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how to calculate the range of electric vehicles?

how to calculate the range of electric vehicles?

add here text how-to how to calculate the range of electric vehicles? pratik r. sonawane april 22, 2021 related topics how to check, bldc motor hall sensor is working or not? how to check, the ebike controller is working or not? how does a hall effect sensor work? can a one-speed controller run two hub Motors? what are the best tips for buying an electric bike? the range of electric vehicles is difficult to find but not so difficult to predict. yes, we can predict the range of electric vehicles but for that, we need to consider lots of stuff, like how much load is on the vehicle, battery capacity, motor wattage, power to weight ratio, and many more. In this article, we will solve the problem of finding the range of electric vehicles but we are not considering losses during the runlike rolling resistance, friction, aerodynamics. what we are going to calculate will provide an answer, which is closer to the actual answer. first, why it is so much difficult to find out the range of the electric vehicle. the answer is pretty much simple but a little bit unsatisfied. which is related to the one term. “A variable current consumption” you know in electric vehicles, the nature of current flowing through a system is different. it shows variable characteristics. why? because in the case of motor the load is variable hence as a result “current consumption” also shows variation in magnitude. the motors, which are used in electric vehicle applications goes under various conditions like climbing, acceleration, deceleration, braking, and so on. this kind of situation produces different kinds of results. which will affects motor “current demand”. now in the case of the battery, for example: the capacity of the battery is 10Ah and the load current demand is 1 Ampere then we have to calculate how much time does battery is required to drain completely?  the question is easy to answer because the battery is draining a constant current or steady current the answer is 10 hours or 600 minutes. right!! formulae : but as we discussed the current demand for electric vehicles is variable in nature hence it becomes complicated to calculate the exact kilometer or mile range of the Ev’s. therefore, we have to calculate motor current demand at various conditions. types of “current demand” in electric motors: rated current rating peak current rating load current rating note: please be sure before doing a calculation you must have all datasheets and specifications for motor and battery. now let’s start our calculation with an example, calculate the rated current demand for the motor. ex. motor voltage: 60V       motor wattage: 1000W the motor rated current is 16.66A. now, calculate peak current demand for motor as given, motor voltage: 60peak motor power: 1500W motor peak current demand is 25A. thereafter, we need to calculate the load current which will tell us motor current demand when the load is applied on it. (assume, the load is vehicle plus driving person and luggage weight) now, calculate the power to weight ratio requirement.  ex.   motor maximum loading capacity: 350 kgpeak power: 1500W from calculation power to weight ratio : 4.28 W/Kg how to calculate the range of electric vehicles? consider,  the bike load (including all-electric accessories) is 150 kg and Mr. Musk is driving it and you know  Mr. musk is a healthy person so maybe his weight is around 75kg. suppose Mr. musk doesn’t know how many miles his car can cover! therefore, let’s help him to find out the range of his vehicle. so the total weight of the vehicle will be 230 kg. to find motor power consumption during load, multiply P/W ratio with vehicle total weight. power consumption under load condition is 984.9 Watt. now we need to find out the current demand under load condition as given, motor voltage: 60Vmotor wattage: 984.9W from the calculation, the current demand under load condition is 16.40A did you notice we got three nature of current? rated current peak current load current these three natures of current are nothing but a result that came from different situations or circumstances. “rated current” is flowing through a system when the motor is working under its full efficiency.“peak current” is flowing through a system when the motor is under acceleration or initial pick-up.“load current” is flowing through a system when the motor is working under load conditions. now, we have to find the value of the average current. average current demand will be 19.35A this is it! the above answer can help us to understand the nominal current demand for vehicles. this is an average current demand for electric vehicle motors. let’s assume you design a Lithium-ion battery pack of 60 volts with a capacity of 100Ah. Also, read | How To Calculate Battery capacity for an electric vehicle. divide that batter capacity by average current demand. hence battery backup will be 5.17 hours. consider, your electric vehicle average speed is 45 km/h then the range of the vehicle will be 232.65 kilometers or 144.78 miles!! but this is not an exact answer. during the run, there is an instantaneous rate of change of current consumption. hence 233 ± 10 kilometers (145 ± 6.21 miles) is always better to assume. this is one of the ways we can find out the range of the electric vehicle. hopefully, you found your answer in the article.  Note: the range of the electric vehicle may vary with surrounding situations or circumstances. download “formulas for calculating range of the electric vehicle.pdf“ calculate your range of the vehicle by using “range calculator” range calculator article by author name Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. pratik r sonawane about author Share this article Facebook Youtube Link subscribe for weekly updates Sign Up calculators for electric vehicle speed power Rpm Torque Power to weight ratio battery capacity range calculator Battery pack design calculator battery charge time calculator battery discharge time calculator

