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Optimal Transmitter Placement in Realistic Urban Environm...
[Submitted on 30 Apr 2026 (v1), last revised 2 Sep 2026 (this ve · 2026-05-01 · via math updates on arXiv.org

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Abstract:In a wireless network, transmitter locations strongly impact achievable rates. Cellular deployment is a difficult non-convex problem, typically addressed using simplified models and heuristics. We propose a mathematically rigorous framework incorporating detailed site-specific maps, material properties, and realistic attenuation. We introduce an aggregated network-quality functional scoring receiver-weighted signal quality, impose deployment costs via cardinality and budget constraints, and establish submodularity under practical conditions. To solve the optimization problem, we propose the Interference-Aware Submodular Placement Algorithm (IA-SPA) with a theoretical approximation guarantee relative to the optimum. IA-SPA incorporates existing base stations and prohibited areas, making it applicable to clean-slate and incremental deployments. We evaluate our approach using ray-tracing simulations on 3D maps of San Francisco and Florence, comparing against known deployments by AT and T, T-Mobile, and Iliad. Our strategy achieves significant increases in mean data rate (about 2x) and edge rate (2-8x) using the same number of transmitters. These gains persist under simultaneous exclusionary zones, small-scale fading, material/geometric perturbations, and incremental densification of existing networks. The pipeline has linear computational dependence on candidate sites, and wall-clock measurements demonstrate practical runtime at city scale.

Submission history

From: Lukas Taus [view email]
[v1] Thu, 30 Apr 2026 17:40:22 UTC (22,465 KB)
[v2] Thu, 7 May 2026 15:24:24 UTC (18,819 KB)
[v3] Wed, 2 Sep 2026 04:40:43 UTC (15,286 KB)