Call for Papers — IEEE B-HTC 2027
Scope and Objective

Adaptation is now a first-order engineering problem

Submission
6–8 pages, IEEE format
Track
Single track, open to all
Review
3+ expert reviews
Publication
IEEE Xplore

Aligned with UN Sustainable Development Goal 13 (Climate Action) and its adaptation-focused targets — 13.1 (resilience and adaptive capacity) and 13.3 (early warning and capacity-building) — B-HTC 2027 seeks work that helps communities, infrastructure, and ecosystems anticipate, withstand, and recover from a climate that has already shifted.

We solicit original, unpublished full-length research papers reporting substantive technical contributions. Methods of interest include machine learning and deep learning, graph neural networks, generative and foundation models, reinforcement learning, physics-informed and hybrid modelling, computer vision and remote-sensing analytics, time-series forecasting, optimisation and operations research, simulation and digital twins, and federated and edge learning for distributed, low-connectivity settings.

Every submission must demonstrate methodological rigour, quantitative evaluation, and reproducibility sufficient for indexing in IEEE Xplore. We especially welcome work that is deployed or validated in context, that quantifies an adaptation outcome, and that advances open datasets, digital public goods, and reproducible tooling.

Important Dates

One submission cycle

1 Sep 2026
Submission portal opens
19 Dec 2026
Full paper submission deadline
13 Feb 2027
Notification of acceptance
6 Mar 2027
Camera-ready paper submission
13 Mar 2027
Author registration deadline
23–24 Apr 2027
Conference dates

All deadlines are 23:59 Anywhere on Earth (AOE, UTC−12). Submission-cycle dates are proposed to standard IEEE norms and subject to Organising Committee ratification; the conference dates are fixed.

Submissions

One track, open to all, held to an Xplore-grade bar

Submission Track

Research Papers, 6 to 8 pages

A single track, open to all authors from academia, industry, government, and civil society. IEEE two-column format, inclusive of all figures, tables, and references, reporting original, unpublished, and rigorously evaluated technical work. Papers targeting the Transform focus area must additionally include a technical artefact — conceptual framing alone is out of scope for that area.

Review

At least three expert reviews per paper

Each paper is reviewed by at least three members of the Technical Program Committee. Reviews assess technical soundness and adaptation outcome as distinct axes: a paper must earn both. Submissions that assert impact without evidence, omit baselines or evaluation, or cannot substantiate a quantified adaptation outcome will not be competitive, regardless of topical relevance.

Technical Rigour and Evaluation

What reviewers score

01

Novelty and contribution

A clearly articulated, non-incremental technical contribution positioned against the current state of the art.

02

Methodological soundness

Appropriate, correctly applied methods, with assumptions, threats to validity, and limitations stated explicitly.

03

Quantitative evaluation

Results validated against baselines, benchmarks, or real-world data using appropriate metrics, with ablations, error and uncertainty analysis, and statistical treatment where relevant.

04

Reproducibility

Sufficient detail — data, code, parameters, and settings — for independent reproduction; release of open artefacts is strongly encouraged.

05

Adaptation outcome

A measured resilience or adaptive-capacity gain, scored as a distinct axis from technical soundness.

Focus Areas

The ADAPT tracks in detail

Across all focus areas, submissions must demonstrate technical depth, sound methodology, and quantitative evaluation. Topical fit alone is not sufficient for acceptance.

A
Function 01

Anticipate: Climate Sensing, Forecasting, and Early Warning

SDG 13 SDG 11 SDG 9

Topics of Interest

  • Satellite Earth observation for hazard detection and monitoring (optical, thermal, hyperspectral, and SAR), including small-satellite and constellation approaches for high-revisit coverage
  • Geospatial, GIS, and geodetic sensing, including GNSS-based ground deformation, subsidence, and displacement monitoring, for exposure and vulnerability assessment
  • Multi-source data fusion across satellite, aerial, IoT, and in-situ ground networks
  • Impact-based probabilistic forecasting, nowcasting, and downscaling of extreme events
  • Multi-hazard early-warning systems with actionable lead time for heat, flood, and drought

Specific Challenges

  • Data-sparse regions: robust retrieval and forecasting under sparse ground truth, cloud cover, and intermittent connectivity
  • Coastal and cyclone-prone zones: multi-day surge and inundation early warning
  • Dense urban areas: street-level heat and pluvial-flood nowcasting for at-risk populations
D
Function 02

