IEEE P1923.1/D13, Aug 2020
IEEE Draft Standard for computation of energy efficiency upper bound for apparatus processing communication signal waveforms
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About This Item
IEEE P1923.1/D13, Aug 2020 is a draft standard for computing the upper bound of energy efficiency in apparatus that process communication signal waveforms. It sits at the intersection of communications, signal processing, and electronic system design, where energy use must be evaluated against processing capability. This technical document is relevant when comparing designs, estimating efficiency limits, or supporting engineering decisions for waveform-processing equipment.
What is IEEE P1923.1/D13, Aug 2020?
IEEE P1923.1/D13, Aug 2020 defines a draft framework for determining the energy efficiency upper bound of apparatus used to process communication signal waveforms. In practical terms, it helps establish how efficiently a device can operate relative to its signal-processing function, rather than describing a general-purpose performance metric. The standard is especially relevant to engineering work involving communication, computing, and signal analysis, where consistent evaluation methods are needed for comparable results.
Where is IEEE P1923.1/D13, Aug 2020 used?
This draft standard is most likely used in the development and assessment of communication equipment, digital signal processing hardware, and related computing systems that handle waveform operations. It may be referenced in lab evaluations, design reviews, and performance studies for apparatus where energy efficiency is a key concern. IEEE P1923.1/D13, Aug 2020 can also support technical documentation for systems that combine communications processing with embedded computing or circuit-level implementation.
Why is IEEE P1923.1/D13, Aug 2020 important?
IEEE P1923.1/D13, Aug 2020 matters because energy-efficiency claims for waveform-processing apparatus can be difficult to compare without a defined technical basis. A clear upper-bound approach helps improve consistency in testing, design control, and procurement decisions. It can also reduce ambiguity when teams need to judge whether a device meets expected performance goals in communication and signal-processing applications. For developers and evaluators, that supports more reliable engineering decisions and lower risk of misinterpretation.
- Draft method for energy-efficiency upper bound
- Focused on communication signal waveforms
- Relevant to processing apparatus and hardware design
- Useful for evaluation and comparison
- Supports consistent technical assessment
- Publication Date: 2020
- Standard Status: Inactive
- Publisher: IEEE
- Subject: Communication, Networking and Broadcast Technologies; Components, Circuits, Devices and Systems; Computing and Processing; Signal Processing and Analysis
- Official IEEE: Doi link
- New Version Available: P1923.1 (2020)
- Previous Version: P1923.1 (2020)
- Previous Version: P1923.1 (2020)
- This Version: P1923.1 (2020)
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