Automated Point Mapping Generation
Tools and techniques are described to automate creation of point mapping diagrams between controllers and controlled resources. After receiving a defined space diagram (which may be input using a graphical interface of the controller, or by other means), resource locations and resource wiring requirements (which may be done automatically), a wiring diagram including point mapping between the resources and any necessary controllers is generated. If resources need to be moved, a new wiring diagram and/or point mapping can be regenerated.
1 . A computer-implemented method comprising:
accepting a defined space representation into a controller based on a user instruction, the controller comprising a processor, a memory, and a user interface;
accepting a unit model from a list of predefined models displayed on the user interface based on the user instruction, the unit model having wiring requirements and location within the defined space representation;
accepting a constraint based on the user instruction;
generating, using the processor, the memory, the defined space representation and the constraint, a placement of the controller;
generating a wiring route between the controller and the unit model based at least in part on the defined space representation;
generating a point mapping between the controller and the unit model based in part on the wiring route using the processor and the memory; and
modifying a control wiring terminal associated with the controller based on the wiring requirements of the unit module.
2 . The method of claim 1 , further comprising displaying the point mapping on the user interface.
3 . The method of claim 1 , wherein the unit model comprises a labeled unit attribute, and wherein the labeled unit attribute is capable of being displayed on the user interface.
4 . The method of claim 1 , further comprising using the processor and memory to generate a number of controllers needed based at least partially on the constraint.
5 . The method of claim 1 , wherein the constraint comprises minimizing labor, minimizing hardware, maximizing labor, maximizing hardware, or specifying fill rate of hardware.
6 . The method of claim 1 , further comprising a second controller and wherein the user interface is configured to allow a user to input a request to move the unit model to the second controller, and wherein the request rebuilds the wiring route and the point mapping.
7 . The method of claim 1 , wherein the controller further comprises a wiring module with a terminal wiring requirement, the controller operationally able to allow a user to modify the terminal wiring requirement of the wiring module, producing a modified wiring requirement, and upon such action the controller is operationally able to check the modified wiring requirement to determine match between the modified wiring requirement and a wiring requirements of a resource to be connected to a terminal associated with the wiring module.
8 . A system which generates point mapping, the system comprising: a controller with a processor, and a memory in operable communication with the processor; including instructions residing in the memory, which are executable by the processor to perform a method which includes:
accepting a defined space representation into the memory based on a user instruction;
accepting a unit model from a list of predefined models displayed on a user interface based on the user instruction, the unit model having wiring requirements and location within the defined space representation;
based on a user instruction indicated through the user interface, accepting a constraint;
generating, using the processor, the memory, the defined space representation and the constraint, a placement of the controller;
generating a wiring route between the controller and the unit model based at least in part on the defined space representation;
generating a point mapping between the controller and the unit model based in part on the wiring route, using the processor and the memory; and
modifying a control wiring terminal associated with the controller based on the wiring requirements of the unit module.
9 . The system of claim 8 , wherein the controller further comprises a wiring module with a terminal wiring requirement, the controller allowing a user to modify the terminal wiring requirement of the wiring module, producing a modified wiring requirement.
10 . The system of claim 8 , wherein the controller further comprises a wiring module with a terminal wiring requirement, the controller allowing a user to modify the terminal wiring requirement of the wiring module, producing a modified wiring requirement.
11 . The system of claim 10 , further comprising the controller determining a match between the modified wiring requirement and a wiring requirement of a resource to be connected to a terminal associated with the wiring module.
12 . The system of claim 8 , further comprising a program residing in memory that modifies a controller terminal on the controller based on a second user instruction.
13 . The system of claim 12 , further comprising a second controller and wherein the user interface is configured to allow a user to input a request to move the unit model to the second controller, and wherein the controller or the second controller rebuilds the wiring route and the point mapping.
14 . The system of claim 13 , further comprising calculating a placement of the second controller within the defined space representation is based at least partially on the constraint.
15 . The system of claim 8 , further comprising modifying wiring terminals based on a user request.
16 . The system of claim 8 , further comprising the controller sending a signal to a module associated with the controller; the module modifying its hardware to match requirements of the user instruction.
17 . The system of claim 16 , wherein the user instruction comprises input indicating a user moving a unit module to a new location within the module.
18 . The system of claim 17 , wherein the user instruction comprises input indicating a user inputting information into a user interface screen on the controller.
19 . A non-transient storage medium configured with code which upon execution by a controller having one or more processors coupled with memory-stored instructions performs a point mapping generation method, the method comprising:
instructions for accepting a defined space representation into a controller based on a user instruction, the controller comprising a processor, a memory, and a user interface;
instructions for accepting a unit model from a list of predefined models displayed on the user interface based on the user instruction, the unit model having wiring requirements and location within the defined space representation;
instructions for accepting a constraint;
instructions for generating, using the processor, the memory, the defined space representation and the constraint, a placement of the controller;
instructions for generating a wiring route between the controller and the unit model based at least in part on the defined space representation;
instructions for generating a point mapping between the controller and the unit model based in part on the wiring route, using the processor and the memory; and
instructions for modifying a control wiring terminal associated with the controller based on the wiring requirements of the unit module.
20 . The non-transient storage medium of claim 18 , further comprising the controller, using its processor and memory, modifying a control point terminal on the controller to match at least a portion of requirements of the point mapping.