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Alternative Propulsion Engineering Conference

altpropulsion.com · American English

APEC™ is the world's leading conference event for warp drive, gravity modification & UAP physics research.

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Sep 27, 2026
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APEC: Alternative Propulsion Engineering Conference
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  1. The EmDrive: Theory, Engineering & Applications
    Sep 27, 2026 · original
    Roger Shawyer’s EmDrive poses a question with enormous consequences for spaceflight: could a spacecraft accelerate using electricity without ejecting propellant? In his presentation to the Alternative Propulsion Engineering Conference (APEC), the British engineer connected that proposition to a sweeping vision of superconducting thrusters, personal air vehicles, lunar tourism, and reusable spaceplanes. Along the way, he laid out the proposed physics, demanding engineering requirements, and reported experiments behind his electromagnetic propulsion system. The resulting story reaches well beyond an unusual microwave cavity—it’s about the distance between a laboratory measurement and a technology that could change how people travel through space.
  2. Gravitational Field Propulsion Technologies: From Superconducting Coils to Warp Drives
    Sep 27, 2026 · original
    Could a spacecraft move by engineering the gravitational environment around it? For researcher Gary Stephenson, answering that question starts with separating a collection of ideas into specific physical mechanisms, proposed experiments, and unresolved engineering problems. His survey of gravitational field propulsion technologies stretches from superconducting coils and oscillating fusion plasmas to warp drives, quantum transitions, and speculative forms of teleportation. Developed through his volunteer work with the Scientific Coalition for UAP Studies, the project asks whether any of these approaches could help explain unusual aerospace observations—and, more practically, whether they could point toward technologies humans might eventually build.
  3. The Race To Infinity: Potential Solutions For Travel To Other Worlds
    Sep 27, 2026 · original
    Brendan McNamara wants to meet aliens. Not in the abstract, not through a message that arrives centuries after it was sent, and not by launching a spacecraft that his distant descendants might eventually welcome home. He wants the encounter to happen within his own lifetime. An ecologist, computer technician, farmer, and carpenter, McNamara approaches that ambition from an unusually broad perspective, following a trail that leads from nuclear propulsion and engineered spacetime to quantum computers, simulated worlds, and consciousness itself. Along the way, the question changes. What begins as a search for a faster spacecraft becomes something more fundamental: Does experiencing another world necessarily require taking a human body there?
  4. APEC 9/26: Operational Quantum Gravity, Vacuum Experiments & Implosion
    Sep 26, 2026 · original
    Mikolaj Baczynski will share new experimental results related to his Vacuum Propeller research; Todd Desiato will explore a proposed connection between gravity and the Standard Model; and Denny O will examine what comes next for implosion research. We’ll close with discussion and questions from attendees. We’ll also hear updates from our lab partners, then close with an open discussion and Q&A with attendees.
  5. Can We Harness Zero-Point Energy? Inside Thorsten Ludwig’s Casimir Research
    Sep 25, 2026 · original
    Can we turn the energy of empty space into electricity? For physicist Dr. Thorsten Ludwig, that question starts with a sphere just 200 micrometers across, a flexible cantilever, and a laser that reveals movements too small to see. In an interview with Tim Ventura, Ludwig described the instruments he’s building to investigate Casimir forces, the semiconductor devices attracting attention to vacuum-energy research, and the patterned surfaces he’s testing for possible propulsion effects. His work offers a view of a field where genuine laboratory capabilities sit alongside ambitious, unresolved possibilities—and where measuring a force is only the beginning of learning how to use it.
  6. Engineering the Quantum Vacuum: 47 Casimir Devices and Concepts
    Sep 25, 2026 · original
    Can an interaction across an apparently empty gap become the working part of a machine? Casimir research has moved beyond measuring tiny attractions to controlling mechanical motion, assembling optical structures, and generating quantum-correlated radiation with external drives. Its more ambitious proposals reach toward vacuum-energy power cells and spacecraft propulsion. These 47 devices and concepts map that landscape — from measured laboratory effects to designs that remain theoretical or disputed — and reveal why understanding what powers a device is just as important as understanding the force it uses.
