| 2022 | Environment Assertion Driven Requirements Elicitation: A Preliminary Study. | Austin Reid Thompson, Tanmay Bhowmik, Nan Niu |
| 2022 | The Implications of 'Soft' Requirements. | Alistair G. Sutcliffe, Pete Sawyer, Nelly Bencomo |
| 2022 | Eliciting Environmental Opposites for Requirements-Based Testing. | Sarah Sturmer, Nan Niu, Tanmay Bhowmik, Juha Savolainen |
| 2022 | Back to the Roots: Linking User Stories to Requirements Elicitation Conversations. | Tjerk Spijkman, Fabiano Dalpiaz, Sjaak Brinkkemper |
| 2022 | Teaching and learning Requirements Engineering concepts: Peer-review skills vs. problem solving skills. | Maria Spichkova |
| 2022 | How to Evaluate Explainability? - A Case for Three Criteria. | Timo Speith |
| 2022 | A Box Analogy Technique (BoAT) for Agile-based Modelling of Business Processes. | Carlos Eduardo da Silva, Leisia Medeiros, Yan de Lima Justino, Eduardo Luiz Gomes |
| 2022 | Domain Model Extraction from User-authored Scenarios and Word Embeddings. | Yuchen Shen, Travis D. Breaux |
| 2022 | Towards Improved Certification of Complex FinTech Systems - A Requirements-based Approach. | Sepehr Sharifi, Daniel Amyot, John Mylopoulos, Patrick McLaughlin, Ray Feodoroff |
| 2022 | Enriching Vision Videos with Text: An Eye Tracking Study. | Melanie Schmedes, Maike Ahrens, Lukas Nagel, Kurt Schneider |
| 2022 | Phish Finders: Crowd-powered RE for anti-phishing training tools. | Holly Rosser, Maylene Mayor, Adam Stemmler, Vinod Kumar Ahuja, Andrea Grover, Matthew Hale |
| 2022 | Constructing Explainability. | Katharina J. Rohlfing, Philipp Cimano |
| 2022 | A Participatory Design Methodology to Elicit Aging- in-Place Stakeholder Concerns with Ambient Assistive Living (AAL) Devices During COVID-19. | Katherine-Marie Robinson, Rachana Devkota, Jason Millar |
| 2022 | Socio-Technical Modelling for GDPR Principles: an Extension for the STS-ml. | Claudia Negri-Ribalta, Ren Nol, Nicolas Herbaut, Oscar Pastor, Camille Salinesi |
| 2022 | DizSpec: Digitalization of Requirements Specification Documents to Automate Traceability and Impact Analysis. | Asha Rajbhoj, Padmalata Nistala, Vinay Kulkarni, Shivani Soni, Ajim Pathan |
| 2022 | Understanding IT-related Well-being, Aging and Health Needs of Older Adults with Crowd-Requirements Engineering. | Leon Radeck, Barbara Paech, Franziska Kramer-Gmeiner, Markus Wettstein, Hans-Werner Wahl, Anna-Lena Schubert, Uwe Sperling |
| 2022 | Explainability in a Time of Socially Responsible Software. | Roxana Lisette Quintanilla Portugal, Luiz Marcio Cysneiros, Julio Csar Sampaio do Prado Leite |
| 2022 | A Tool For Software Requirement Allocation Using Artificial Intelligence Planning. | Fernanda C. Pereira, Gerhard B. Neto, Luis F. de Lima, Fabiano Silva, Letcia M. Peres |
| 2022 | Requirements Engineering for Machine Learning: A Review and Reflection. | Zhongyi Pei, Lin Liu, Chen Wang, Jianmin Wang |
| 2022 | Threat-driven Risk Assessment for APT Attacks using Risk-Aware Problem Domain Ontology. | Sihn-Hye Park, Seok-Won Lee |
| 2022 | Goal Elicitation Heuristics Anchored on a Thinking Frame. | Antnio de Pdua Albuquerque Oliveira, Luiz Marcio Cysneiros, Julio Csar Sampaio do Prado Leite |
| 2022 | Approach to Generating Functional Test Cases from BPMN Process Diagrams. | Pauline von Olberg, Lukas Strey |
| 2022 | A Case Study of Building Shared Understanding of Non-Functional Requirements in a Remote Software Organization. | Laura Okpara, Colin M. Werner, Adam Murray, Daniela E. Damian |
| 2022 | AI Ethics Impact Assessment based on Requirement Engineering. | Izumi Nitta, Kyoko Ohashi, Satoko Shiga, Sachiko Onodera |
| 2022 | Expanding the Horizon of Linear Temporal Logic Inference for Explainability. | Daniel Neider, Rajarshi Roy |