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How Solar Panels Can Be Utilised in Order to Recharge LED Lights - Report Example

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The paper "How Solar Panels Can Be Utilised in Order to Recharge LED Lights" states that cost advantages of solar LED street lights, the initial installation cost is rather high which scares the interested parties. As a result, the project is slowed down and the deadline may not be achieved…
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Extract of sample "How Solar Panels Can Be Utilised in Order to Recharge LED Lights"

How Solar Panels Can Be Utilised In Order to Recharge LED Lights Activities Name Institution Project Outline Electricity used for street lighting consumes excessive amounts of energy due to the use of HD lamps. As a result, solar LED lights are proposed as alternative forms of street lighting that will conserve energy by reduce consumption (Ma., 2013). Solar panels act as environmentally friendly energy sources which supply high-intensity LED output. Therefore the solar energy system will reduce the amount of finance invested in electric energy, while providing reliable and environmentally friendly energy. However, it is important to understand how solar energy power can be conserved and utilized during seasons when it is cloudy, rainy or lack enough sun to energize the solar panels. This will not only ensure that people have adequate amounts of power for daily use throughout the seasons but will also assist them in regulating how they consume energy (Shiquan, 2012). Solar LED street lighting project will introduce technology and engineering solutions. Compared with high-pressure sodium and metal halide luminaries, solar LED luminaries are more energy efficient due to their long life and reduced maintenance costs. This project offers engineers with the opportunity to advocate for optical control in street lighting through uniform lighting and improve safety and security to the community by reproducing effective color lighting for sharper details. Moreover, it offers the possibility of the increased use of sensors and controls to manage lighting intensity which results to reduced energy consumption (Tennakoon et al., 2000). Objective and Scope The main aims of this project include: Increase even and efficient distribution of power with quality lighting. Storing solar energy in batteries and efficient control of sensors will improve energy efficiency by at least 40%. Reduce energy consumption through energy savings by measuring energy input and output and reduce greenhouse gas emission. Minimize power outages and increase lighting life span which will reduce the maintenance costs by at least 50%. According to Davis et al., (2003) solar LED street lighting project will upgrade street lights by retrofitting or replacing existing LED lights to improve energy saving to 40%, reduce maintenance costs by 50% and provide appropriate lighting levels. Therefore the design of the project focuses on implementing a renewable-energy-based system that lowers energy consumption. Solar energy is available and can be integrated into the power grid. The photovoltaic cells found in solar panel cells, absorb energy that can be stored and converted into power to produce constant voltages as a means to maintain a continuous power supply. The variable output from solar panels can be converted and used for present and future needs thus improving on energy conservation (Bollinger, 2007). Yongqing (2009) explains that solar LED street lighting has significant effects on energy saving and also contributes to the health and economic development of a city. Solar LED street lighting is assumed to improve the economic status of a community or municipality by reducing the energy costs (Symanski, 2004). The optimal range of energy efficiency and renewable energy technology, demonstrate a unique contribution to the government and the society (Barbosa et al., 1998). The projects provide communities with an opportunity to have access to sustainable and reliable energy supply that is environmentally friendly and a relatively low cost. Power cells such as batteries will ensure that solar energy is stored for future use especially during seasons when it is less sunny. Additionally, sensor controls will regulate energy output and input thus minimizing power shortage and reduce maintenance costs (Tennakoon, 2000). Methodology Lo et al., (2006) affirms that the solar LED street lights do not require any specific management and control approaches since a transmission route or line for the cable is unnecessary. The installation of these street lights can be achieved in the entire public space such as; parking lots, highways, or the square. Thus the development of these LED lights is related to global urbanization, efficiency, environmental conservation and long-life solar LED lights (Harrington, 1995). The methods used for the development of the project focuses on energy conservation for present and future use. According to Bollinger (2007), an effective LED street lighting system is one that is characterized with high efficiency, long-life, energy-saving, environmentally friendly with a high color rendering index. Therefore, for this project data shall be collected based on the number of areas to be lighted which will be measured in square feet, with the solar cells not exceeding 5ft by 2ft. The number of street lights to be replaced by solar LED Street light will be counted whereby this data shall be used as a guide to understand how much equipment and resources are needed. Additionally, the number of public places that require solar LED lighting for their billboards shall be counted and included in the implementation plan. To conserve energy, each street light device will be installed to operate on one batter Read More

According to Davis et al., (2003) solar LED street lighting project will upgrade street lights by retrofitting or replacing existing LED lights to improve energy saving to 40%, reduce maintenance costs by 50% and provide appropriate lighting levels. Therefore the design of the project focuses on implementing a renewable-energy-based system that lowers energy consumption. Solar energy is available and can be integrated into the power grid. The photovoltaic cells found in solar panel cells, absorb energy that can be stored and converted into power to produce constant voltages as a means to maintain a continuous power supply.

The variable output from solar panels can be converted and used for present and future needs thus improving on energy conservation (Bollinger, 2007). Yongqing (2009) explains that solar LED street lighting has significant effects on energy saving and also contributes to the health and economic development of a city. Solar LED street lighting is assumed to improve the economic status of a community or municipality by reducing the energy costs (Symanski, 2004). The optimal range of energy efficiency and renewable energy technology, demonstrate a unique contribution to the government and the society (Barbosa et al., 1998). The projects provide communities with an opportunity to have access to sustainable and reliable energy supply that is environmentally friendly and a relatively low cost.

Power cells such as batteries will ensure that solar energy is stored for future use especially during seasons when it is less sunny. Additionally, sensor controls will regulate energy output and input thus minimizing power shortage and reduce maintenance costs (Tennakoon, 2000). Methodology Lo et al., (2006) affirms that the solar LED street lights do not require any specific management and control approaches since a transmission route or line for the cable is unnecessary. The installation of these street lights can be achieved in the entire public space such as; parking lots, highways, or the square.

Thus the development of these LED lights is related to global urbanization, efficiency, environmental conservation and long-life solar LED lights (Harrington, 1995). The methods used for the development of the project focuses on energy conservation for present and future use. According to Bollinger (2007), an effective LED street lighting system is one that is characterized with high efficiency, long-life, energy-saving, environmentally friendly with a high color rendering index. Therefore, for this project data shall be collected based on the number of areas to be lighted which will be measured in square feet, with the solar cells not exceeding 5ft by 2ft.

The number of street lights to be replaced by solar LED Street light will be counted whereby this data shall be used as a guide to understand how much equipment and resources are needed. Additionally, the number of public places that require solar LED lighting for their billboards shall be counted and included in the implementation plan. To conserve energy, each street light device will be installed to operate on one batter

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