(void) {     //5V = ADC value 1024 => 1 ADC value = (5/1024)Volt= 0.0048828Volt     // Vout=Vin*R2/(R1+R2) => Vin = Vout*(R1+R2)/R2   R1=100 and R2=20      solar_volt = read_adc(SOL_ADC)*0.00488*(120/20);      bat_volt   = read_adc(BAT_ADC)*0.00488*(120/20);            load_current = (read_adc(CURRENT_ADC)*.0488 -25);      temperature = read_adc(TEMP_ADC)*0.00488*100;        }   //------------------------------------------------------------------------------------------------------------ /////////////////////////////////POWER AND ENERGY CALCULATION ////////////////////////////////////////////// //------------------------------------------------------------------------------------------------------------ void power(void) { msec = millis(); elasped_msec = msec - last_msec; //Calculate how long has past since last call of this function elasped_time = elasped_msec / 1000.0; // 1sec=1000 msec watts = load_current * bat_volt; //Watts now ampSecs = (load_current*elasped_time); //AmpSecs since last measurement wattSecs = ampSecs * bat_volt; //WattSecs since last measurement ampHours = ampHours + ampSecs/3600; // 1 hour=3600sec //Total ampHours since program started wattHours = wattHours + wattSecs/3600; // 1 hour=3600sec //Total wattHours since program started last_msec = msec; //Store 'now' for next time } //------------------------------------------------------------------------------------------------------------ /////////////////////////////////PRINT DATA IN SERIAL MONITOR///////////////////////////////////////////////// //------------------------------------------------------------------------------------------------------------   void print_data(void)   {     delay(100);     Serial.print("Solar Panel Voltage: ");     Serial.print(solar_volt);     Serial.println("V");     Serial.print("Battery Voltage: ");     Serial.print(bat_volt);     Serial.println("V");     Serial.print("Syestem Voltage: ");     Serial.print(system_volt);     Serial.println("V");     Serial.print("Charge Set Point:");     Serial.println(bulk_charge_sp);     Serial.print("Temperature:");     Serial.print(temperature);     Serial.println("C");     Serial.print("Load Current: ");     Serial.print(load_current);     Serial.println("A");     Serial.print("Power: ");     Serial.print(watts);     Serial.println("W");     Serial.print("Energy: ");     Serial.print(wattHours);     Serial.println("WH");     Serial.print("Duty Cycle :");     if (charge_status==1)     {     Serial.println("99%");     Serial.println("BULK CHARGING");     }     else if (charge_status==2)     {     Serial.print(Ep);     Serial.println("%");     Serial.println("FLOAT CHARGING");     }     else     {     Serial.println("0%");     Serial.println("NOT CHARGING");     }     if(load_status==1)     {      Serial.println("LOAD IS CONNECTED");     }     else     {      Serial.println("LOAD IS DISCONNECTED");       }        Serial.println("***************************"); } //---------------------------------------------------------------------------------------------------------------------- //////////////////////////////////SYSTEM VOLTAGE AUTO DETECT /////////////////////////////////////////////////////////// //---------------------------------------------------------------------------------------------------------------------- void system_voltage(void) {   if ((bat_volt >BAT_MIN) && (bat_volt < BAT_MAX))   {      system_volt = 12;   }   /*   else if  ((bat_volt > BAT_MIN*2 ) && (bat_volt < BAT_MAX*2))   {     system_volt=24;   }*/   else if ((bat_volt > BAT_MIN/2 ) && (bat_volt < BAT_MAX/2))   {     system_volt=6;   }   } //--------------------------------------------------------------------------------------------------------------------------- ////////////////////////////////////CHARGE SET POINT /////////////////////////////////////////////////////////////////////// //--------------------------------------------------------------------------------------------------------------------------- void setpoint(void) {   temp_change =temperature-25.0; // 25deg cel is taken as standard room temperature // temperature compensation = -5mv/degC/Cell   // If temperature is above the room temp ;Charge set point should reduced   // If temperature is bellow the room temp ;Charge set point should increased   if(system_volt ==12)   {      bulk_charge_sp = BULK_CH_SP-(0.030*temp_change) ;      float_charge_sp=FLOAT_CH_SP-(0.030*temp_change) ;      lvd =LVD;   }   else if(system_volt ==6)   {      bulk_charge_sp = (BULK_CH_SP/2)-(0.015*temp_change) ;      float_charge_sp= (FLOAT_CH_SP/2)-(0.015*temp_change) ;      lvd=LVD/2;   }   /*   else if (system_volt == 24)   {    bulk_charge_sp = (BULK_CH_SP*2)-(0.060*temp_change) ;    float_charge_sp= (FLOAT_CH_SP*2)-(0.060*temp_change) ;    lvd=LVD*2;   }   */   } //-------------------------------------------------------------------------------------------------------------------------------- ///////////////////////////////////////////////////PWM CHARGE CYCLE @500 HZ ////////////////////////////////////////////////// //------------------------------------------------------------------------------------------------------------------------------- void