IEEE 1923.1-2021
IEEE Standard for Computation of Energy Efficiency Upper Bound for Apparatus Processing Communication Signal Waveforms
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- Language: English
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About This Item
IEEE 1923.1-2021 is a technical standard for computing an upper bound on energy efficiency for apparatus that process communication signal waveforms. It is relevant to signal processing and analysis, as well as power, energy, and industry applications, where a clear efficiency benchmark helps frame engineering decisions. IEEE 1923.1-2021 supports consistent evaluation of waveform-processing equipment by defining a formal approach to upper-bound assessment rather than relying on informal comparisons.
IEEE 1923.1-2021 overview
This standard addresses a specific measurement and analysis problem: how to determine the maximum energy efficiency that communication-signal-processing apparatus can theoretically achieve under defined conditions. IEEE 1923.1-2021 is useful where designers, evaluators, and procurement teams need a common technical reference for comparing performance claims. Its focus on an upper bound makes it especially relevant for systems that handle signal processing workloads while managing power consumption and energy-related constraints.
Typical use cases
IEEE 1923.1-2021 is typically used when assessing communications equipment, signal-processing subsystems, and related apparatus that transform or analyze waveforms. It may support engineering reviews for hardware design, benchmark development, and performance verification in environments where energy efficiency is a key concern. The standard is also useful in product qualification, laboratory testing, and technical documentation for systems that must balance processing capability with power and energy expectations.
Why this standard matters
In practice, IEEE 1923.1-2021 helps reduce ambiguity when energy efficiency needs to be evaluated for waveform-processing apparatus. A defined upper-bound method supports more consistent testing, clearer compliance discussions, and better comparison across designs or vendors. It can also improve specification quality by giving engineering teams a defensible reference point for performance targets. For organizations managing power-sensitive signal-processing equipment, that consistency can lower risk and improve procurement confidence.
- Upper-bound energy efficiency calculation
- Communication signal waveform processing
- Signal processing and analysis context
- Power and energy evaluation reference
- Publication Date: 2021
- Standard Status: Active
- Publisher: IEEE
- Subject: Signal Processing and Analysis; Power, Energy and Industry Applications
- Official IEEE: Doi link
- This Version: 1923.1 (2021)
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