The IEEE 802.15.4 Physical Layer (PHY) specifies the spread spectrum techniques, modulation schemes, and frame structure standards for low-power wireless personal area networks (LR-WPANs) operating across the 868/915 MHz and 2.4 GHz bands, enabling critical functions including Energy Detection (ED), Link Quality Indication (LQI), and Clear Channel Assessment (CCA).

1. Introduction to the Main Functions of the PHY Layer

Radio Transmission and Reception Activation and Deactivation

Energy Detection (ED) within the Current Channel

Link Quality Indication (LQI) for Received Packets

Free Channel Assessment (CCA) for Carrier Sense Multiple Access/Collision Avoidance (CSMA-CA)

Channel Frequency Selection

Data Transmission and Reception

2. Introduction to Physical Parameters

868/915 MHz DSSS (Direct Sequence Spread Spectrum) uses BPSK (Binary Phase Shift Keying) modulation

868/915 MHz DSSS (Direct Sequence Spread Spectrum) uses O-QPSK modulation

868/915 MHz PSSS (Parallel Sequence Spread Spectrum) uses BPSK and ASK (Amplitude Shift Keying) modulation

2450 MHz DSSS (Direct Sequence Spread Spectrum) uses O-QPSK modulation

PHY (MHz) Frequency band (MHz) Chip rate (kchip/s) Modulation Bit rate (kb/s) Symbol rate (ksymbol/s) Symbols
868/915 868–868.6 300 BPSK 20 20 Binary
868/915 902–928 600 BPSK 40 40 Binary
868/915 (optional) 868–868.6 400 ASK 250 12.5 20-bit PSSS
868/915 (optional) 902–928 1600 ASK 250 50 5-bit PSSS
868/915 (optional) 868–868.6 400 O-QPSK 100 25 16-ary Orthogonal
868/915 (optional) 902–928 1000 O-QPSK 250 62.5 16-ary Orthogonal
2450 2400–2483.5 2000 O-QPSK 250 62.5 16-ary Orthogonal

3. Introduction to PHY Frame Format

Field Category Subfield Length (Octets) Description
SHR Preamble - Synchronization header (including preamble)
SFD (Start Frame Delimiter) - Start Frame Delimiter
PHR Frame length (7 bits) 1 (total) Physical layer header, total 8 bits
Reserved (1 bit) Reserved bit
PHY payload PSDU variable Physical layer data payload (variable length)

SHR: Synchronization Header (including Preamble and SFD), allows a receiving device to synchronize and lock onto each bit of the stream simultaneously.

PHR: PHY Frame Header (including Frame Length and Reserved), containing frame length information.

PHY Payload: Variable-length payload carrying data frames from the MAC sublayer.

The SHR field, Preamble, is used by the radio transceiver to extract chip and synchronization identifiers from the received data. The length of the Preamble field is determined by physical parameters, as shown in the following figure:

PHY Length (Octets) Length (Symbols) Duration (µS)
868–868.6 MHz BPSK 4 octets 32 symbols 1600
902–928 MHz BPSK 4 octets 32 symbols 800
868–868.6 MHz ASK 5 octets 2 symbols 160
902–928 MHz ASK 3.75 octets 6 symbols 120
868–868.6 MHz O-QPSK 4 octets 8 symbols 320
902–928 MHz O-QPSK 4 octets 8 symbols 128
2400–2483.5 MHz O-QPSK 4 octets 8 symbols 128

 

SFD indicates the end of SHR and the beginning of a data packet. Different physical parameters have different lengths, as shown in the figure below:

PHY Length (Octets) Length (Symbols)
868–868.6 MHz BPSK 1 octet 8 symbols
902–928 MHz BPSK 1 octet 8 symbols
868–868.6 MHz ASK 2.5 octets 1 symbol
902–928 MHz ASK 0.625 octets 1 symbol
868–868.6 MHz O-QPSK 1 octet 2 symbols
902–928 MHz O-QPSK 1 octet 2 symbols
2400–2483.5 MHz O-QPSK 1 octet 2 symbols

 

FAQ

Q1: What are the primary responsibilities of the IEEE 802.15.4 PHY layer?

A: The PHY layer is responsible for the activation and deactivation of the radio transceiver, Energy Detection (ED) within the current channel, Link Quality Indication (LQI) for received packets, providing Clear Channel Assessment (CCA) for the CSMA-CA algorithm, channel frequency selection, and the physical transmission and reception of data bits.

Q2: How do the modulation schemes differ between the 868/915 MHz and 2.4 GHz bands?

A: The 868/915 MHz bands support DSSS (using BPSK or O-QPSK modulation) as well as PSSS (using BPSK and ASK modulation). In contrast, the 2450 MHz (2.4 GHz) band exclusively utilizes DSSS with O-QPSK modulation to ensure global compatibility and higher data rates.

Q3: What is the specific function of the Synchronization Header (SHR) in a PHY frame?

A: The SHR, which consists of a Preamble and a Start Frame Delimiter (SFD), allows the receiving device to synchronize with the incoming bit stream and extract chip identifiers. The Preamble facilitates bit-level synchronization, while the SFD signals the end of the header and the beginning of the actual data packet.