Approach

How a project
actually runs.

No fixed team to keep busy and no platform to sell you into. Each project starts from the question and is built backwards — the right sensors, the right people, the right cadence.

The model

One point of contact.
A network on demand.

  • ConstantISmapping is me. You always deal with one person who owns the outcome and stays accountable end to end.
  • On demandAround that core I keep a curated pool of specialists — scientists, project managers, field-operations crews, programmers, GIS analysts, marketing — recruited per project by demand.
  • FocusedMy job is to tie all the ends together and keep scientists and programmers pointed at one thing: a viable product, not a research detour.
  • Right-sizedThe team is assembled to the project's requirements and stood down when it's done. You pay for the work, not the overhead.
ISmapping IDO LIVNE · LEAD
Process

Five steps, every time.

The order matters — each step earns the next. This is a real sequence, not a menu.

01

Scope & feasibility

We start with the decision you need to make. I assess whether remote sensing can answer it, which signal carries the information, and what a result is worth — before anyone commits to data.

02

Assemble the team

I pull in the specialists the project needs and define who does what. Small, focused, accountable.

03

Source & acquire data

Choosing sensor and platform — lab, drone, aircraft or satellite, high or low resolution — and acquiring or sourcing imagery at the right time and cadence.

04

Analyze & map

Processing and classifying the data into thematic maps and metrics that answer the original question, with the uncertainty stated honestly.

05

Deliver, train & support

Handover that sticks: clear products, training for your team, custom tools where they help, and ongoing technical support.

Capabilities

Sensors & platforms.

The right combination depends on the question — sometimes it's a satellite time series, sometimes a single drone flight, sometimes a sample under a lab spectrometer.

Sensors
Hyperspectral Multispectral LiDAR SAR

Spectral sensors read material and condition; LiDAR reads 3D structure; SAR sees through cloud and works day or night. Often they're combined.

Platforms & resolution
Lab & ground Drone Aircraft Satellite res high & low

From centimetre-scale drone detail to wide, low-resolution satellite coverage — matched to the area, budget and timing.

Time

From a single snapshot to long-term monitoring.

The same site can be a one-off measurement or a decade of change — the cadence is part of the design.

SnapshotContinuous
Single dataset
One acquisition, one answer.
Historical
Reading the archive — what changed before now.
Multi-temporal
A few dates compared to detect change.
Near-real-time
Fast turnaround when timing matters.
Ongoing & long-term
Standing monitoring over seasons and years.
Get in touch

Have a question in mind?

Bring me the decision you're trying to make. I'll tell you honestly whether remote sensing helps.