1460906930-df2f5d8e-d445-4f0f-872a-d8a47ac2e103

1. A method comprising:
with one or more special purpose computing devices coupled to a memory:
for at least one of a plurality of segmented portions associated with at least one of a plurality of displayable web pages as represented by one or more digital signals of one or more data files stored in said memory, using one or more machine learned models to:
identify one or more feature properties associated with said segmented portion within said one or more data files, andor otherwise inferable from said one or more data files, and
classify said at least one of said plurality of segmented portions as being at least one of a plurality of segment types based, at least in part, on said one or more identified feature properties; and

storing one or more digital signals in said memory as part of an index associated with said plurality of segmented portions, said index being based, at least in part, on said segment type.
2. The method as recited in claim 1, wherein classifying said at least one of said plurality of segmented portions further comprises:
establishing segmented portion key-value information associated with at least one of said one or more machine learned models.
3. The method as recited in claim 2, wherein said segmented portion key-value information comprises a segment portion score.
4. The method as recited in claim 2, further comprising:
with said one or more special purpose computing devices, indexing said at least one of said plurality of segmented portions based, at least in part, on at least a portion of said segmented portion key-value information.
5. The method as recited in claim 1, further comprising:
with said one or more special purpose computing devices, combining two or more of said plurality of segmented portions to form a single segmented portion based, at least in part, on at least one feature associated with said two or more of said plurality of segmented portions.
6. The method as recited in claim 1, further comprising:
with said one or more special purpose computing devices, training at least one of said one or more machine learned models based, at least in part, on editorial input associated with a sample set of segmented portions.
7. The method as recited in claim 1, wherein at least one of said one or more machine learned models operates in an unsupervised mode.
8. The method as recited in claim 6, wherein said one or more machine learned models operating in said unsupervised mode identifies one or more digital signals representing a vector space representation as one of said feature properties.
9. The method a recited in claim 1, wherein at least one of said plurality of segmented portions comprises one or more digital signals representing at least one document object model (DOM) node.
10. The method as recited in claim 1, further comprising:
with said one or more special purpose computing devices:
accessing said at least one data file associated with said at least one of said plurality of displayable web pages from said memory; and
identifying one or more digital signals representing said plurality of segmented portions based, at least in part, on an initial set of properties identifiable in one or more digital signals representing said at least one data file.
11. An apparatus comprising:
memory having stored therein one or more digital signals representing at least one data file associated with at least one displayable web page;
at least one processing unit coupled to said memory and programmed with instructions to:
for at least one of a plurality of segmented portions associated with said displayable web page, use one or more machine learned models to:
identify one or more feature properties associated with said segmented portion within said one or more data files, andor otherwise inferable from said one or more data files, and
classify said at least one of said plurality of segmented portions as being at least one of a plurality of segment types based, at least in part, on said one or more identified feature properties; and

establish an index in said memory, said index associated with said plurality of segmented portions and being based, at least in part, on said segment type.
12. The apparatus as recited in claim 11, wherein said at least one processing unit is programmed with instructions to establish segmented portion key-value information associated with at least one of said one or more machine learned models, for said at least one of said plurality of segmented portions, and index said at least one of said plurality of segmented portions based, at least in part, on at least a portion of said segmented portion key-value information.
13. The apparatus as recited in claim 11, wherein said at least one processing unit is programmed with instructions to combine two or more of said plurality of segmented portions to form a single segmented portion based, at least in part, on at least one feature associated with said two or more of said plurality of segmented portions.
14. The apparatus as recited in claim 11, wherein at least one of said one or more machine learned models operates in an unsupervised mode and identifies one or more digital signals representing a vector space representation as one of said feature properties.
15. The apparatus as recited in claim 11, wherein said at least one processing unit is programmed with instructions to identify said plurality of segmented portions based, at least in part, on an initial set of properties identifiable in said at least one data file.
16. An article comprising:
a computer readable medium having computer implementable instructions stored thereon which if implemented by one or more processing units in a computing device operatively transform the computing device into a special purpose device to:
for at least one of a plurality of segmented portions associated with at least one of a plurality of displayable web pages as represented by one or more digital signals of one or more data files stored in a memory, use one or more machine learned models to:
identify one or more feature properties associated with said segmented portion within said one or more data files, andor otherwise inferable from said one or more data files, and
classify said at least one of said plurality of segmented portions as being at least one of a plurality of segment types based, at least in part, on said one or more identified feature properties; and

