report

Title of the Report

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2026/02/16 22:34 · epsatisep · 0 Comments

Abstract

2026/02/16 22:31 · epsatisep · 0 Comments

Glossary

Abbreviation Description
EPS European Project Semester
ISEPInstituto Superior de Engenharia do Porto
USB Universal Serial Bus
2026/02/16 22:32 · epsatisep · 0 Comments

Introduction

Present here the team

Describe here your motivation for choosing this project

Provide here the problem you are tacking

Detail here the objectives of this project

Specify here the identified and mandatory requirements the solution has to fulfil

Chapter Description
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2026/02/16 21:05 · epsatisep · 0 Comments

Background and Related Work

This chapter provides the reader with the relevant technical-scientific background as well as existing related products and research, also known as the state of the art, in the field(s) of the project.

Provide here an overview of the contents (structure) of this chapter.

Provide here all relevant concepts related to the topic(s) of the project

These are examples of citations to books [Rita Thapa, et al., 2019] and [Kazuko Obayashi, Shigeru Masuyama, 2020], a chapter on a smart companion [Alexandre Soares dos Reis, et al., 2020], articles on IoT [Abdelbaset S. Hamza, et al., 2023], blimps [Manuel Mahn, Markus Kemper, 2006], cloud computing [B. Sotomayor, et al., 2009], gas emissions [Ranjith, V. Velmurugan, S. Thanikaikarasan, 2020], pedestrian crossing behaviour [Anae Sobhani, Bilal Farooq, 2018], smart bicycles [YeongKyun Lee, Jongpil Jeong, 2018] and diaper moisture [Tareq Khan, 2018], and to Web resources [Android Open Source Project, 2014], [Cloud Expo, 2008] and [Gartner, 2021].

Search, select and describe related commercial solutions

Table 1 illustrates a boxed table with default column widths and Table 2 with specific column widths.

Table 1: Boxed table
Abbreviation Description
EPS European Project Semester
ISEPInstituto Superior de Engenharia do Porto
USB Universal Serial Bus
Table 2: Boxed table with specific column widths

Abbreviation

Description

EPS European Project Semester
ISEPInstituto Superior de Engenharia do Porto
USB Universal Serial Bus

Table 3 shows the execution time results for each API. Table 4 lists the fruit bought at the grocery.

Table 3: Time response
API Time (s)
EJML 26
JAMA 295
JBLAS 29
MTJ 18
WEKA 123
Table 4: Fruit Weight
Fruit Weight (kg)
Pears 2.60
Apples 2.95
Oranges 1.90

Figure 1 displays a magnificent owl from Lapland.

Figure 1: Owl

Figure 2 illustrates the placement of two images side by side.

Image 1

Image 2

Figure 2: Images side by side

Figure 3 presents the European Project Semester (EPS) logo.

Figure 3: EPS logo

Search, select and describe related research projects

Compare selected products and projects considering the requirements of your own solution

Provide here the conclusions of this chapter and make the bridge to the next chapter.

Based on this study of the state of the art, the team decided to adopt the following <specify here the architecture, technique(s), material(s), component(s)> because <specify here the technical/scientific reasons>.

2026/02/16 21:06 · epsatisep · 0 Comments

Project Management

Provide here an overview of the contents (structure) of this chapter. Explain the project management approach your group followed and justify why you think it is a good approach.

Document the boundaries of your project. Document the product scope (the extent of what your project will produce) and the project Scope (summary of the work needed to produce it). Make sure you clearly define what is part of the project and what is outside of its scope, justifying as needed.

Table 5 illustrates a boxed table with default column widths and Table 6 with specific column widths.

Table 5: Boxed table
Abbreviation Description
EPS European Project Semester
ISEPInstituto Superior de Engenharia do Porto
USB Universal Serial Bus
Table 6: Boxed table with specific column widths

Abbreviation

Description

EPS European Project Semester
ISEPInstituto Superior de Engenharia do Porto
USB Universal Serial Bus

Table 7 shows the execution time results for each API. Table 8 lists the fruit bought at the grocery.