Defend: Climate-Proofing Assets and Critical Infrastructure

SDG 13 SDG 9 SDG 11

Topics of Interest

  • Climate-resilient design and retrofitting of critical infrastructure (power, water, transport, telecom)
  • Engineered green-grey infrastructure with quantified hydraulic and thermal performance
  • Predictive maintenance and structural health monitoring under climate stress
  • Digital twins for stress-testing assets against future climate scenarios
  • Coastal, riverine, and urban flood defence engineering

Specific Challenges

  • Coastal infrastructure: designing and validating surge- and erosion-resistant assets
  • Flood-prone urban corridors: instrumented green-grey drainage and detention systems
  • Mountain and landslide zones: slope stabilisation and infrastructure resilience monitoring
A
Function 03

Absorb: Resilient Food, Water, and Health Systems

SDG 13 SDG 2 SDG 6 SDG 3

Topics of Interest

  • Climate-resilient and precision agriculture: remote sensing, machine learning, and crop modelling for yield forecasting and input optimisation under variable conditions
  • Water security: hydrological and hydro-economic optimisation of storage, reuse, and allocation under scarcity and shocks
  • Network modelling and simulation of food- and water-system supply chains for resilience under climate shocks
  • Predictive surveillance and early-warning systems for climate-sensitive health risks (heat, vector-borne, and water-borne)
  • Ecosystem-based interventions with instrumented, quantified hydrological, thermal, or ecological outcomes

Specific Challenges

  • Smallholder agriculture: affordable, deployable advisory tools that remain accurate under sparse local data
  • Water-stressed regions: reuse and allocation optimisation under recurring shortage and competing demands
  • Climate-sensitive health: early detection of heat, vector-borne, and water-borne risks from routine data
P
Function 04

Protect: Disaster Preparedness, Response, and Recovery

SDG 13 SDG 11 SDG 1

Topics of Interest

  • Agent-based and network modelling for evacuation, crowd movement, and preparedness planning under multi-hazard scenarios
  • Last-mile, multi-channel emergency alerting and warning dissemination, with reach, latency, and coverage optimisation for low-connectivity and low-access populations
  • Rapid post-disaster damage and needs assessment using computer vision on satellite, UAV, and crowdsourced imagery
  • Robotics, UAVs, and optimisation for emergency logistics, resource allocation, and relief delivery under uncertainty
  • Data-driven recovery and reconstruction planning and simulation that reduces measured future exposure

Specific Challenges

  • Informal and high-density settlements: equitable warning reach and evacuation routing where maps and addresses are incomplete
  • Rural and remote response: coordination and logistics under limited infrastructure and intermittent connectivity
  • Post-event recovery: prioritising reconstruction to measurably reduce future exposure
T
Function 05

Transform: Computational Tools for Systemic Adaptation

SDG 13 SDG 9 SDG 11 Technical Artefact Mandatory

Topics of Interest

  • Decision-support and scenario-planning tools for systemic, cross-sectoral adaptation
  • Optimisation and simulation for managed retreat, relocation, and land-use transformation
  • Modelling of livelihood transitions and just, equitable adaptation pathways
  • Integrated risk and resilience platforms spanning multiple hazards and sectors
  • Open, reproducible tooling and digital public goods for adaptation planning

Specific Challenges

  • Cross-sectoral systems: tools that reconcile competing adaptation objectives
  • Managed retreat and relocation: transparent, equitable decision support
  • Livelihood transitions: modelling pathways that avoid maladaptation and lock-in
Scope and Publication

Eligibility for IEEE Xplore

Scope Boundary

Engineered and quantified, or out of scope

Nature-based and ecosystem-based approaches are in scope only as engineered, quantified work — for example, green-grey infrastructure with measured hydraulic or thermal performance, or ecosystem-based interventions with instrumented outcomes. Purely qualitative, policy-only, or conceptual contributions without a technical artefact or quantified evaluation fall outside the IEEE Xplore eligibility line and will be desk-rejected without review.

Submission and Publication

IEEE requirements

  • Papers must be original and not concurrently under review; dual submission is prohibited.
  • Use the official IEEE conference paper template (two-column, US Letter); submit as PDF via the conference submission system.
  • All papers are screened with IEEE CrossCheck (iThenticate); submissions exceeding IEEE similarity thresholds are rejected without review.
  • Camera-ready papers must pass IEEE PDF eXpress validation.
  • IEEE no-show policy applies: at least one author must register and present on-site. Papers not presented are excluded from IEEE Xplore.