establish one or more digital signals representing an index within a memory coupled to said one or more processing units, said index associated with said plurality of segmented portions and being based, at least in part, on said segment type.
17. The article as recited in claim 16, wherein said computer implementable instructions, if implemented by said one or more processing units in the computing device operatively transform the computing device into said special purpose device to establish one or more digital signals representing segmented portion key-value information associated with at least one of said one or more machine learned models, for said at least one of said plurality of segmented portions, and index at least one of said plurality of segmented portions based, at least in part, on at least a portion of said segmented portion key-value information.
18. The article as recited in claim 16, wherein said computer implementable instructions, if implemented by said one or more processing units in the computing device operatively transform the computing device into said special purpose device to combine two or more of said plurality of segmented portions to form a single segmented portion based, at least in part, on at least one feature associated with said two or more of said plurality of segmented portions.
19. The article as recited in claim 16, wherein at least one of said one or more machine learned models operates in an unsupervised mode and identifies one or more digital signals representing a vector space representation as one of said feature properties.
20. The article as recited in claim 16, wherein said computer implementable instructions, if implemented by said one or more processing units in the computing device operatively transform the computing device into said special purpose device to identify said plurality of segmented portions based, at least in part, on one or more digital signals representing an initial set of properties identifiable in said at least one data file.

