AbstractIn central receiver solar power plants the accuracy of heliostat aiming affects directly the plant efficiency. This accuracy depends on multiple factors, some of which are alignment and operation parameters like: canting, pedestal leveling, elevation and zenith orientations, structural deformation, and clock-date timer accuracy to calculate solar position. All of those factors produce drift of the heliostat concentrated radiation spot. The error parameters differ from heliostat to heliostat in a field, and affect each one in a different manner, depending on their location in the field. Trying to compensate by software for every single error parameter, and for each heliostat is a hard, time consuming, and impractical task. Instead of...
AbstractSeveral error sources can contribute to the global tracking error of heliostats. These sourc...
AbstractSolar field performance is dependent upon the ability of each heliostat to project a concent...
A new optical measurement method that simplifies and optimizes the mounting and canting of heliostat...
AbstractIn central receiver solar power plants the accuracy of heliostat aiming affects directly the...
AbstractThis study provides a demonstration of an eight-parameter heliostat tracking-error correctio...
AbstractThe heliostat field is by far the most expensive part of a typical Central Receiver (CR) pla...
Drift is a relevant issue in concentrated solar tower facilities since this time-dependent pointing ...
none3noThis paper investigates the effect of tracking errors in heliostats used in solar tower power...
This paper investigates dhlerent strategies that can be used to improve the tracking accuracy of hel...
Large scale central receiver systems typically deploy between thousands to more than a hundred thous...
AbstractLow-cost heliostats with open-loop tracking systems require careful calibration in order to ...
Low-cost heliostats with open-loop tracking systems require careful calibration in order to track th...
A new optical measurement method that simplifies and optimizes the mounting and canting of heliostat...
In this work, we numerically evaluate with Monte Carlo ray-tracing simulations the intrinsic drift i...
Heliostat alignment evaluation is among the main issues in solar tower concentration plant operation...
AbstractSeveral error sources can contribute to the global tracking error of heliostats. These sourc...
AbstractSolar field performance is dependent upon the ability of each heliostat to project a concent...
A new optical measurement method that simplifies and optimizes the mounting and canting of heliostat...
AbstractIn central receiver solar power plants the accuracy of heliostat aiming affects directly the...
AbstractThis study provides a demonstration of an eight-parameter heliostat tracking-error correctio...
AbstractThe heliostat field is by far the most expensive part of a typical Central Receiver (CR) pla...
Drift is a relevant issue in concentrated solar tower facilities since this time-dependent pointing ...
none3noThis paper investigates the effect of tracking errors in heliostats used in solar tower power...
This paper investigates dhlerent strategies that can be used to improve the tracking accuracy of hel...
Large scale central receiver systems typically deploy between thousands to more than a hundred thous...
AbstractLow-cost heliostats with open-loop tracking systems require careful calibration in order to ...
Low-cost heliostats with open-loop tracking systems require careful calibration in order to track th...
A new optical measurement method that simplifies and optimizes the mounting and canting of heliostat...
In this work, we numerically evaluate with Monte Carlo ray-tracing simulations the intrinsic drift i...
Heliostat alignment evaluation is among the main issues in solar tower concentration plant operation...
AbstractSeveral error sources can contribute to the global tracking error of heliostats. These sourc...
AbstractSolar field performance is dependent upon the ability of each heliostat to project a concent...
A new optical measurement method that simplifies and optimizes the mounting and canting of heliostat...