1,720,984 research outputs found
Internet of underwater things and big marine data analytics – a comprehensive survey
The Internet of Underwater Things (IoUT) is an emerging communication ecosystem developed for connecting underwater objects in maritime and underwater environments. The IoUT technology is intricately linked with intelligent boats and ships, smart shores and oceans, automatic marine transportations, positioning and navigation, underwater exploration, disaster prediction and prevention, as well as with intelligent monitoring and security. The IoUT has an influence at various scales ranging from a small scientific observatory, to a midsized harbor, and to covering global oceanic trade. The network architecture of IoUT is intrinsically heterogeneous and should be sufficiently resilient to operate in harsh environments. This creates major challenges in terms of underwater communications, whilst relying on limited energy resources. Additionally, the volume, velocity, and variety of data produced by sensors, hydrophones, and cameras in IoUT is enormous, giving rise to the concept of Big Marine Data (BMD), which has its own processing challenges. Hence, conventional data processing techniques will falter, and bespoke Machine Learning (ML) solutions have to be employed for automatically learning the specific BMD behavior and features facilitating knowledge extraction and decision support. The motivation of this paper is to comprehensively survey the IoUT, BMD, and their synthesis. It also aims for exploring the nexus of BMD with ML. We set out from underwater data collection and then discuss the family of IoUT data communication techniques with an emphasis on the state-of-the-art research challenges. We then review the suite of ML solutions suitable for BMD handling and analytics. We treat the subject deductively from an educational perspective, critically appraising the material surveyed. Accordingly, the reader will become familiar with the pivotal issues of IoUT and BMD processing, whilst gaining an insight into the state-of-theart applications, tools, and techniques. Finally, we analyze of the architectural challenges of the IoUT, followed by proposing a range of promising direction for research and innovation in the broad areas of IoUT and BMD. Our hope is to inspire researchers, engineers, data scientists, and governmental bodies to further progress the field, to develop new tools and techniques, as well as to make informed decisions and set regulations related to the maritime and underwater environments around the world
Sediment Prediction in the Great Barrier Reef using Vision Transformer with finite element analysis
Suspended sediment is a significant threat to the Great Barrier Reef (GBR) ecosystem. This catchment pollutant stems primarily from terrestrial soil erosion. Bulk masses of sediments have potential to propagate from river plumes into the mid-shelf and outer-shelf regions. Existing sediment forecasting methods suffer from the problem of low-resolution predictions, making them unsuitable for wide area coverage. In this paper, a novel sediment distribution prediction model is proposed to augment existing water quality management programs for the GBR. This model is based on the state-of-the-art Transformer network in conjunction with the well-known finite element analysis. For model training, the emerging physics-informed neural network is employed to incorporate both simulated and measured sediment data. Our proposed Finite Element Transformer (FE-Transformer) model offers accurate predictions of sediment across the entire GBR. It provides unblurred outputs, which cannot be achieved with previous next-frame prediction models. This paves a way for accurate forecasting of sediment, which in turn may lead to improved water quality management for the GBR
Going Beyond Counting First Authors in Author Co-citation Analysis
The present study examines one of the fundamental aspects of author co-citation analysis (ACA) - the way co-citation
counts are defined. Co-citation counting provides the data on which all subsequent statistical analyses and mappings
are based, and we compare ACA results based on two different types of co-citation counting - the traditional type that
only counts the first one among a cited work's authors on the one hand and a non-traditional type that takes into
account the first 5 authors of a cited work on the other hand. Results indicate that the picture produced through this non-traditional author co-citation counting contains more coherent author groups and is therefore considerably clearer. However, this picture represents fewer specialties in the research field being studied than that produced through the traditional first-author co-citation counting when the same number of top-ranked authors is selected and analyzed. Reasons for these effects are discussed
Variations on the Author