Table 7: Time response
API Time (s)
EJML 26
JAMA 295
JBLAS 29
MTJ 18
WEKA 123
Table 8: Fruit Weight
Fruit Weight (kg)
Pears 2.60
Apples 2.95
Oranges 1.90

Figure 4 displays a magnificent owl from Lapland.

Figure 4: Owl

Figure 5 illustrates the placement of two images side by side.

Image 1

Image 2

Figure 5: Images side by side

Figure 6 presents the European Project Semester (EPS) logo.

Figure 6: EPS logo

Explain how you managed the schedule of your project. Document the key milestones of your project, mapping key phases to reference deadlines.

Describe your project budget and its key components. Explain how your budget was managed throughout the project. Document the planned vs. effective costs of your project.

Document quality metrics that will apply to your project deliverables, associated thresholds and how they should be reviewed.

Enumerate all people relevant to your project, including the project team and key stakeholders. Document their roles and responsibilities. Document your stakeholder management plan and strategy.

Document how your team will manage communications, describing communication channels, meetings, etc.

Identify key risks (product and project level), evaluate them and define how they should be handled (responses) and monitored. Perform quantitative and qualitative risk analysis and use the results to define the appropriate risk responses.

Document your procurement management strategy including make vs buy decisions, materials/services to be acquired, sources, costs, timings, etc.

Document the project schedule, and the key project phases, using a Gantt Chart. Highlight the key project phases and milestones.

Describe how your plan was mapped to multiple iterative sprints.

Document how the sprint backlog was planned and managed for each of the sprints you have created in Planner.

Describe how prioritization was done.

Document how the estimation process was implemented, and any underlying challenges.

Provide a summary of the sprints that were executed, along with sprint goals.

Include the outcomes of all sprint reviews (what was the sprint backlog, completion status, planned capacity vs. achieved velocity).

Include the summary of all the sprint retrospectives, including any actions implemented as part of the team’s continuous improvement strategy.

Provide here the conclusions of this chapter and make the bridge to the next chapter.

2026/02/16 21:07 · epsatisep · 0 Comments

Marketing Plan

Provide here an overview of the contents (structure) of this chapter.

Provide here the conclusions of this chapter and make the bridge to the next chapter.

Based on this market/economic analysis, the team decided to create <specify the type of product> intended for <specify the market niche> because <specify here the relevant market-related reasons>. Consequently, the team decided to design a solution with the following <specify here the features added for market reasons>.

2026/02/16 21:08 · epsatisep · 0 Comments

Eco-efficiency Measures for Sustainability

Sustainability is a widely used concept that is applied by companies, organizations and politicians in various contexts. This chapter deals with specific measures to minimize the environmental footprint. An overview of the most important aspects of sustainable development and eco-efficiency. The eco-efficiency measures for sustainability provide a foundation for understanding our environmental responsibility and resource efficiency.

Throughout history, geo-resources have served as crucial elements in providing all kinds of raw materials. However, excessive consumption has inflicted significant damage on the ecosystems, resulting in pollution and resource depletion. Sustainable engineering presents itself as a solution to this pressing issue, aiming to reconcile the demands of environmental preservation with economic growth. Sustainable engineering plays a fundamental role in these processes as it is rooted in the three pillars of sustainable: environment, society, and the economy. In simple terms, sustainability means to satisfy existing needs, without eliminating the needs of future generations. This correlates also with the 17 sustainable development goals (SDGs) from the United Nations. By adapting to nature, rather than trying to control it, more sustainable practices and products can be created.

The environmental influence of products is of high importance in many aspects such as by depleting natural resources or emitting greenhouse gases. Concerning the product, it is important to try to reduce negative influences on the environment. This is achieved by reducing, reusing and recycling raw materials; taking into consideration the energy consumption in all phases of the project, as well as by minimizing transport.

