Advanced Dual-Axis Backtracking Improves Output While Reducing Project Costs—Technology That Produces the Best Project Internal Rate of Return in the Solar Industry

Author:

Oosting Kenneth W.1,Green James E.,Rutherford Reid,Snook Amy J.,Keele Dustin2

Affiliation:

1. Founder and CEO e-mail:

2. Inspired Solar Technologies, Inc., 5736 Lonetree Boulevard, Rocklin, CA 95765

Abstract

This paper reviews the results of 3 years of research and development in optimizing solar project internal rate of return (IRR) through various solar mounting strategies, including fixed-mount, single-axis, and dual-axis tracking. Various tracking algorithms are explored. The results of the research show that shadowing from adjacent photovoltaic (PV) arrays, as well as horizon clouds, significantly impact power output in traditional mounting architectures, but that innovative tracking algorithms and array shape can reduce the negative impact of shadowing. These innovations produce greater power output while reducing project costs and substantially increasing project IRR.

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference14 articles.

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2. Absorption of Solar Radiation by Clouds: Observations Versus Models;Science,1995

3. Appleyard, D., 2011, “PV Trackers Seek Their Place in the Sun,” Renewable Energy World.com, http://www.renewableenergyworld.com/rea/news/article/2011/10/pv-trackers-seek-their-place-in-the-sun

4. Panico, D., Garvison, P., Wenger, H., and Shugar, D., 1991, “Backtracking: A Novel Strategy for Tracking PV Systems,” Conference Record of the Twenty Second IEEE Photovoltaic Specialists Conference, Las Vegas, NV, October 7–11, pp. 668–67310.1109/PVSC.1991.169z294.

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