Wireless Charged Inverter

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International Research Journal of Engineering and Technology (IRJET)

e-ISSN: 2395-0056

Volume: 09 Issue: 09 | Sep 2022

p-ISSN: 2395-0072

www.irjet.net

Wireless Charged Inverter Mansi Jagtap1, Sanjana Puranik2, Kajal Tayade3, Mayur Patil4, Chetan Badgujar5, Manish D Mahale6 Research Scholar, Bachelor of Engineering, Department of Electrical Engineering, 6 Assistant Professor, Department of Electrical Engineering G H Raisoni Institute of Business Management Jalgaon, Maharashtra, India ---------------------------------------------------------------------***--------------------------------------------------------------------1, 2,3,4,5

Abstract - Now-a-days inverter became a basic need in

So our team member is deciding to work on inverters and developed pure sine wave inverter which is cost effective. While studying we have also analyzed that while transferring the power by using the conductor huge power loss occurred due to the resistance of conductor. To cope up with the issue we have proposed the new innovative idea of wireless power transmission system. Firstly the wireless power transmission system was proposed by Nikola Tesla. From these we proposed a model of wireless inverter battery charger. This paper motivates the young researcher to work on such innovative idea which is beneficial for society.

human life. Inverter is a power electronics based device which converts direct current power into alternating supply. Due to industrialization & used of modern technology, there is huge demand of the pure sine wave inverters. Whenever it comes to utilization of dc power sources for high and low power appliances, the inverter play a major role. It not only increases the efficiency of power system but also it work as protection system. Hence this paper will help the other research scholar for the cost effective and efficient pure sine wave inverter.

Keywords — AC Power, Pure Sine Wave, Cost Effective

2. LITERATURE REVIEW

1.INTRODUCTION

For work on our ideology we have studied various research papers. Firstly we have studied regulated square wave which is not beneficial for the applications, hence for proper working of application, Pure Sine Wave Invertors are used

We all know, India Grid system i.e. One nation One Grid System. The main aim of the one nation one grid system is to maintain reliability of the system. As In India the industrial sector is rapidly increasing, proportionally the rate of used of electrical energy also increases. As the demand of electrical energy increases the quality of power increases. Hence industries are facing a problem of poor power quality. According to the report, the shortage of electricity in India reduces annual plant revenue and average productivity of manufacturing plant by 5-10%.

In A.Ali Qazalbash, Awais Amin, Abdul Manan, & Mahveen Khalid, 2009 a cost efficient microcontroller based inverter is design. At the output of the Pulse Width Modulation (PWM) generated by the microcontroller & a filter has been connected to make the square wave a sinusoid & to reduce harmonics from the system.[1] In these paper PWM topology is used to generate the pure sine wave. This paper includes mathematical analysis of PWM topology and the corresponding filter design.[1]

And due to the power interruption industry faces huge economic loss. And not only industrial sector affects but also commercial and residential too. The power interruption is huge problem faces by the all sectors. To cater the entire power quality problem, most of the industries and other sectors used the backup system, diesel generators. PV plant etc. The back bone of such system is inverters. Without inverters we cannot imagine the working of such system. We know that the inverters are the devices which convert the dc power into ac power by using power electronic devices. Because all such system likes battery operation or PV system generates dc and to operate the daily appliances we need AC Supply. So to convert such power we need inverters. Now day’s inverters are also used in power industry in DC Transmission system. We have study one case study of telecom sector and we have analyzed that unreability of electric supply is biggest challenged for telecom industry. So telecom towers are operated on backup system. This result that around 25% of cost increases than normal operating cost.

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The above topology is not beneficial for low rated appliances. In Meraj Hasan, Junaid Maqsood, Mirza Qutab Baig, Syed Murtaza Ali Shah Bukhari, & Salman Ahmed, 2015 paper the new technique is describe by using H- Bridge Circuit, timer circuit and filter to generate the pure sine wave.[2] The simulation result of paper shows that the output of MOSFET Bridge is filtered & sine wave obtained. The triangular wave is obtained at bridge output and then later it can be converted into sine wave by using filter. Here filter is also used to reduce the harmonic content.[2]

3. METHODOLOGY The figure 1 shows basic block diagram of Proposed Model. Here we have made an Electric Power transmission circuit which consists of AC Source and power transmission coil.

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