The pumped water can be used for many applications like domestic water, water for irrigation and to supply the water to villages. The main benefits of the water pumps powered by photovoltaic systems are low maintenance, ease of installation, reliability and the matching between the powers generated and the water usage needs. In this paper an attempt is made to use a single phase induction motor which is more robust, less expensive and requires less maintenance compared to DC commutated motor. The induction motor is driven by a full bridge single phase sinusoidal pulse with modulation (SPWM) inverter whose firing strategy has been designed so as to eliminate lower order harmonics [1]. This helps in reducing torque pulsations and unnecessary heating caused by harmonic currents and also improves system efficiency. The inverter used in this manner has no control on the fundamental voltage content, hence DC input voltage of the inverter has to be controlled. This can be achieved by a DC to DC Chopper. This paper also presents the design and analysis of a LC output filter for IGBT-based motor drive inverters. The LC filter is used to limit the rate of rise of the inverter output voltage and reduce common mode noise to the motor. By using a LC-filter pure sine wave is obtained which can be directly used to drive a single-phase induction motor. The voltage is controlled by using the PID feedback controller. The pump converts the mechanical energy in to hydraulic energy hence the AC pumping system is powered by PV cell which is simulated in MATLAB/Simulink environment.