Abstract:
The first frame of a paging slot (405) contains a portion of every page's (401-404) address. Likewise, the second, third, and fourth frames of the slot (405) contain a second, third, and fourth portion from each of the paging addresses. Address information is organized in the atomic frames of the slot (405) in such a way that the information in the earliest frame gives the mobile a high probability that it can determine that no messages directed to it are present in the slot. After receiving a first frame, a mobile station uses known partial address comparison techniques to determine if the mobile station has a page pending.
Abstract:
The first frame of a paging slot (405) contains a portion of every page's (401-404) address. Likewise, the second, third, and fourth frames of the slot (405) contain a second, third, and fourth portion from each of the paging addresses. Address information is organized in the atomic frames of the slot (405) in such a way that the information in the earliest frame gives the mobile a high probability that it can determine that no messages directed to it are present in the slot. After receiving a first frame, a mobile station uses known partial address comparison techniques to determine if the mobile station has a page pending.
Abstract:
A method of processing a received signal in a wireless communication system (20), the method comprising the steps of detecting a first digital signal at a first receiver (26), measuring timing parameters of the first digital signal, and sending data associated with the timing parameters to a second receiver (28).
Abstract:
A method of measuring speed of a mobile unit for use in a wireless communication system (20). The method includes the steps of receiving a radio frequency (RF) signal from the mobile unit (202), measuring signal quality of the RF signal to produce a received quality signal (204), sampling the received quality signal during a first time period to produce a first group of samples (206), sampling the received quality signal during a second time period to produce a second group of samples (208), calculating a variation in signal quality of the RF signal in response to the first and second group of samples (210), and determining a speed measurement in response to the variation in signal quality (212).
Abstract:
A method and system are disclosed where both a mobile station (105) and the infrastructure logically treat all access probes of an access attempt as if they were transmitted to a first base station (101). This is accomplished by having the mobile station (105) store both the registration parameters received from the first base station (101) to which an access probe is transmitted and a characteristic, such as the PN offset, of the first base station (101). When the mobile station (105) determines that it should perform an access probe handoff, it transmits an access probe to a different base station, identifying in the probe the characteristic, such as the PN offset, of the first base station (101). This allows the infrastructure to identify the base station that the mobile station (105) intends to register with. When the mobile station (105) receives acknowledgment to the access attempt, it then updates its registration variables with respect to the parameters received from the first base station (101).
Abstract:
A method and system are disclosed where both a mobile station (105) and the infrastructure logically treat all access probes of an access attempt as if they were transmitted to a first base station (101). This is accomplished by having the mobile station (105) store both the registration parameters received from the first base station (101) to which an access probe is transmitted and a characteristic, such as the PN offset, of the first base station (101). When the mobile station (105) determines that it should perform an access probe handoff, it transmits an access probe to a different base station, identifying in the probe the characteristic, such as the PN offset, of the first base station (101). This allows the infrastructure to identify the base station that the mobile station (105) intends to register with. When the mobile station (105) receives acknowledgment to the access attempt, it then updates its registration variables with respect to the parameters received from the first base station (101).