
Lake Shore Blvd Studios presents
Build and manage a power grid from the ground up. Balance generation, transmission and demand in a realistic simulation of grid physics, economics and energy markets.
Build, manage and optimize your own grid
Place generators, build transmission and distribution, serve demand, earn revenue on a realistic electricity market and complete connection missions — all in a living, ticking simulation.
Compete or cooperate to power entire regions
Competing utilities on one shared grid — build transmission corridors, race to energize demand nodes and settle deliveries across the network in real time.
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Phase angle differences drive MW flows across lines based on reactance — an AC-linearized approximation that captures congestion, overloads and cascade dynamics. Overloaded lines take damage and can trip. Frequency responds to generation-demand imbalance, tripping Dx stations, Tx substations and generators in sequence.
Revenue flows from three parallel streams: nodal energy sales priced by generation offers, congestion rent when your lines bridge price differentials between regions, and transfer capacity payments for high-voltage infrastructure. Redundant mesh networks earn reliability bonuses on top.
Lux (Ł) is the global standard for transacting in your energy empire — a stable coin created by a coalition of economists and engineers as a secure, universal medium of exchange across all grids. Every build cost, revenue stream, loan and price is denominated in Lux.
Power flows Generation → Tx Substations → Dx Substations → Demand. Higher voltage lines carry more MVA over longer distances with lower losses. Dx substations serve demand nodes within a configurable radius. Isolated circuits balance independently — connect them for stability or keep them autonomous.
Customer connection requests arrive at increasing difficulty tiers with unique load archetypes, each with power factor requirements, shedding priorities and reliability sensitivities. Supply them continuously for per-tick rewards, or risk losing the contract.
Day/night cycles reduce solar output at night. Wind transitions between calm, soft, medium and hard states, scaling wind generation. Random storms — lightning, ice, heat waves, hurricanes — damage assets in their path and can spike demand simultaneously.
Each demand archetype has a power factor range affecting apparent MVA load. Install STATCOM upgrades at Tx substations to boost power factor downstream, and capacitor banks at Dx substations for node-level correction. Poor power factor cuts effective capacity and raises losses.
Invest funds across four research categories: environmental, economic, generation output and durability. Research takes time measured in ticks — progress shows in real time and persists across sessions.
Track construction-phase and operating-phase CO₂ separately. Assets age each tick and degrade in health; neglected infrastructure fails and repair costs scale with the health deficit. BESS upgrades give solar and wind a minimum output floor.
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