The economic aspect of sustainability relates to the efficient and cost-effective utilization of resources, aiming to minimize environmental impact while ensuring long-term economic viability. The goal is to strike a balance between environmental responsibility and financial success by devising products, processes, and business models that are both ecologically and economically advantageous. Thus, the sustainable economy focuses on the responsible management of economic, social, and environmental resources to support the well-being of current and future generations. The goal of economic sustainability is to achieve economic growth without making the negative environmental trade-offs that traditionally occur. It also means that the price of the product matches the time the product fulfils its purpose.

Social sustainability is about identifying and managing business impacts, both positive and negative, on people. It refers to the ability of a project or initiative to foster positive and inclusive social interactions while considering the long-term effects on society. The social aspect of sustainability deals with the community, education, equality, justice, social resources, health, well-being, quality education and quality of life. The product should meet those social aspects.

One crucial task is to assess how each stage of the life cycle contributes to the overall environmental impact. This analysis is typically aimed at prioritizing enhancements in products or processes and comparing various products for internal purposes. Life Cycle Analysis (LCA) is a method for evaluating the environmental impact of a service or product throughout its life cycle, from design to end-of-life management. LCA or life cycle assessment is an essential tool to support sustainable development decision-making, as well as to assess the potential environmental impacts of a product, material, process or activity.

Provide here the conclusions of this chapter and introduce the next chapter.

Based on this sustainability analysis, the team chose <specify here the design, technique(s) material(s), component(s)> for the following <specify here the relevant sustainability-related reasons>.
Consequently, the team decided to design a solution with the following <specify here the features added for sustainability reasons>.

2026/02/16 21:09 · epsatisep · 0 Comments

Ethical and Deontological Concerns

Provide here an overview of the contents (structure) of this chapter.

Provide here the conclusions of this chapter and make the bridge to the next chapter.

Based on this ethical and deontological analysis, the team chose <specify here the design, technique(s) material(s), component(s)> for the following <specify here the relevant ethics-related reasons>.
Consequently, the team decided to design a solution with the following <specify here the features added for ethical reasons>.

2026/02/16 21:10 · epsatisep · 0 Comments

Project Development

Provide here an overview of the contents (structure) of this chapter.

Add and explain thoroughly the: (i) initial structural drafts; (ii) material selection; (iii) detailed drawings; (iv) 3D model with load and stress analysis; (v) colour palette.

Hardware

Include and explain in detail the: (i) black box diagram; (ii) hardware component selection (use tables to compare the different options for each component; (iii) detailed schematics; (iv) power budget.

Software

Describe in detail the: (i) use cases or user stories for the smart device and app; (ii) selection of development platforms and software components (use tables to compare the different options); (iii) component diagram.

Present and explain the: (i) initial packaging drafts; (ii) detailed drawings; (iii) 3D model with load and stress analysis, if applicable.

Refer main changes in relation to the designed solution.

Detail and explain any changes made in relation to the designed solution, including structural downscaling, different materials, parts, etc.

Detail and explain any change made in relation to the designed solution. In case there are changes regarding the hardware, present the detailed schematics of the prototype.

Detail and explain any changes made in relation to the designed solution, including different software components, tools, platforms, etc.

The code developed for the prototype (smart device and apps) is described here using code flowcharts.

Hardware tests

Perform the hardware tests specified in Tests. These results are usually presented in the form of tables with two columns: Functionality and Test Result (Pass/Fail).

Software tests

Software tests comprise: (i) functional tests regarding the identified use cases / user stories; (ii) performance tests regarding exchanged data volume, load and runtime (these tests are usually repeated 10 times to determine the average and standard deviation results); (iii) usability tests according to the System Usability Scale.

Provide here the conclusions of this chapter and make the bridge to the next chapter.

2026/02/16 21:11 · epsatisep · 0 Comments

Conclusions

Discuss here what was achieved (wrt the initial objectives) and what is missing (wrt the initial objectives) of the project.

