IEEE 1901c-2024
$54.17
IEEE Standard for Broadband over Power Line Networks: Medium Access Control and Physical Layer Specifications Amendment 3: Enhanced Flexible Channel Wavelet (FCW) Physical and Media Access Control Layers for Use on Any Media (Published)
Published By | Publication Date | Number of Pages |
IEEE | 2024 |
Amendment Standard – Active. Physical (PHY) and media access control (MAC) layers of an improved flexible channel wavelet (FCW) technology to be usable for communication on any media called extended flexible channel wavelet (FCW) PHY/MAC are specified in this amendment. New communication channels are defined in low-frequency bands to extend the communication range and increase the robustness of communication, and how the IEEE Std 1588 precision time protocol (PTP) works over wavelet networks is specified to enhance network functions.
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | IEEE Std 1901c-2024 Front cover |
2 | 4. General description |
4 | Important Notices and Disclaimers Concerning IEEE Standards Documents |
8 | Participants |
9 | Introduction |
10 | Contents |
11 | 1. Overview 1.1 Scope |
12 | 1.2 Purpose 2. Normative references |
13 | 4.4 General description of the coexistence architecture |
17 | 6.8 Extended Flexible Channel Wavelet MPDU formats |
19 | 17. Flexible Channel Wavelet physical layer |
23 | 19. Extended Flexible Channel Wavelet physical layer for any media 19.1 Introduction |
26 | 19.2 PLCP sublayer |
29 | 19.3 PHY encoder |
73 | 19.4 PMD |
74 | 19.5 PLME |
75 | 19.6 PMD sublayer service |
77 | 19.7 Use of Extended FCW on power lines |
79 | Annex A (normative) List of the IEEE 1901 MAC and PHY management variables Annex ZB (normative) Using IEEE 1588 precision time protocol over wavelet network ZB.1 Introduction |
80 | ZB.2 PTP messages exchange on wavelet network |
81 | ZB.3 Transporting PTP messages |
83 | ZB.4 Timestamp generation |
84 | ZB.5 Supported IEEE 1588 options |
86 | Back cover |