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. A method for controlling an inverter controlled generator set which comprises: an engine; a DC power source section having a generator driven by said engine as a power source; and an inverter which converts an DC output of said DC power source section into an AC output that is supplied to a load, and said method comprising a step of controlling a rotational speed of said engine so that the AC output suitable for driving said load is output from said inverter,
wherein, after the engine is started, the rotational speed of said engine is controlled by a constant speed control mode for maintaining the rotational speed of said engine at a set rotational speed, until the rotational speed of the engine is increased to the set rotational speed, and
wherein an operation of said inverter is started after the rotational speed of said engine reaches said set rotational speed.
2. A method for controlling an inverter controlled generator set as set forth in claim 1, wherein said set rotational speed is set higher than a rotational speed at which said inverter starts generating a rated output.
3. A method for controlling an inverter controlled generator set which comprises: an engine; a DC power source section having a generator driven by said engine as a power source; and an inverter which converts an DC output of said DC power source section into an AC output that is supplied to a load, and said method comprising a step of controlling a rotational speed of said engine so that the AC output suitable for driving said load is output from said inverter,
wherein, after the engine is started, the rotational speed of said engine is controlled by a constant speed control mode for maintaining the rotational speed of said engine at a set rotational speed, until the rotational speed of the engine is increased to the set rotational speed, and then an operation of said inverter is started, and
wherein, when a predetermined control mode proceeding requirement is satisfied, a control mode of said engine is switched to a constant voltage control mode for controlling the rotational speed of said engine so as to maintain an output voltage of said DC power source section at a set value.
4. A method for controlling an inverter controlled generator set as set forth in claim 3, wherein said set rotational speed is set higher than a rotational speed at which said inverter starts generating a rated output.
5. A method for controlling an inverter controlled generator set as set forth in claim 3, wherein said control mode proceeding requirement is that a predetermined time is passed after starting said constant speed control mode.
6. A method for controlling an inverter controlled generator set as set forth in claim 3, wherein said control mode proceeding requirement is that a predetermined time is passed after starting said constant speed control mode and that the output voltage of said generator becomes stable.
7. A method for controlling an inverter controlled generator set which comprises: an engine; a DC power source section having a generator driven by said engine as a power source; and an inverter which converts an DC output of said DC power source section into an AC output that is supplied to a load, and said method comprising a step of controlling a rotational speed of said engine so that the AC output suitable for driving said load is output from said inverter,
wherein, when said engine is in a state of requiring a warm-up at the start of the engine, the rotational speed of the engine is controlled by a constant speed control mode for maintaining the rotational speed of said engine at a set rotational speed, until the rotational speed of the engine is increased to the set rotational speed, and
wherein an operation of said inverter is started after the rotational speed of said engine reaches said set rotational speed.
8. A method for controlling an inverter controlled generator set as set forth in claim 7, wherein said set rotational speed is set higher than a rotational speed at which said inverter starts generating a rated output.
9. A method for controlling an inverter controlled generator set which comprises: an engine; a DC power source section having a generator driven by said engine as a power source; and an inverter which converts an DC output of said DC power source section into an AC output that is supplied to a load, and said method comprising a step of controlling a rotational speed of said engine so that the AC output suitable for driving said load is output from said inverter,
wherein, when said engine is in a state of requiring a warm-up at the start of the engine, the rotational speed of the engine is controlled by a constant speed control mode for maintaining the rotational speed of said engine at a set rotational speed, until the rotational speed of the engine is increased to the set rotational speed, and an operation of said inverter is started after the rotational speed of said engine reaches said set rotational speed,
wherein, when a predetermined control mode proceeding requirement is satisfied, a control mode of said engine is switched to a constant voltage control mode for controlling the rotational speed of said engine so as to maintain an output voltage of said DC power source section at a set value, and
wherein, when said load is input while said engine performs the warm-up, the rotational speed of the engine is controlled by said constant speed control mode even if said control mode proceeding requirement is fulfilled.
10. A method for controlling an inverter controlled generator set as set forth in claim 9, wherein said set rotational speed is set higher than a rotational speed at which said inverter starts generating a rated output.
11. A method for controlling an inverter controlled generator set as set forth in claim 9, wherein said control mode proceeding requirement is that a predetermined time is passed after starting said constant speed control mode.
12. A method for controlling an inverter controlled generator set as set forth in claim 9, wherein said control mode proceeding requirement is that a predetermined time is passed after starting said constant speed control mode and that the output voltage of said generator becomes stable.
13. An inverter controlled generator set which comprises: an engine; a DC power source section having a generator driven by said engine as a power source to generate a DC output; an inverter into which the output of said DC power source section is input; inverter control means for controlling said inverter so as to output a desired AC voltage from said inverter; and rotational speed control means for controlling a rotational speed of said engine so that an AC output suitable for driving a load of said inverter is output from said inverter,
wherein said rotational speed control means comprises: constant rotational speed control means for controlling the rotational speed of said engine so as to maintain the rotational speed of the engine at a set rotational speed; constant voltage control means for controlling the rotational speed of said engine so that an output voltage of said DC power source section is kept at a set value; and control mode switching means for switching a control mode of the engine so that the control mode is set to a constant speed control mode for controlling the rotational speed by said constant rotational speed control means, until a predetermined control mode proceeding requirement is satisfied after starting said engine, and so that the control mode of the engine is switched to a constant voltage control mode for controlling the rotational speed by said constant voltage control means when said control mode proceeding requirement is satisfied, and
wherein said inverter control means is comprised so as to start control of said inverter when said rotational speed of the engine reaches said set rotational speed after starting the engine.
14. An inverter controlled generator set as set forth in claim 13, wherein said control mode proceeding requirement is that a predetermined time is passed after starting said constant speed control mode.
15. An inverter controlled generator set which comprises: an engine; a DC power source section having a generator driven by said engine as a power source to generate a DC output; an inverter into which the output of said DC power source section is input; inverter control means for controlling said inverter so as to output a desired AC voltage from said inverter; and rotational speed control means for controlling a rotational speed of said engine so that an AC output suitable for driving a load of said inverter is output from said inverter,
wherein said rotational speed control means comprises: constant rotational speed control means for controlling the rotational speed of said engine so as to maintain a set rotational speed; constant voltage control means for controlling the rotational speed of said engine so that an output voltage of said DC power source section is kept at a set value; and control mode switching means for switching a control mode of the engine so that the control mode is set to a constant speed control mode for controlling the rotational speed by said constant rotational speed control means, until a predetermined control mode proceeding requirement is satisfied after starting said engine in the state where said engine requires a warm-up at starting the engine, and so that the control mode of the engine is switched to a constant voltage control mode for controlling the rotational speed by said constant voltage control means when said control mode proceeding requirement is satisfied and when said engine does not require the warm-up at starting, and
wherein said inverter control means is comprised so as to start control of said inverter when said rotational speed of the engine reaches said set rotational speed after starting the engine.
16. An inverter controlled generator set as set forth in claim 15, wherein said control mode switching means is constituted so that, when said load is input while said engine performs the warm-up, said control mode for the rotational speed of the engine is set as said constant speed control mode even if said control mode proceeding requirement is fulfilled.
17. An inverter controlled generator set as set forth in claim 15, wherein said control mode proceeding requirement is that a predetermined time is passed after starting said constant speed control mode.
18. An inverter controlled generator set as set forth in claim 15, wherein said control mode proceeding requirement is that a predetermined time is passed after starting said constant speed control mode and that the output voltage of said generator becomes stable.