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GNSS PNT Implementation Architect
Location:
US-FL-Melbourne
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Who are we?

We hire those that seek to innovate across people, process and technology. Join our global workforce, visualise the future and strive for success. Our engineering campus and corporate offices in the UK and US are optimal environments for ideas and innovation to flourish.

ALL.SPACE, formerly Isotropic Systems, has developed the 5th generation smart terminal, capable of linking with all satellites, all networks, in all orbits, all at once. Our ground-breaking software-defined service enablement platform integrates intelligent routing, edge computing and on-demand services to deliver unprecedented network resilience and application performance. Whether you're on land, sea or air, we ensure that you stay connected.

Visit www.all.space to learn more.

Requirements

ALL.SPACE is pioneering the introduction of innovative and disruptive low-profile multiple-beam satellite communications terminals for mobile and fixed applications. These highly integrated terminal systems, typically operating from Ku-band thru K/Ka-bands and above, combine elements of new advances in microwave lens optics, phased array antenna technology, and dynamic beam pointing control systems using analog and/or digital signal processing. They may operate as fully electronic beam steering systems with no moving parts or as hybrid electromechanical steering systems. Our innovative low-cost Satcom terminals will be used on stationary and mobile platforms for a wide range of applications including: aeronautical, land mobile, maritime, and 5G, providing broadband multiple beam two-way communications with dynamic tracking of geostationary and non-geostationary satellites or terrestrial nodes.

ALL.SPACE is in search of a GNSS & PNT Implementation Senior Architect, experienced in the implementation of specialized position inversion algorithms and methods from observed signals and sensors, such as GPS, GALILEO, LORAN, radio trangulation, and radio trilateration. Expertise in related fields, such as software, mathematics, DSP, etc. is expected to enable implementation of the position inversion processes in prototypes and progression to released products. This role will be responsible for design and implementation in software and programmable hardware (where appropriate) of the signal processing routines necessary to determine receiver position from signals of interest and/or signals of opportunity and combine such information with inertial measurements to produce accurate estimates of position and orientation. This role will work closely with hardware engineers to ensure that the hardware supports the required functionality. The position will report to the Chief Technical Officer as a core part of the Innovation team that is responsible for designing and maturing new products from early-stage idea to qualified prototypes. It is expected that solutions will require collaboration between disciplines and specializations within the Innovation team and the greater Engineering organization. The selected individual is expected to work closely with the rest of the multidisciplinary Innovation team to find novel solutions to new technical, market, and product challenges. Experience in implementing signal analysis functionality as a key subsystem in a greater communications system design is essential. The design of signal processing and computation chains from requirements through experimental prototype implementations in models and simulations to block diagrams, component selection, and validation while accounting for system power and cost impacts of various processing stages will be a primary responsibility. The role will be expected to provide guidance into system-level trades and decisions based on implications of the system designs.

Key Responsibility Areas

The successful candidate will have experience in experimentation and development of novel position inversion systems in software and/or hardware, and the capability to lead the development of new prototypes leveraging novel signal sources as inputs into such a positioning algorithm. This includes the capability to perform such relevant design tasks directly as well as leading tasks to be performed by other team members or outside contractors. This role will be responsible for the signal processing and related analysis in simulation, prototypes, and early-stage product development to meet the market and business requirements of for alternative PNT solutions. Related responsibilities include system-level modelling and simulation to demonstrate capability and operation of the PNT algorithms, signal observation, and data extraction processes. The architect role includes aspects of direct engineering design and analysis, team management and project leadership, and formal systems engineering tasks of documentation, interfaces, requirements analyses & flow-down, with the direct engineering design and analysis as the highest priority.

This role may work on projects with ITAR and/or CUI requirements.

Required skills:

  • Innovative thinking to solve novel market problems
  • Rapid first-order system design from experience-driven engineering estimates and approximations (i.e., Excel)
  • Knowledge of the mathematics and related algorithms for position inversion
  • Capability to evaluate and trade different implementation options to meet business goals
  • Construction of specific and detailed derived requirements subsystems based on system-level performance
  • Estimating and specifying hardware requirements necessary to implement required PNT functionality.
  • Software and programmable hardware implementation of signal analysis and processing systems.
  • Development of system and subsystem designs from idea to prototype
  • Requirement & risk analysis, tracking, and flow-down
  • Computer Aided Design, electrical design experience
  • Degree or equivalent experience in Electrical Engineering
  • Highly capable as technical individual contributor as well as team and project leader

Desirable:

  • Exposure to sensor fusion for inertial positioning systems
  • Ability to translate the customer Concept of Use (CONUSE) into a communications solution
  • Knowledge of current commercial communications systems
  • Appreciation of system design & integration challenges
  • Systems Modelling tools
  • Appreciation of Engineering Test Bed management.
  • System modelling techniques and system representation methods (e.g. Capella / SysML)
  • Engineering PLM Tool
  • Experience with configuration and requirements management tools such as TeamCenter PDM and DOORS
  • Production of Detailed Design Documents, Production of Test Plans, System Security Documents, Integration Plans, Engineering technical Notes, Verification Matrix Body of Evidence, Requirements Capture, BOM Production

Benefits

  • Generous stock options
  • Annual bonus
  • 25 days PTO
  • 4% 401k match
  • Public holidays
  • Travel to work schemes
  • Fruit, snacks & drinks
  • Discounts platform
  • Well-being centre

ALL.SPACE

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