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Books Results
Source: The Open Library
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1A planar approximation for the least reliable bit log-likelihood ratio of 8-PSK modulation
By William H. Thesling
“A planar approximation for the least reliable bit log-likelihood ratio of 8-PSK modulation” Metadata:
- Title: ➤ A planar approximation for the least reliable bit log-likelihood ratio of 8-PSK modulation
- Author: William H. Thesling
- Language: English
- Publisher: ➤ National Technical Information Service, distributor - National Aeronautics and Space Administration
- Publish Date: 1994
- Publish Location: ➤ [Washington, D.C.] - [Springfield, Va
“A planar approximation for the least reliable bit log-likelihood ratio of 8-PSK modulation” Subjects and Themes:
- Subjects: ➤ Fixed point arithmetic - Raman spectroscopy - Phase shift keying - Bit error rate - Likelihood ratio - Error analysis - Decoding
Edition Identifiers:
- The Open Library ID: OL17788392M - OL15404363M
- Online Computer Library Center (OCLC) ID: 32300292
Access and General Info:
- First Year Published: 1994
- Is Full Text Available: No
- Is The Book Public: No
- Access Status: No_ebook
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Wiki
Source: Wikipedia
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Fixed-point arithmetic
standard integer arithmetic logic units to perform rational number calculations. Negative values are usually represented in binary fixed-point format as a
Fixed point
Fixed point may refer to: Fixed point (mathematics), a value that does not change under a given transformation Fixed-point arithmetic, a manner of doing
Floating-point arithmetic
computing, floating-point arithmetic (FP) is arithmetic on subsets of real numbers formed by a significand (a signed sequence of a fixed number of digits
Fixed-precision arithmetic
Fixed-precision arithmetic, also referred to as finite-precision arithmetic, is arithmetic on numbers that are represented in a fixed number of digits
Abacus
1⁄2, 1⁄4, and 1⁄12 in Roman abacus), and a decimal point can be imagined for fixed-point arithmetic. Any particular abacus design supports multiple methods
Z2 (computer)
II. In contrast to the Z1, the Z2 used 16-bit fixed-point arithmetic instead of 22-bit floating point. Zuse presented the Z2 in 1940 to members of the
IEEE 754
The IEEE Standard for Floating-Point Arithmetic (IEEE 754) is a technical standard for floating-point arithmetic originally established in 1985 by the
Computer arithmetic
includes: Fixed-point arithmetic Floating-point arithmetic Interval arithmetic Arbitrary-precision arithmetic Modular arithmetic Multi-modular arithmetic p-adic
Digital signal processor
various sticky bits operation modes are available. Fixed-point arithmetic is often used to speed up arithmetic processing. Single-cycle operations to increase
Arbitrary-precision arithmetic
the host system. This contrasts with the faster fixed-precision arithmetic found in most arithmetic logic unit (ALU) hardware, which typically offers