Identify here the limitations of the solution and prototype.

Provide here your recommendations for future work.

2026/02/16 21:12 · epsatisep · 0 Comments

Acknowledgements

2026/02/16 22:33 · epsatisep · 0 Comments

Will be added automatically by citing, in the body of the report, entries specified in BibTeX format and stored in the https://www.eps.dee.isep.ipp.pt/doku.php?id=refnotes:bib file

PS - If you have doubts on how to make citations, create captions, insert formulas, etc. visit this page with examples and select “Show pagesource” to see the source code.


[Rita Thapa, et al., 2019] Rita Thapa, Hom Bahadur Rijal, Masanori Shukuya, Hikaru Imagawa, 2019. Study on the wintry thermal improvement of makeshift shelters built after Nepal earthquake 2015. Energy and Buildings, 199, pp.62 - 71, ISSN 0378-7788.
[Alexandre Soares dos Reis, et al., 2020] Alexandre Soares dos Reis, Elien Gielen, Ko Wopereis, Marcel Pasternak, Vaido Sooäär, Tobias Schneider, Abel J. Duarte, Benedita Malheiro, Jorge Justo, Cristina Ribeiro, Manuel F. Silva, Paulo Ferreira, Pedro Guedes, 2020. Smart Companion Pillow – An EPS@ISEP 2019 Project. Robot 2019: Fourth Iberian Robotics Conference, Cham: Springer International Publishing, pp.465–476, ISBN 978-3-030-36150-1.
[Abdelbaset S. Hamza, et al., 2023] Abdelbaset S. Hamza, Rahman Tashakkori, Bejamen Underwood, William O'Brien, Chris Campell, 2023. BeeLive: The IoT platform of Beemon monitoring and alerting system for beehives. Smart Agricultural Technology, 6, pp.100331, ISSN 2772-3755.
[Manuel Mahn, Markus Kemper, 2006] Manuel Mahn, Markus Kemper, 2006. A BEHAVIOUR-BASED NAVIGATION SYSTEM FOR AN AUTONOMOUS INDOOR BLIMP. IFAC Proceedings Volumes, 39, pp.837-842, ISSN 1474-6670.
[B. Sotomayor, et al., 2009] B. Sotomayor, Ruben S. Montero, I.M. Llorente, I. Foster, Sept 2009. Virtual Infrastructure Management in Private and Hybrid Clouds. Internet Computing, IEEE, 13, pp.14-22.
[Ranjith, V. Velmurugan, S. Thanikaikarasan, 2020] Ranjith, V. Velmurugan, S. Thanikaikarasan, 2020. Prediction of Exhaust Gas Emission characteristics using Neem oil blended bio-diesel in diesel engine. Materials Today: Proceedings, 21, pp.870 - 875, ISSN 2214-7853.
[Anae Sobhani, Bilal Farooq, 2018] Anae Sobhani, Bilal Farooq, 2018. Impact of smartphone distraction on pedestrians crossing behaviour: An application of head-mounted immersive virtual reality. Transportation Research Part F: Traffic Psychology and Behaviour, 58, pp.228 - 241, ISSN 1369-8478.
[YeongKyun Lee, Jongpil Jeong, 2018] YeongKyun Lee, Jongpil Jeong, 2018. Design and Implementation of Monitoring System Architecture for Smart Bicycle Platform. Procedia Computer Science, 134, pp.464–469, ISSN 1877-0509.
[Tareq Khan, 2018] Tareq Khan, May 2018. A Smart Wearable Gadget for Noninvasive Detection and Notification of Diaper Moister. 2018 IEEE International Conference on Electro/Information Technology (EIT), pp.0240-0244, ISSN 2154-0373.
[Android Open Source Project, 2014] Android Open Source Project, 2014. Android Developers: Android 4.1 APIs. [Accessed in April 2017].
[Cloud Expo, 2008] Cloud Expo, 2008. Twenty-One Experts Define Cloud Computing. [Accessed in April 2021].
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