  7. Eugene Podkletnov’s Four Experiments in Gravity Control
    Sep 23, 2026 · original
    What began as a quality-control test for superconducting ceramics led Dr. Eugene Podkletnov into a series of experiments involving apparent weight loss, gold-coated rotating disks, high-voltage impulses, and coils that briefly lift themselves that’s spanned roughly 35 years. In a recent interview with podcast host Tim Ventura, the chemist and materials scientist outlined four distinct approaches, including reports of bent metal, altered laser intensity, and an impulse traveling at 64 times the speed of light. Taken together, the experiments describe a changing research strategy: moving from spinning materials toward controllable electromagnetic fields, while trying to determine what’s actually producing the reported forces.
  8. The 2025 and 2050 Military Aerospace Vehicles
    Sep 18, 2026 · original
    In 2006, aerospace researchers Paul Czysz and David Froning proposed a reusable military spaceplane designed to take off from a runway, accelerate through the atmosphere with advanced airbreathing propulsion, use magnetohydrodynamics to harvest electrical power from hypersonic airflow, and ignite an aneutronic proton-boron Dense Plasma Focus fusion rocket near the edge of space. Their 2025 Vehicle was designed for missions from atmospheric flight through geosynchronous orbit, while a more ambitious 2050 evolution would add advanced propulsion and power concepts intended to extend the same basic architecture into cislunar space and potentially enable rapid flights toward lunar orbit.
  9. The IVO Quantum Drive’s Orbital Test & Quantised Inertia Physics
    Aug 29, 2026 · original
    The propellantless IVO Quantum Drive was tested in orbit. What happened next wasn’t proof—but it wasn’t nothing. Explore the first-of-its-kind orbital test of IVO’s propellantless Quantum Drive, learn what happened in orbit, and how Mike McCulloch’s Quantised Inertia theory may explain the anomalous experimental results.
  10. The Warp Drive Interpretation of UAP Observables
    Aug 29, 2026 · original
    The extraordinary flight characteristics attributed to UAP have traditionally been described through five well-known observables. Engineering technologist and author Chad Wanless argues that five additional signatures—visible in photographs, video, infrared imagery and radar data—may offer clues to the propulsion mechanism itself.
  11. The UnLab’s Coherent Matter Wave Beam & Vacuum-Fluctuation Propulsion
    Aug 29, 2026 · original
    The former Lockheed Martin Senior Tech Fellow is pursuing coherent matter beams, Casimir power and vacuum-fluctuation propulsion—while also developing practical technologies to make homes more resilient.
  12. Chance Glenn’s Experimental Spacetime Distortion & Warp Research
    Aug 29, 2026 · original
    Chance Glenn says a high-voltage plasma shifted laser interference fringes by as much as 160 nanometers. A new state-funded torsion-balance experiment will test a harder question: whether the reported effect can produce measurable force.
  13. APEC 8/29: Exodus Propellantless Propulsion & Quantized Inertia
    Aug 11, 2026 · original
    Charles Buhler will discuss his continuing work on the the physics model for Exodus Propellantless Propulsion, Andrew Aurigema will discuss his ongoing experimental research with Exodus, and Mike McCulloch will be discussing the theory, applications, and experimental validation of his physics model of Quantized Inertia. We’ll also hear updates from our lab partners, then close with an open discussion and Q&A with attendees.
  14. APEC 7/11: Torsion Cavitation Drives, ZPF Tech & Mass Displacement
    Jun 30, 2026 · original
    Al Baur on Advancements in Electrostatic Levitation, Gabriel Dias will discuss Boundary Conditioned Vacuum Interaction Systems and ZPF Tech research, Jennifer Nielsen will discuss torsion cavitation drives in the TUFTS model of physics, and Denny Okudinani will be presenting on A Brief Historical and technical Look at Solid-State Spatial Mass Displacement. We’ll also hear updates from our lab partners, then close with an open discussion and Q&A with attendees.
