Design And Installation Of 1000 Watt Solar Power System

The design and installation of a 1000 watt solar power system involve a comprehensive process tailored to harness renewable energy efficiently. Beginning with a meticulous assessment of energy needs and available sunlight, the system’s design integrates photovoltaic panels, inverters, batteries, and supporting infrastructure to optimize power generation and storage. Precision in panel placement, orientation, and wiring ensures maximum sunlight capture and conversion. Installation involves mounting panels securely, connecting electrical components safely, and configuring the system for seamless operation. Additionally, implementing monitoring mechanisms enables real-time performance tracking and maintenance, ensuring sustained functionality and minimizing reliance on conventional energy sources.

ABSTRACT

 The 1000W solar system was determined by load assessment, solar panel number determination, battery requirement and then inverter  sizing.  A complete solar panel rated at 1000w was however purchased, together with 2 no. 150A solar battery and also 10A charge controller. These were assembled together with necessary protective gadgets like cut out switches; to give the 1000W expected. The solar panel was mounted outside the building to allow for maximum collection of sun energy. It is expected that the system will help the department meet up with its office duties even when central power is not available.

CHAPTER ONE INTRODUCTION

NEED FOR THE PROJECT

 The general objective of the system is to provide efficiency, steadiness in the use of power appliances, by ensuring continuous availability of power supply even in the absence of mains. Interoperability of the system made it possible to eliminate all suspense from mains outage during the execution of an important and urgent assignment as may be required.

For better production of the system, the system was operated at a fully charged condition of the battery.

The project was rated 1000W of 220V and 50Hz. It was expected that at this condition, it was favorable to carry load of the stipulated power. Loads of low power factors are not helpful since they produce spikes. Overloading is not potent to provide zero change over time and the inverter had LEDs which indicates mains failure and battery discharge and system fault.

SCOPE OF STUDY

 This solar power source makes it possible to provide a clean reliable supply of alternative electricity free of sags or surges which could be found in the line voltage frequency.

The solar power system (SPS) system achieved this by direct current from solar panel and by rectifying the standard main supply, using the direct current to charge the batteries and to provide clean alternative power by passing the energy a filter system.

It has zero change over time and LEDs which indicates mains fail and battery discharge level and it provides 100% protection against line noise, spikes surges and audio frequency interference.

DEFINITION OF TERMS

  1. Inverter unit: This unit converts a DC voltage into AC voltage with the help of the inverter
  2. Automatic Control Unit: This provides all the required control needed to meet up the objective of the whole system
  3. Battery Unit: This is a secondary cell unit, capable of storing enough DC voltage from either sun or AC main, of which is later converted to AC voltage.

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