charge_cycle(void) {   if (solar_volt > bat_volt && bat_volt <= bulk_charge_sp)   {         if (bat_volt <= float_charge_sp) // charging start   {       charge_status = 1; // indicate the charger is in BULK mode      duty= 252.45;      analogWrite(PWM_PIN,duty); // 99 % duty cycle // rapid charging           }   else if (bat_volt >float_charge_sp && bat_volt <= bulk_charge_sp)   {         charge_status = 2; // indicate the charger is in FLOAT mode       error  = (bulk_charge_sp - bat_volt);      // duty cycle reduced when the battery voltage approaches the charge set point       Ep= error *100 ; //Ep= error* Kp // Assume  Kp=100             if(Ep < 0)        {         Ep=0;         }       else if(Ep>100)         {          Ep=100;         }       else if(Ep>0 && Ep <=100) // regulating        {          duty = (Ep*255)/100;        }        analogWrite(PWM_PIN,duty);    } }    else    {    charge_status=0;  // indicate the charger is OFF    duty=0;    analogWrite(PWM_PIN,duty);    } } //---------------------------------------------------------------------------------------------------------------------- /////////////////////////////////////////////LOAD CONTROL///////////////////////////////////////////////////// //----------------------------------------------------------------------------------------------------------------------    void load_control() { if (solar_volt < 5  ) // load will on when night {   if(bat_volt >lvd)   // check if battery is healthy   {   load_status=1;   digitalWrite(LOAD_PIN, HIGH); // load is ON   }   else if(bat_volt < lvd)   {     load_status=0;    digitalWrite(LOAD_PIN, LOW); //load is OFF   } } else // load will off during day {    load_status=0;    digitalWrite(LOAD_PIN, LOW); } } //------------------------------------------------------------------------------------------------- //////////////////////////LED INDICATION//////////////////////////////////// //------------------------------------------------------------------------------------------------- void led_indication(void) {   battery_led();           //Battery status led indication   load_led();              //Load led indication } //---------------------------------------------------------------------------------------------------------------------- /////////////////////////////////////////////BATTERY LED INDICATION///////////////////////////////////////////////////// //---------------------------------------------------------------------------------------------------------------------- void battery_led(void) {      if( (bat_volt > system_volt) && ( bat_volt   {         leds_off_all();       digitalWrite(BAT_GREEN_LED,LOW);  // battery voltage is healthy   }   else if(bat_volt >= bulk_charge_sp)   {       leds_off_all();       digitalWrite(BAT_BLUE_LED,LOW);  //battery is fully charged   }    else if(bat_volt < system_volt)   {       leds_off_all();       digitalWrite(BAT_RED_LED,LOW);  // battery voltage low   } } //---------------------------------------------------------------------------------------------------------------------- /////////////////////////////////////////////LOAD LED INDICATION///////////////////////////////////////////////////// //----------------------------------------------------------------------------------------------------------------------      void load_led()   {     if(load_status==1)     {       digitalWrite(LOAD_GREEN_LED,HIGH);     }     else if(load_status==0)     {       digitalWrite(LOAD_RED_LED,HIGH);     }    } //------------------------------------------------------------------------------------------------------ //////////////////////// TURN OFF ALL THE LED/////////////////////////////////////////////////////////// //------------------------------------------------------------------------------------------------------ void leds_off_all(void) {     digitalWrite(BAT_RED_LED,HIGH);   digitalWrite(BAT_GREEN_LED,HIGH);   digitalWrite(BAT_BLUE_LED,HIGH);   digitalWrite(LOAD_RED_LED, LOW);   digitalWrite(LOAD_GREEN_LED, LOW); } //------------------------------------------------------------------------------------------------------ //////////////////////// LCD DISPLAY/////////////////////////////////////////////////////////// //------------------------------------------------------------------------------------------------------ void lcd_display() { lcd.setCursor(0, 0); lcd.write(1); lcd.setCursor(2, 0); lcd.print(solar_volt); lcd.print("V"); lcd.setCursor(14, 0); lcd.write(5); lcd.setCursor(16, 0); lcd.print(temperature); lcd.write(0b11011111); lcd.print("C"); lcd.setCursor(0,1); lcd.write(2); lcd.setCursor(2, 1); lcd.print(bat_volt); lcd.print("V"); lcd.setCursor(14, 1); lcd.write(2); if((charge_status==1) | (charge_status== 2)) { lcd.write(6); } else { lcd.write(7); } lcd.setCursor(0,2); lcd.write(3); lcd.setCursor(2,2); lcd.print(load_current); lcd.print("A"); lcd.setCursor(13,2); lcd.print(watts); lcd.print("W"); lcd.setCursor(0,3); lcd.print("Energy:"); lcd.print(wattHours); lcd.print("WH");      }

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how do you harvest kinetic energy?

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