Worldwide proliferation of cyanobacteria blooms in inland waters not only affects the intended use of water but potentially threatens human and animal health. In this study, a stacked autoencoder-deep neural network (SAE-DNN) was developed to estimate phycocyanin (PC) concentration by using in situ reflectance spectra in productive inland water. The estimated PC using the SAE-DNN was in close agreement with the measured PC, with an R2 of 0.87, root mean square error (RMSE) of 14.45?????g/L, and relative RMSE of 86.42%. The performance of the SAE-DNN was superior to that of the DNN and band-ratio algorithms. An analysis on the deep spectral features extracted using the SAE yielded the most useful spectral bands, namely 538, 596, and 735???nm...
This study introduces a semi-empirical algorithm to estimate the extent of the phycocyanin (PC) conc...
An extensive field campaign was carried out for the validation of a previously published reflectance...
Phycocyanin primarily exists in freshwater cyanobacteria. Accurate estimation of low phycocyanin con...
Remote sensing is useful for detecting and quantifying cyanobacteria blooms for managing water syste...
Hyperspectral imagery is effective to identify harmful cyanobacteria blooms by having an advantage i...
Cyanobacterial harmful algal blooms are an increasing threat to coastal and inland waters. These blo...
The pigment phycocyanin (PC) is a marker for cyanobacterial presence in eutrophic inland water. We p...
The pigment phycocyanin (PC) is a marker for cyanobacterial presence in eutrophic inland water. We p...
We evaluated the accuracy and sensitivity of six previously published reflectance based algorithms t...
Hyperspectral imagery (HSI) provides substantial information on optical features of water bodies tha...
Most remote sensing algorithms for phytoplankton in inland waters aim at the retrieval of the pigmen...
The growth of mass populations of toxin-producing cyanobacteria is a serious concern for the ecologi...
Cyanobacterial algal bloom is a major water quality issue in inland lakes, reservoirs, and estuarine...
Understanding the concentration and distribution of cyanobacteria blooms is an important aspect of m...
Retrieval of the phycocyanin concentration (PC), a characteristic pigment of, and proxy for, cyanoba...
This study introduces a semi-empirical algorithm to estimate the extent of the phycocyanin (PC) conc...
An extensive field campaign was carried out for the validation of a previously published reflectance...
Phycocyanin primarily exists in freshwater cyanobacteria. Accurate estimation of low phycocyanin con...
Remote sensing is useful for detecting and quantifying cyanobacteria blooms for managing water syste...
Hyperspectral imagery is effective to identify harmful cyanobacteria blooms by having an advantage i...
Cyanobacterial harmful algal blooms are an increasing threat to coastal and inland waters. These blo...
The pigment phycocyanin (PC) is a marker for cyanobacterial presence in eutrophic inland water. We p...
The pigment phycocyanin (PC) is a marker for cyanobacterial presence in eutrophic inland water. We p...
We evaluated the accuracy and sensitivity of six previously published reflectance based algorithms t...
Hyperspectral imagery (HSI) provides substantial information on optical features of water bodies tha...
Most remote sensing algorithms for phytoplankton in inland waters aim at the retrieval of the pigmen...
The growth of mass populations of toxin-producing cyanobacteria is a serious concern for the ecologi...
Cyanobacterial algal bloom is a major water quality issue in inland lakes, reservoirs, and estuarine...
Understanding the concentration and distribution of cyanobacteria blooms is an important aspect of m...
Retrieval of the phycocyanin concentration (PC), a characteristic pigment of, and proxy for, cyanoba...
This study introduces a semi-empirical algorithm to estimate the extent of the phycocyanin (PC) conc...
An extensive field campaign was carried out for the validation of a previously published reflectance...
Phycocyanin primarily exists in freshwater cyanobacteria. Accurate estimation of low phycocyanin con...