“Variations on the Author” discusses two of Eduardo Coutinho’s recent films (Um Dia na Vida, from 2010, and Últimas Conversas, posthumously released in 2015) and their contribution to the general question of documentary authorship. The director’s filmography is characterized by a consistent yet self-effacing form of authorial self-inscription: Coutinho often features as an interviewer that rather than express opinions propels discourses; an interviewer that is good at listening. This mode of self-inscription characterizes him as an author who is not expressive but who is nonetheless markedly present on the screen. In Um Dia na Vida, however, Coutinho is completely absent form the image, while Últimas Conversas, on the contrary, includes a confessional prologue that moves the director from the margins to the center of his films. This article examines the ways in which these works stand out in the filmography of a director who offers new insights into the notion of cinematic authorship
Appropriate Similarity Measures for Author Cocitation Analysis
We provide a number of new insights into the methodological discussion about author cocitation analysis. We first argue that the use of the Pearson correlation for measuring the similarity between authors’ cocitation profiles is not very satisfactory. We then discuss what kind of similarity measures may be used as an alternative to the Pearson correlation. We consider three similarity measures in particular. One is the well-known cosine. The other two similarity measures have not been used before in the bibliometric literature. Finally, we show by means of an example that our findings have a high practical relevance.information science;Pearson correlation;cosine;similarity measure;author cocitation analysis
Dispelling the Myths Behind First-author Citation Counts
We conducted a full-scale evaluative citation analysis study of scholars in the XML research field to explore just how different from each other author rankings resulting from different citation counting methods actually are, and to demonstrate the capability of emerging data and tools on the Web in supporting more realistic citation counting methods. Our results contest some common arguments for the continued
use of first-author citation counts in the evaluation of scholars, such as high correlations between author rankings by first-author citation counts and other citation
counting methods, and high costs of using more realistic citation counting methods that are not well-supported by the ISI databases. It is argued that increasingly available digital full text research papers make it possible for citation analysis studies to go beyond what the ISI databases have directly supported and to employ more
sophisticated methods
Stochastic computing for low-power and high-speed deep learning on FPGA
Stochastic Computing (SC) presents a low-cost and low-power alternative to conventional binary computing. In SC, continuous values are represented by stochastically generated bit streams. By performing simple hardware-friendly bit-wise operations on these streams, complex calculations can be realized very efficiently. However, the inherent randomness and approximation used in SC can result in undesirable computational errors. As Convolutional Neural Networks (CNNs) are inherently error-tolerant, SC could be embedded in them to gain higher speed and lower power without significant accuracy loss. In this paper, we propose using SC techniques to approximate multiplication operations on fixed-point weights and biases during training of CNNs. By employing such techniques, we demonstrate near state-of-the-art learning performance for the MNIST and CIFAR-10 datasets, while achieving significant resource and speed improvements when implementing the deep networks on a Field Programmable Gate Array (FPGA). For MNIST, we demonstrate that SC compared to conventional computing, will result in almost 3 times increase in learning speed with only 1.37% degradation in validation accuracy. Similarly, for CIFAR-10, training is accelerated 3.5 times with a degradation of 3.39%. We also show that our FPGA implementations of CNNs adopting stochastic multipliers consume over 17 times less power than their GPU counterparts
Sugarcane Health Monitoring With Satellite Spectroscopy and Machine Learning: A Review
Research into large-scale crop monitoring has flourished due to increased
accessibility to satellite imagery. This review delves into previously
unexplored and under-explored areas in sugarcane health monitoring and
disease/pest detection using satellite-based spectroscopy and Machine Learning
(ML). It discusses key considerations in system development, including relevant
satellites, vegetation indices, ML methods, factors influencing sugarcane
reflectance, optimal growth conditions, common diseases, and traditional
detection methods. Many studies highlight how factors like crop age, soil type,
viewing angle, water content, recent weather patterns, and sugarcane variety
can impact spectral reflectance, affecting the accuracy of health assessments
via spectroscopy. However, these variables have not been fully considered in
the literature. In addition, the current literature lacks comprehensive
comparisons between ML techniques and vegetation indices. We address these gaps
in this review. We discuss that, while current findings suggest the potential
for an ML-driven satellite spectroscopy system for monitoring sugarcane health,
further research is essential. This paper offers a comprehensive analysis of
previous research to aid in unlocking this potential and advancing the
development of an effective sugarcane health monitoring system using satellite
technology.Comment: 22 pages, 6 figures, 3 table
- …
