Implementing the ITS archived data user service in Portland, Oregon

Author(s):  
R.L. Bertini ◽  
A.M. Byrd ◽  
T. Yin
Keyword(s):  
2018 ◽  
Vol 3 (1) ◽  
pp. 58
Author(s):  
Joni Karman ◽  
Julius Saputra

AbstrakDalam penulisan penelitian ini penulis akan menjelaskan tentang pembuatan program sistem pakar diagnosa kerusakan pada sepeda motor honda bebek berkarburator dengan menggunakan metode teorema bayes berbasis web Mobile. Dengan bahasa pemrograman php. Kebutuhan-kebutuhan yang diperlukan dalam membangun suatu perangkat yaitu menggunakan UML (Unified modelling language). Database yang digunakan MySQL dan dikembangkan menggunakan sublime text. Hasil pengembangan meliputi data kerusakan, data gejala, data basis aturan, data solusi, data user dan data admin. Berdasarkan penelitian tersebut dapat disimpulkan bahwa perangkat lunak yang dibangun adalah perancangan sistem pakar diagnosa kerusakan pada sepeda motor honda bebek berkarburator dengan menggunakan metode teorema bayes berbasis web Mobile. Hasil dari perangkat lunak ini diharapkan mampu memberikan kemudahan dalam mendiagnosa kerusakan pada sepeda motor dalam memproses data menjadi informasi cepat, tepat dan akurat. Kata Kunci : Sistem pakar, Teorema Bayes, Web Mobile


2019 ◽  
Author(s):  
Rumen Manolov

The lack of consensus regarding the most appropriate analytical techniques for single-case experimental designs data requires justifying the choice of any specific analytical option. The current text mentions some of the arguments, provided by methodologists and statisticians, in favor of several analytical techniques. Additionally, a small-scale literature review is performed in order to explore if and how applied researchers justify the analytical choices that they make. The review suggests that certain practices are not sufficiently explained. In order to improve the reporting regarding the data analytical decisions, it is proposed to choose and justify the data analytical approach prior to gathering the data. As a possible justification for data analysis plan, we propose using as a basis the expected the data pattern (specifically, the expectation about an improving baseline trend and about the immediate or progressive nature of the intervention effect). Although there are multiple alternatives for single-case data analysis, the current text focuses on visual analysis and multilevel models and illustrates an application of these analytical options with real data. User-friendly software is also developed.


2021 ◽  
pp. 002203452110202
Author(s):  
F. Schwendicke ◽  
J. Krois

Data are a key resource for modern societies and expected to improve quality, accessibility, affordability, safety, and equity of health care. Dental care and research are currently transforming into what we term data dentistry, with 3 main applications: 1) medical data analysis uses deep learning, allowing one to master unprecedented amounts of data (language, speech, imagery) and put them to productive use. 2) Data-enriched clinical care integrates data from individual (e.g., demographic, social, clinical and omics data, consumer data), setting (e.g., geospatial, environmental, provider-related data), and systems level (payer or regulatory data to characterize input, throughput, output, and outcomes of health care) to provide a comprehensive and continuous real-time assessment of biologic perturbations, individual behaviors, and context. Such care may contribute to a deeper understanding of health and disease and a more precise, personalized, predictive, and preventive care. 3) Data for research include open research data and data sharing, allowing one to appraise, benchmark, pool, replicate, and reuse data. Concerns and confidence into data-driven applications, stakeholders’ and system’s capabilities, and lack of data standardization and harmonization currently limit the development and implementation of data dentistry. Aspects of bias and data-user interaction require attention. Action items for the dental community circle around increasing data availability, refinement, and usage; demonstrating safety, value, and usefulness of applications; educating the dental workforce and consumers; providing performant and standardized infrastructure and processes; and incentivizing and adopting open data and data sharing.


2020 ◽  
Vol 2 (1) ◽  
Author(s):  
Herfia Rhomadhona ◽  
Jaka Permadi ◽  
Winda Aprianti

Monitoring pertanian jagung manis di Kecamatan Pelaihari masih dilakukan secara konvensional, dimana pemilik lahan harus pergi ke lahan untuk melakukan pemupukan, pembersihan gulma, dan pemanenan, serta pengantaran hasil panen ke pengepul. Kondisi lahan satu dengan lahan lain yang terpisah jarak cukup jauh dan ketidakseragaman penanaman jagung membuat pemilik lahan kerepotan dalam melakukan monitoring. Guna mengatasi permasalahan ini perlu pembuatan sistem informasi yang dapat membantu pemilik lahan mengelola lahan pertanian jagung manis. Pembangunan sistem diawali dengan melakukan identifikasi masalah untuk mengetahui alur sistem, perancangan menggunakan Entity Relationship Diagram (ERD) dan Data Flow Diagram (DFD), kemudian dilanjutkan dengan implementasi sistem menggunakan Bahasa pemrograman PHP dengan basis data MySql. Sistem informasi yang telah berhasil dibangun dapat diakses oleh 4 (empat) pengguna, yakni admin, pemilik lahan, petani, dan pengepul. Sistem ini dapat membantu pengelolaan data user, data petani, data pemilik lahan, data pengepul, data permintaan persediaan, data lahan, dan data detail lahan. Sistem informasi yang telah berhasil dibangun kemudian dilakukan pengujian fungsional menggunakan blackbox. Hasil pengujian menunjukkan bahwa semua fungsi pada sistem telah berjalan dengan baik. Kata Kunci: sistem informasi, pertanian jagung, blackbox


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