  15. The Third Observable: Hypersonic Velocity without Signatures
    Jun 19, 2026 · original
    A UAP moving through the air at hypersonic speed should have a glowing plasma sheath and massive sonic boom, while one entering the ocean should produce impact forces, vapor, cavitation and an acoustic pulse. Yet a recurring claim in the modern UAP literature describes objects that appear to do none of these things, which Lue Elizondo first popularized as "The Third Observable: Hypersonic Velocity Without Signatures." Either the estimated velocities are wrong, the expected effects weren't detected, or the UAP simply isn't interacting with the surrounding medium in the way we expect. The difference among those possibilities may be found not by staring harder at the object, but by measuring what happens to the air and water around it.
  16. Viktor Schauberger’s Repulsine: Exploring a Lost Propulsion Mystery
    Jun 10, 2026 · original
    Denny Okudinani’s presentation on Viktor Schauberger’s Repulsine offers a unique invitation to look again, build again, and give one of the most mysterious machines in alternative propulsion the patient, hands-on treatment it’s rarely received. With humor, historical curiosity, technical imagination, and sincere respect for Schauberger’s legacy, Okudinani doesn’t simply retell the Repulsine legend. He brings it back to the workbench using 21st century tools and technology.
  17. Todd Desiato’s Operational Quantum Gravity For Engineers
    Jun 2, 2026 · original
    Todd Desiato isn't asking you to abandon Einstein - just to imagine that the familiar bending of clocks and rulers may be the visible face of a deeper material process: matter settling into a different equilibrium with the vacuum around it. If that reading can be tested, the first signs would not be a starship lifting from a pad, but a stubbornly universal shift in a clock, a spectral line, or a resonator—a tiny laboratory whisper that gravity-like behavior can be spoken in the language of damping, noise, and scale.
  18. APEC 6/6: UAP Anomalous Transit, SEG, Gyroscopes, Repulsine & QG Engineering
    Jun 2, 2026 · original
    Greg Cathcart will provide a detailed hypothesis on Anomalous Transit in the Informational Lattice, Isaiah Ritchey will provide updates & insights on the Searl Effect Generator, Eric Biggio on Gyroscopic Thrust Experiments, Denny Okudinani will discuss his replication of Viktor Schauberger's Repulsine, and Todd Desiato will show a pre-recorded presentation discussing quantum gravity for engineers. We’ll also hear updates from our lab partners, then close with an open discussion and Q&A with attendees.
  19. The Tic Tac UAP and the Ocean Probe Hypothesis
    May 24, 2026 · original
    In November 2004, Navy pilots from the USS Nimitz encountered a small white “Tic Tac” above a patch of disturbed Pacific water—an object described as wingless, rotorless, cockpitless, and radically unlike a conventional aircraft. From that unresolved maritime encounter, a larger speculative question emerges: if an advanced extraterrestrial intelligence studied Earth through autonomous machines rather than crewed vessels, could the oceans serve as hiding place, factory floor, fuel reservoir, and launch environment for AI-powered von Neumann probes using seawater as an industrial feedstock?
  20. The Case for the Sphere: Design Advantages of Ball-Shaped UAP
    May 23, 2026 · original
    A featureless gray metallic ball doesn't seem like an especially interesting UFO shape: no wings, no cockpit, no visible engines, no nose, no tail, no cinematic saucer rim. But that simplicity may be exactly what makes it interesting. If even a subset of the objects appearing spherical or ball-like in the PURSUE materials are physical vehicles rather than balloons, sensor artifacts, or misidentified aircraft, then the sphere is not a primitive shape at all. It is a design philosophy: a machine not bound to one direction, one atmosphere, one mode of propulsion, or one way of seeing the world.

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