1. A method, implemented using at least one computer including at least one processor configured to execute instructions, for simulating a mobile telephone network with shared-access channels, the method comprising at least the steps of:
simulating, using the at least one processor, a first configuration of said mobile telephone network;
simulating, using the at least one processor, a second configuration of said mobile telephone network;
said first and second configurations of said mobile telephone network being statistically independent one from the other;
each one of said steps of simulating comprising at least the steps of:
determining, using the at least one processor, a number of mobile terminals generating a packet data traffic;
assigning, using the at least one processor, to a list of mobile terminals in said number of mobile terminals generating the packet data traffic, at least one shared-access channel of said mobile telephone network to be simulated; and
performing, using the at least one processor, a scheduling management process of said list of mobile terminals on said shared-access channel.
2. The method according to claim 1, wherein said step of performing the scheduling management process comprises the step of:
enabling, using the at least one processor, in succession the mobile terminals in said list of mobile terminals for transmittingreceiving on said shared-access channel.
3. The method according to claim 2, wherein said step of enabling in succession the mobile terminals in said list of mobile terminals, comprises the steps of:
selecting, using the at least one processor, a first mobile terminal on said list of mobile terminals, said first mobile terminal occupying a first position on said list of mobile terminals;
enabling, using the at least one processor, said first mobile terminal for transmittingreceiving on said shared-access channel;
moving, using the at least one processor, said first mobile terminal from said first position on said list of mobile terminals to a last position on said list of mobile terminals;
selecting, using the at least one processor, a second mobile terminal on said list of mobile terminals, said second mobile terminal occupying said first position on said list of mobile terminals;
enabling, using the at least one processor, said second mobile terminal for transmittingreceiving on said shared-access channel;
moving, using the at least one processor, said second mobile terminal from said first position on said list of mobile terminals to a last position on said list of mobile terminals; and
repeating, using the at least one processor, the previous steps for each mobile terminal on said list of mobile terminals.
4. The method according to claim 3, wherein said steps of moving said first and second mobile terminal from said first position on said list of mobile terminals comprises the step of:
disabling, using the at least one processor, said first and second mobile terminal from transmittingreceiving on said shared-access channel.
5. The method according to claim 1, wherein said packet data traffic is of the continuous type.
6. The method according to claim 1, wherein said packet data traffic is of the world wide web type.
7. The method according to claim 1, wherein said scheduling management process is based on a time division mode.
8. The method according to claim 1, wherein each one of said steps of simulating a configuration of said mobile telephone network further comprises the steps of:
determining, using the at least one processor, a number of mobile terminals generating voice traffic; and
processing, using the at least one processor, at least one radio resources management event related to a voice traffic distribution associated with said number of mobile terminals generating the voice traffic.
9. The method according to claim 8, wherein said radio resources management event is a power control event.
10. A system for simulating at least a first and a second configuration of a mobile telephone network, said first and second configuration of said mobile telephone network being statistically independent one from the other and each comprising a number of mobile terminals to be simulated generating a packet data traffic, the system for simulating comprising:
at least one computer including at least one processor configured to execute computer-executable instructions;
at least one memory loaded with the computer-executable instructions for performing a simulation process program,
wherein the simulation process program includes at least one object representing a network controller belonging to said mobile telephone network;
said at least one object comprising modules configured for:
simulating, using the at least one processor, a first configuration of the mobile telephone network;
simulating, using the at least one processor, a second configuration of the mobile telephone network;
the first and second configuration of the mobile telephone network being statistically independent one from the other;
assigning, using the at least one processor, to a list of mobile terminals in said number of mobile terminals generating the packet data traffic, at least one shared-access channel of said mobile telephone network to be simulated; and
performing, using the at least one processor, a scheduling managing process of said list of mobile terminals on said shared-access channel.
11. A non-transitory computer-readable storage medium loaded with a computer program, when executed by a processor, performs the steps of the method according to claim 1.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. In a speaker housing having a base with upstanding sidewalls that merge into a rear wall comprising:
a woofer joist upstanding from said base and offset inwardly from said rear wall, said joist having opposing ends and a center portion;
a woofer wall upstanding from said base and diverging from each one of said opposing ends to a woofer wall terminal end;
enclosure walls upstanding from said base and diverging outwardly from said center portion to respective enclosure distal ends; and,
a tweetermid-range wall upstanding from said base about coextensive with or forward from said woofer wall terminal ends with each tweetermid-range wall having respective opposing end portions that interconnect with a corresponding enclosure distal end, each enclosure wall being spaced-apart from a corresponding woofer wall a predetermined distance to form respective woofer sound channels.
2. The housing of claim 1 including a woofer component mounted upon each woofer wall and a tweeter and mid-range component mounted upon said tweetermid-range wall.
3. The housing of claim 2 wherein each woofer component is about an equal distance from said tweeter and mid-range component.
4. The housing of claim 3 wherein said woofer sound channels are symmetrically oriented around the tweeter and mid-range component.
5. The housing of claim 2 wherein said tweeter and mid-range component are mounted co-axially.
6. The housing of claim 2 wherein said tweeter and mid-range component are direct radiating sound sources.
7. The housing of claim 2 wherein each one of said woofer joist, woofer walls and enclosure walls have planar inner surfaces.
8. The housing of claim 1 wherein said enclosure walls are parallel to a corresponding woofer wall.