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how to calculate battery capacity

how to calculate the battery capacity

add here text calculation how to calculate the battery capacity pratik r. sonawane November 16, 2021 related topics how to check, bldc motor hall sensor is working or not? how to check, the ebike controller is working or not? how does a hall effect sensor work? can a one-speed controller run two hub Motors? what are the best tips for buying an electric bike? To find “battery capacity for electric vehicle” First, you must need some basic information about motor like how much load you can put on a vehicle Always remember, in the electric vehicle the weight (kg) is an important aspect. Because if you want to design a vehicle in such a way that can handle more people on the vehicle rather than accessories then you must care about not taking any extra load on the vehicle except basic components. So let’s begin our calculation Before calculation, we need the following parameters Motor voltage (V)Motor power rating (W)Motor peak power rating (W)motor maximum loading capacity (kg) On the other hand, your valuable wishes like Wish #1 How much distance do you want to cover in a single charge? Wish #2 How much weight do you want to carry with your vehicle? Wish #3 What will be the speed of the vehicle when the vehicle is “loaded”? So first you have to put your extra activities aside for the next 15 minutes. It is really a simple calculation. Let’s do our first calculation Now you may think, “Is it a hard calculation?” Ha-ha, it’s not. My work is to explain it deeply and your work is to understand it carefully. Now let’s get back to the topic. We find our first answer that how much current does the motor need to work at full efficiency. Next, calculate motor peak current rating. Do the same calculation as above. Now, we got two parameters that will help us to find the battery’s “C rating”. The third parameter will help us to find how much “load current” does require to motor for performance. To calculate Max. Power to weight ratio, As we know what is the peak power rating of the motor and what is the maximum loading capacity of the motor. Both the parameters are important to know the motor limitations. Therefore, Now multiply the max. P/W ratio with how much weight you want to carry with your vehicle (wish #2) It will show, how much power does the motor consume under load condition. Now from “motor power under load condition” we can calculate motor “load current”. If you observe that we have three nature of current, Motor rated current Motor peak current Motor load current Always remember for Ev’s the basic technical statement is, “Nature of current flowing through the system of the electric vehicle under various circumstances is always show a variation in magnitude during acceleration or deceleration”. hence to calculate a precise value for battery capacity we have to calculate the “average value”. The “average current” is equal to require battery capacity, which is obviously a minimum requirement. For example, If your vehicle consumes “average current” 18A (battery capacity 18Ah) and you are getting an average speed of 45km/hr. So theoretically, the vehicle can run only 45 km because it has a battery backup of 1 hour. Now let’s calculate the battery capacity as per your wishes. Remember, you have two wishes left!! Now wish #1: How much distance do you want to cover in a single charge Example. Say 1000 km!!! Or do you want to ride to the moon?  Let’s hope this is not your wish because then you have to make a battery that is bigger than the size of a rocket! ha-ha. So 1000km is enough for us. How much distance do you want to cover in a single charge: 1000km Next wish #3: What will be the speed of the vehicle when the vehicle is “loaded”? Example 100km/hr and average current 50Ah Good, this is it!! You got your answer! Now, I am sure you understand the calculations. Share it with your friends and family because “Sharing Is Caring”. calculate your battery capacity by using “battery capacity calculator” battery capacity calculator article by author name Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. pratik r sonawane about author Share this article Facebook Youtube Link subscribe for weekly updates Sign Up calculators for electric vehicle speed power Rpm Torque Power to weight ratio battery capacity range calculator Battery pack design calculator battery charge time calculator battery discharge time calculator battery discharge time calculator for electric vehicle battery c rating calculator battery charger selection calculator

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